Publications
130 found
Show per page
Tripkis, Dimitrios, Humbel, Mattia, Deyhle, Hans, Hard X-ray nanotomography of dental composites for wide color matching. 12944. https://doi.org/10.1117/12.3012813
, Scheel, Mario, Weitkamp, Timm, & Müller, Bert. (2024).
Tripkis, Dimitrios, Humbel, Mattia, Deyhle, Hans, Hard X-ray nanotomography of dental composites for wide color matching. 12944. https://doi.org/10.1117/12.3012813
, Scheel, Mario, Weitkamp, Timm, & Müller, Bert. (2024).
Viertler, Alexandra, Verheyde, Fons, Schwarz, Martin, Scientific Reports, 14. https://doi.org/10.1038/s41598-024-67466-z
, Klopfstein, Seraina, & Mennecart, Bastien. (2024). Three taphonomic stories of three new fossil species of Darwin wasps (Hymenoptera, Ichneumonidae).
Viertler, Alexandra, Verheyde, Fons, Schwarz, Martin, Scientific Reports, 14. https://doi.org/10.1038/s41598-024-67466-z
, Klopfstein, Seraina, & Mennecart, Bastien. (2024). Three taphonomic stories of three new fossil species of Darwin wasps (Hymenoptera, Ichneumonidae).
Bolten, Jan Stephan, Tanner, Christine, Rodgers, Griffin, PLoS ONE, 18. https://doi.org/10.1371/journal.pone.0284562
, Levano, Soledad, Weitkamp, Timm, Waldner, Samuel, Puligilla, Ramya Deepthi, Bodmer, Daniel, Müller, Bert, & Huwyler, Jörg. (2023). Zebrafish (Danio rerio) larvae as a predictive model to study gentamicin-induced structural alterations of the kidney.
Bolten, Jan Stephan, Tanner, Christine, Rodgers, Griffin, PLoS ONE, 18. https://doi.org/10.1371/journal.pone.0284562
, Levano, Soledad, Weitkamp, Timm, Waldner, Samuel, Puligilla, Ramya Deepthi, Bodmer, Daniel, Müller, Bert, & Huwyler, Jörg. (2023). Zebrafish (Danio rerio) larvae as a predictive model to study gentamicin-induced structural alterations of the kidney.
Kuo, W., Rossinelli, D., Schulz, G., Wenger, R. H., Hieber, S., Müller, B., & Kurtcuoglu, V. (2023). Terabyte-scale supervised 3D training and benchmarking dataset of the mouse kidney. Scientific Data, 10. https://doi.org/10.1038/s41597-023-02407-5
Kuo, W., Rossinelli, D., Schulz, G., Wenger, R. H., Hieber, S., Müller, B., & Kurtcuoglu, V. (2023). Terabyte-scale supervised 3D training and benchmarking dataset of the mouse kidney. Scientific Data, 10. https://doi.org/10.1038/s41597-023-02407-5
Rodgers, Griffin, Bikis, Christos, Janz, Philipp, Tanner, Christine, Microscopy and Microanalysis, 29(5), 1730–1745. https://doi.org/10.1093/micmic/ozad082
, Thalmann, Peter, Haas, Carola A., & Müller, Bert. (2023). 3D X-ray Histology for the Investigation of Temporal Lobe Epilepsy in a Mouse Model [Journal-article].
Rodgers, Griffin, Bikis, Christos, Janz, Philipp, Tanner, Christine, Microscopy and Microanalysis, 29(5), 1730–1745. https://doi.org/10.1093/micmic/ozad082
, Thalmann, Peter, Haas, Carola A., & Müller, Bert. (2023). 3D X-ray Histology for the Investigation of Temporal Lobe Epilepsy in a Mouse Model [Journal-article].
Viertler, Alexandra, Urfer, Karin, Swiss Journal of Palaeontology, 142. https://doi.org/10.1186/s13358-023-00299-x
, Klopfstein, Seraina, & Spasojevic, Tamara. (2023). Correction: Impact of increasing morphological information by micro-CT scanning on the phylogenetic placement of Darwin wasps (Hymenoptera, Ichneumonidae) in amber (Swiss Journal of Palaeontology, (2023), 142, 1, (30), 10.1186/s13358-023-00294-2).
Viertler, Alexandra, Urfer, Karin, Swiss Journal of Palaeontology, 142. https://doi.org/10.1186/s13358-023-00299-x
, Klopfstein, Seraina, & Spasojevic, Tamara. (2023). Correction: Impact of increasing morphological information by micro-CT scanning on the phylogenetic placement of Darwin wasps (Hymenoptera, Ichneumonidae) in amber (Swiss Journal of Palaeontology, (2023), 142, 1, (30), 10.1186/s13358-023-00294-2).
Viertler, Alexandra, Urfer, Karin, Swiss Journal of Palaeontology, 142. https://doi.org/10.1186/s13358-023-00294-2
, Klopfstein, Seraina, & Spasojevic, Tamara. (2023). Impact of increasing morphological information by micro-CT scanning on the phylogenetic placement of Darwin wasps (Hymenoptera, Ichneumonidae) in amber.
Viertler, Alexandra, Urfer, Karin, Swiss Journal of Palaeontology, 142. https://doi.org/10.1186/s13358-023-00294-2
, Klopfstein, Seraina, & Spasojevic, Tamara. (2023). Impact of increasing morphological information by micro-CT scanning on the phylogenetic placement of Darwin wasps (Hymenoptera, Ichneumonidae) in amber.
Mennecart B., Dziomber L., Aiglstorfer M., Bibi F., DeMiguel D., Fujita M., Kubo M.O., Laurens F., Meng J., Metais G., Muller B., Rios M., Rossner G.E., Sanchez I.M., Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-34656-0
, Wang S., & Costeur L. (2022). Ruminant inner ear shape records 35 million years of neutral evolution.
Mennecart B., Dziomber L., Aiglstorfer M., Bibi F., DeMiguel D., Fujita M., Kubo M.O., Laurens F., Meng J., Metais G., Muller B., Rios M., Rossner G.E., Sanchez I.M., Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-34656-0
, Wang S., & Costeur L. (2022). Ruminant inner ear shape records 35 million years of neutral evolution.
Ammann R., Tanner C., Journal of Medical Imaging, 9(3). https://doi.org/10.1117/1.jmi.9.3.031509
, Osmani B., Nalabothu P., Topper T., & Muller B. (2022). Three-dimensional analysis of aligner gaps and thickness distributions, using hard x-ray tomography with micrometer resolution.
Ammann R., Tanner C., Journal of Medical Imaging, 9(3). https://doi.org/10.1117/1.jmi.9.3.031509
, Osmani B., Nalabothu P., Topper T., & Muller B. (2022). Three-dimensional analysis of aligner gaps and thickness distributions, using hard x-ray tomography with micrometer resolution.
Costeur, Loïc, Mennecart, Bastien, Orliac, Maëva, & Science history meets microtomography: Comparison of the world’s oldest physical model of an extinct animal’s inner ear with the 3D virtual counterpart (Bert Müller;Ge Wang, Ed.; Vol. 12242) [Proceedings-article]. SPIE. https://doi.org/10.1117/12.2634546
. (2022).
Costeur, Loïc, Mennecart, Bastien, Orliac, Maëva, & Science history meets microtomography: Comparison of the world’s oldest physical model of an extinct animal’s inner ear with the 3D virtual counterpart (Bert Müller;Ge Wang, Ed.; Vol. 12242) [Proceedings-article]. SPIE. https://doi.org/10.1117/12.2634546
. (2022).
Humbel, Mattia, Carlucci, Corinne, Scheel, Mario, Diaz, Ana, Jerjen, Iwan, Lominski, Robert, Sterchi, Robert, Dental Composites for Wide Color Matching. 12041. https://doi.org/10.1117/12.2613110
, Izquierdo, Andres, Sigron, Guido, Deyhle, Hans, & Muller, Bert. (2022).
Humbel, Mattia, Carlucci, Corinne, Scheel, Mario, Diaz, Ana, Jerjen, Iwan, Lominski, Robert, Sterchi, Robert, Dental Composites for Wide Color Matching. 12041. https://doi.org/10.1117/12.2613110
, Izquierdo, Andres, Sigron, Guido, Deyhle, Hans, & Muller, Bert. (2022).
Humbel, Mattia, Scheel, Mario, Tanner, Christine, Rodgers, Griffin, Nano-tomography of dental composites with wide color matching. 12242. https://doi.org/10.1117/12.2635928
, Carlucci, Corinne, von Jackowski, Jeannette, Sigron, Guido, Izquierdo, Andrés, Weitkamp, Timm, & Müller, Bert. (2022).
Humbel, Mattia, Scheel, Mario, Tanner, Christine, Rodgers, Griffin, Nano-tomography of dental composites with wide color matching. 12242. https://doi.org/10.1117/12.2635928
, Carlucci, Corinne, von Jackowski, Jeannette, Sigron, Guido, Izquierdo, Andrés, Weitkamp, Timm, & Müller, Bert. (2022).
Izquierdo, Andrés, Tanner, Christine, Three-dimensional imaging of human teeth - an in vitro study of caries detection using micro computed tomography. 12242. https://doi.org/10.1117/12.2635624
, von Jackowski, Jeannette A., Rodgers, Griffin, Deyhle, Hans, & Müller, Bert. (2022).
Izquierdo, Andrés, Tanner, Christine, Three-dimensional imaging of human teeth - an in vitro study of caries detection using micro computed tomography. 12242. https://doi.org/10.1117/12.2635624
, von Jackowski, Jeannette A., Rodgers, Griffin, Deyhle, Hans, & Müller, Bert. (2022).
Kuo, Willy, Le, Ngoc An, Spingler, Bernhard, Tomographic imaging of microvasculature with a purpose-designed, polymeric X-ray contrast agent. 12242. https://doi.org/10.1117/12.2634303
, Müller, Bert, & Kurtcuoglu, Vartan. (2022).
Kuo, Willy, Le, Ngoc An, Spingler, Bernhard, Tomographic imaging of microvasculature with a purpose-designed, polymeric X-ray contrast agent. 12242. https://doi.org/10.1117/12.2634303
, Müller, Bert, & Kurtcuoglu, Vartan. (2022).
Migga, Alexandra, Journal of Medical Imaging, 9(3), 31507. https://doi.org/10.1117/1.jmi.9.3.031507
, Rodgers, Griffin, Osterwalder, Melissa, Tanner, Christine, Blank, Holger, Jerjen, Iwan, Salmon, Phil, Twengström, William, Scheel, Mario, Weitkamp, Timm, Schlepütz, Christian M., Bolten, Jan S., Huwyler, Jörg, Hotz, Gerhard, Madduri, Srinivas, & Müller, Bert. (2022). Comparative hard x-ray tomography for virtual histology of zebrafish larva, human tooth cementum, and porcine nerve.
Migga, Alexandra, Journal of Medical Imaging, 9(3), 31507. https://doi.org/10.1117/1.jmi.9.3.031507
, Rodgers, Griffin, Osterwalder, Melissa, Tanner, Christine, Blank, Holger, Jerjen, Iwan, Salmon, Phil, Twengström, William, Scheel, Mario, Weitkamp, Timm, Schlepütz, Christian M., Bolten, Jan S., Huwyler, Jörg, Hotz, Gerhard, Madduri, Srinivas, & Müller, Bert. (2022). Comparative hard x-ray tomography for virtual histology of zebrafish larva, human tooth cementum, and porcine nerve.
Muller, Bert, Stiefel, Muriel, Rodgers, Griffin, Humbel, Mattia, Osterwalder, Melissa, Jackowski, Jeannette Von, Hotz, Gerhard, Velasco, Adriana A., Bunn, Henry T., Scheel, Mario, Weitkamp, Timm, Three-dimensional imaging and analysis of annual layers in tree trunk and tooth cementum. 12041. https://doi.org/10.1117/12.2615148
, & Tanner, Christine. (2022).
Muller, Bert, Stiefel, Muriel, Rodgers, Griffin, Humbel, Mattia, Osterwalder, Melissa, Jackowski, Jeannette Von, Hotz, Gerhard, Velasco, Adriana A., Bunn, Henry T., Scheel, Mario, Weitkamp, Timm, Three-dimensional imaging and analysis of annual layers in tree trunk and tooth cementum. 12041. https://doi.org/10.1117/12.2615148
, & Tanner, Christine. (2022).
Nicklisch, Nicole, Ramsthaler, Frank, Bunnefeld, Jan-Heinrich, Scientific Reports, 12. https://doi.org/10.1038/s41598-022-20720-8
, Friedrich, Ronny, Alt, Kurt W., & Meller, Harald. (2022). Bioarchaeological investigations of the princely grave at Helmsdorf attesting to the violent death of an Early Bronze Age leader.
Nicklisch, Nicole, Ramsthaler, Frank, Bunnefeld, Jan-Heinrich, Scientific Reports, 12. https://doi.org/10.1038/s41598-022-20720-8
, Friedrich, Ronny, Alt, Kurt W., & Meller, Harald. (2022). Bioarchaeological investigations of the princely grave at Helmsdorf attesting to the violent death of an Early Bronze Age leader.
Rodgers, Griffin, Tanner, Christine, Mosaic microtomography of a full mouse brain with sub-micron pixel size. 12242. https://doi.org/10.1117/12.2633556
, Weitkamp, Timm, Scheel, Mario, Alarcón, Marta Girona, Kurtcuoglu, Vartan, & Müller, Bert. (2022).
Rodgers, Griffin, Tanner, Christine, Mosaic microtomography of a full mouse brain with sub-micron pixel size. 12242. https://doi.org/10.1117/12.2633556
, Weitkamp, Timm, Scheel, Mario, Alarcón, Marta Girona, Kurtcuoglu, Vartan, & Müller, Bert. (2022).
Rodgers G., Sigron G.R., Tanner C., Hieber S.E., Beckmann F., Applied Sciences (Switzerland), 12. https://doi.org/10.3390/app12126286
, Scherberich A., Jaquiery C., Kunz C., & Muller B. (2022). Combining High-Resolution Hard X-ray Tomography and Histology for Stem Cell-Mediated Distraction Osteogenesis.
Rodgers G., Sigron G.R., Tanner C., Hieber S.E., Beckmann F., Applied Sciences (Switzerland), 12. https://doi.org/10.3390/app12126286
, Scherberich A., Jaquiery C., Kunz C., & Muller B. (2022). Combining High-Resolution Hard X-ray Tomography and Histology for Stem Cell-Mediated Distraction Osteogenesis.
Rodgers G, Tanner C, Journal of Neuroscience Methods, 365, 109385. https://doi.org/10.1016/j.jneumeth.2021.109385
, Migga A, Kuo W, Bikis C, Scheel M, Kurtcuoglu V, Weitkamp T, & Müller B. (2022). Virtual histology of an entire mouse brain from formalin fixation to paraffin embedding. Part 2: Volumetric strain fields and local contrast changes.
Rodgers G, Tanner C, Journal of Neuroscience Methods, 365, 109385. https://doi.org/10.1016/j.jneumeth.2021.109385
, Migga A, Kuo W, Bikis C, Scheel M, Kurtcuoglu V, Weitkamp T, & Müller B. (2022). Virtual histology of an entire mouse brain from formalin fixation to paraffin embedding. Part 2: Volumetric strain fields and local contrast changes.
Three-dimensional imaging of porcine joint tissues down to the subcellular level. 12242. https://doi.org/10.1117/12.2635223
, Barbero, Andrea, Wolf, Francine, Rodgers, Griffin, Tanner, Christine, Weitkamp, Timm, Mumme, Marcus, Morawska, Marta, Beer, Daniel, & Müller, Bert. (2022).
Three-dimensional imaging of porcine joint tissues down to the subcellular level. 12242. https://doi.org/10.1117/12.2635223
, Barbero, Andrea, Wolf, Francine, Rodgers, Griffin, Tanner, Christine, Weitkamp, Timm, Mumme, Marcus, Morawska, Marta, Beer, Daniel, & Müller, Bert. (2022).
Velasco, Adriana A., Tanner, Christine, Hierarchical imaging of African bovid tooth cementum using X-ray microtomography. 12242. https://doi.org/10.1117/12.2633043
, Rodgers, Griffin, von Jackowski, Jeannette, Humbel, Mattia, Weitkamp, Timm, Bunn, Henry T., & Müller, Bert. (2022).
Velasco, Adriana A., Tanner, Christine, Hierarchical imaging of African bovid tooth cementum using X-ray microtomography. 12242. https://doi.org/10.1117/12.2633043
, Rodgers, Griffin, von Jackowski, Jeannette, Humbel, Mattia, Weitkamp, Timm, Bunn, Henry T., & Müller, Bert. (2022).
von Jackowski, Jeannette A., Müller, Bert, Tomographic imaging of unique objects: Annual layers in tooth cementum of Anna Catharina Bischoff born 1719. 12242. https://doi.org/10.1117/12.2635312
, Hotz, Gerhard, Weitkamp, Timm, Wittwer-Backofen, Ursula, & Tanner, Christine. (2022).
von Jackowski, Jeannette A., Müller, Bert, Tomographic imaging of unique objects: Annual layers in tooth cementum of Anna Catharina Bischoff born 1719. 12242. https://doi.org/10.1117/12.2635312
, Hotz, Gerhard, Weitkamp, Timm, Wittwer-Backofen, Ursula, & Tanner, Christine. (2022).
Rodgers G., Kuo W, Journal of Neuroscience Methods, 364, 109354. https://doi.org/10.1016/j.jneumeth.2021.109354
, Scheel M, Migga A., Bikis C., Tanner C, Kurtcuoglu V, Weitkamp T., & Muller B. (2021). Virtual histology of an entire mouse brain from formalin fixation to paraffin embedding. Part 1: Data acquisition, anatomical feature segmentation, tracking global volume and density changes.
Rodgers G., Kuo W, Journal of Neuroscience Methods, 364, 109354. https://doi.org/10.1016/j.jneumeth.2021.109354
, Scheel M, Migga A., Bikis C., Tanner C, Kurtcuoglu V, Weitkamp T., & Muller B. (2021). Virtual histology of an entire mouse brain from formalin fixation to paraffin embedding. Part 1: Data acquisition, anatomical feature segmentation, tracking global volume and density changes.
Bornert F, Clauss F, Hua G., Idoux-gillet Y., Keller L, Fernandez De Grado G., Offner D., Smaida R., Wagner Q., Fioretti F, Kuchler-Bopp S, Biomedicines, 9(8). https://doi.org/10.3390/biomedicines9080952
, Wenzel W., Gentile L., Risser L., Muller B., Huck O., & Benkirane-Jessel N. (2021). Mechanistic illustration: How newly‐formed blood vessels stopped by the mineral blocks of bone substitutes can be avoided by using innovative combined therapeutics.
Bornert F, Clauss F, Hua G., Idoux-gillet Y., Keller L, Fernandez De Grado G., Offner D., Smaida R., Wagner Q., Fioretti F, Kuchler-Bopp S, Biomedicines, 9(8). https://doi.org/10.3390/biomedicines9080952
, Wenzel W., Gentile L., Risser L., Muller B., Huck O., & Benkirane-Jessel N. (2021). Mechanistic illustration: How newly‐formed blood vessels stopped by the mineral blocks of bone substitutes can be avoided by using innovative combined therapeutics.
Stutz C, Clauss F, Huck O, Nanomaterials (Basel, Switzerland), 11(5). https://doi.org/10.3390/nano11051315
, Benkirane-Jessel N, Bornert F, Kuchler-Bopp S, & Strub M. (2021). Eruption of Bioengineered Teeth: A New Approach Based on a Polycaprolactone Biomembrane.
Stutz C, Clauss F, Huck O, Nanomaterials (Basel, Switzerland), 11(5). https://doi.org/10.3390/nano11051315
, Benkirane-Jessel N, Bornert F, Kuchler-Bopp S, & Strub M. (2021). Eruption of Bioengineered Teeth: A New Approach Based on a Polycaprolactone Biomembrane.
Sacher, Mattia, Journal of Medical Imaging, 8(3). https://doi.org/10.1117/1.JMI.8.3.035501
, Deyhle, Hans, Jäger, Kurt, & Müller, Bert. (2021). Accuracy of commercial intraoral scanners.
Sacher, Mattia, Journal of Medical Imaging, 8(3). https://doi.org/10.1117/1.JMI.8.3.035501
, Deyhle, Hans, Jäger, Kurt, & Müller, Bert. (2021). Accuracy of commercial intraoral scanners.
Flury S, Dettwiler C, Swiss Dental Journal, 131(7-8).
, Müller B, Magni E, Leontiev W, Meller C, Weiger R, & Connert T. (2021). Reentry of endodontic access cavities: composite residue and loss of tooth substance.
Flury S, Dettwiler C, Swiss Dental Journal, 131(7-8).
, Müller B, Magni E, Leontiev W, Meller C, Weiger R, & Connert T. (2021). Reentry of endodontic access cavities: composite residue and loss of tooth substance.
Ammann, Remi, Tanner C., Three-dimensional analysis of aligner gaps and thickness distributions using advanced laboratory-based hard X-ray tomography. 11840. https://doi.org/10.1117/12.2592821
, Osmani, Bekim, Nalabothu P., Topper T., & Müller, Bert. (2021).
Ammann, Remi, Tanner C., Three-dimensional analysis of aligner gaps and thickness distributions using advanced laboratory-based hard X-ray tomography. 11840. https://doi.org/10.1117/12.2592821
, Osmani, Bekim, Nalabothu P., Topper T., & Müller, Bert. (2021).
Migga, Alexandra, Schulz, Georg, Laboratory-based phase and absorption tomography for microimaging of annual layers in human tooth cementum, paraffinembedded nerve and zebrafish embryo. 11840. https://doi.org/10.1117/12.2597926
, Griffin, Osterwalder, Melissa, Tanner, Christine, Blank, Holger, Blank H., Jerjen I., Twengström, William, Twengstrom W., Scheel M., Schlepütz, Christian M., Bolten, Jan S., Huwyler, Jörg, Huwyler J., Hotz G., Madduri S., & Muller B. (2021).
Migga, Alexandra, Schulz, Georg, Laboratory-based phase and absorption tomography for microimaging of annual layers in human tooth cementum, paraffinembedded nerve and zebrafish embryo. 11840. https://doi.org/10.1117/12.2597926
, Griffin, Osterwalder, Melissa, Tanner, Christine, Blank, Holger, Blank H., Jerjen I., Twengström, William, Twengstrom W., Scheel M., Schlepütz, Christian M., Bolten, Jan S., Huwyler, Jörg, Huwyler J., Hotz G., Madduri S., & Muller B. (2021).
Müller, Bert, Khimchenko, Anna, Rodgers G., Osterwalder M., Tanner C., & X-ray imaging of human brain tissue down to the molecule level. 11886. https://doi.org/10.1117/12.2592603
(2021).
Müller, Bert, Khimchenko, Anna, Rodgers G., Osterwalder M., Tanner C., & X-ray imaging of human brain tissue down to the molecule level. 11886. https://doi.org/10.1117/12.2592603
(2021).
Osterwalder, Melissa, Bolten, Jan Stephan, Rodgers, Griffin, Bioinspiration, Biomimetics, and Bioreplication XI, 11586, 115860J. https://doi.org/10.1117/12.2583639
, Tanner, Christine, Cörek, Emre, Huwyler, Jörg, & Müller, Bert. (2021). Three-dimensional X-ray microscopy of zebra sh larvae.
Osterwalder, Melissa, Bolten, Jan Stephan, Rodgers, Griffin, Bioinspiration, Biomimetics, and Bioreplication XI, 11586, 115860J. https://doi.org/10.1117/12.2583639
, Tanner, Christine, Cörek, Emre, Huwyler, Jörg, & Müller, Bert. (2021). Three-dimensional X-ray microscopy of zebra sh larvae.
Rodgers G., Non-rigid registration to determine strain fields during mouse brain fixation and embedding. 11586. https://doi.org/10.1117/12.2583632
, Kuo W., Scheel M., Kurtcuoglu V., Weitkamp T., Muller B., & Tanner C. (2021).
Rodgers G., Non-rigid registration to determine strain fields during mouse brain fixation and embedding. 11586. https://doi.org/10.1117/12.2583632
, Kuo W., Scheel M., Kurtcuoglu V., Weitkamp T., Muller B., & Tanner C. (2021).
Rodgers G., Tanner C., Impact of fixation and paraffin embedding on mouse brain morphology: A synchrotron radiation-based tomography study. 11840. https://doi.org/10.1117/12.2595144
, Migga A., Weitkamp, Timm, Kuo, Willy, Scheel, Mario, Osterwalder M., Kurtcuoglu, Vartan, & Müller, Bert. (2021).
Rodgers G., Tanner C., Impact of fixation and paraffin embedding on mouse brain morphology: A synchrotron radiation-based tomography study. 11840. https://doi.org/10.1117/12.2595144
, Migga A., Weitkamp, Timm, Kuo, Willy, Scheel, Mario, Osterwalder M., Kurtcuoglu, Vartan, & Müller, Bert. (2021).
Prehistoric beaten-copper cranium. 11840. https://doi.org/10.1117/12.2594279
, Nicklisch N., Rojo Guerra, Manuel, Müller, Bert, & Alt, Kurt. (2021).
Prehistoric beaten-copper cranium. 11840. https://doi.org/10.1117/12.2594279
, Nicklisch N., Rojo Guerra, Manuel, Müller, Bert, & Alt, Kurt. (2021).
Tanner C., Rodgers G., Extended-field synchrotron microtomography for non-destructive analysis of incremental lines in archeological human teeth cementum. 11840. https://doi.org/10.1117/12.2595180
, Osterwalder M., Mani-Caplazi G., Hotz, Gerhard, Scheel, Mario, Weitkamp, Timm, & Müller, Bert. (2021).
Tanner C., Rodgers G., Extended-field synchrotron microtomography for non-destructive analysis of incremental lines in archeological human teeth cementum. 11840. https://doi.org/10.1117/12.2595180
, Osterwalder M., Mani-Caplazi G., Hotz, Gerhard, Scheel, Mario, Weitkamp, Timm, & Müller, Bert. (2021).
Kuchler-Bopp S, Mariotte A, Strub M, Po C, De Cauwer A, International Journal of Oral Science, 12(1), 5. https://doi.org/10.1038/s41368-019-0072-z
, Van Bellinghen X, Fioretti F, Clauss F, Georgel P, Benkirane-Jessel N, & Bornert F. (2020). Temporomandibular joint damage in K/BxN arthritic mice.
Kuchler-Bopp S, Mariotte A, Strub M, Po C, De Cauwer A, International Journal of Oral Science, 12(1), 5. https://doi.org/10.1038/s41368-019-0072-z
, Van Bellinghen X, Fioretti F, Clauss F, Georgel P, Benkirane-Jessel N, & Bornert F. (2020). Temporomandibular joint damage in K/BxN arthritic mice.
Stutz C., Strub M., Clauss F., Huck O., Nanomaterials, 10(9), 1–13. https://doi.org/10.3390/nano10091774
, Gegout H., Benkirane-Jessel N., Bornert F., & Kuchler-Bopp S. (2020). A new polycaprolactone-based biomembrane functionalized with bmp-2 and stem cells improves maxillary bone regeneration.
Stutz C., Strub M., Clauss F., Huck O., Nanomaterials, 10(9), 1–13. https://doi.org/10.3390/nano10091774
, Gegout H., Benkirane-Jessel N., Bornert F., & Kuchler-Bopp S. (2020). A new polycaprolactone-based biomembrane functionalized with bmp-2 and stem cells improves maxillary bone regeneration.
Kuo W., Le NA, Spingler B., Wenger R.H., Kipar A., Hetzel U, Microscopy and Microanalysis, 26(4), 731–740. https://doi.org/10.1017/s1431927620001725
, Muller B., & Kurtcuoglu V. (2020). Simultaneous Three-Dimensional Vascular and Tubular Imaging of Whole Mouse Kidneys with X-ray μcT.
Kuo W., Le NA, Spingler B., Wenger R.H., Kipar A., Hetzel U, Microscopy and Microanalysis, 26(4), 731–740. https://doi.org/10.1017/s1431927620001725
, Muller B., & Kurtcuoglu V. (2020). Simultaneous Three-Dimensional Vascular and Tubular Imaging of Whole Mouse Kidneys with X-ray μcT.
Mennecart B., Guignard C., Dziomber L., Frontiers in Earth Science, 8. https://doi.org/10.3389/feart.2020.00176
, Muller B., & Costeur L. (2020). Allometric and Phylogenetic Aspects of Stapes Morphology in Ruminantia (Mammalia, Artiodactyla).
Mennecart B., Guignard C., Dziomber L., Frontiers in Earth Science, 8. https://doi.org/10.3389/feart.2020.00176
, Muller B., & Costeur L. (2020). Allometric and Phylogenetic Aspects of Stapes Morphology in Ruminantia (Mammalia, Artiodactyla).
Rodgers, Griffin, Applied Physics Letters, 116(2). https://doi.org/10.1063/1.5133742
, Deyhle, Hans, Kuo, Willy, Rau, Christoph, Weitkamp, Timm, & Müller, Bert. (2020). Optimizing contrast and spatial resolution in hard x-ray tomography of medically relevant tissues.
Rodgers, Griffin, Applied Physics Letters, 116(2). https://doi.org/10.1063/1.5133742
, Deyhle, Hans, Kuo, Willy, Rau, Christoph, Weitkamp, Timm, & Müller, Bert. (2020). Optimizing contrast and spatial resolution in hard x-ray tomography of medically relevant tissues.
Alt, Kurt W., Tejedor Rodríguez, Cristina, Nicklisch, Nicole, Roth, David, Szécsényi Nagy, Anna, Knipper, Corina, Lindauer, Susanne, Held, Petra, de Lagrán, Íñigo García Martínez, Scientific Reports, 10(1), 2131. https://doi.org/10.1038/s41598-020-58483-9
, Schuerch, Thomas, Thieringer, Florian, Brantner, Philipp, Brandt, Guido, Israel, Nicole, Arcusa Magallón, Héctor, Meyer, Christian, Mende, Balazs G., Enzmann, Frieder, et al. (2020). A massacre of early Neolithic farmers in the high Pyrenees at Els Trocs, Spain.
Alt, Kurt W., Tejedor Rodríguez, Cristina, Nicklisch, Nicole, Roth, David, Szécsényi Nagy, Anna, Knipper, Corina, Lindauer, Susanne, Held, Petra, de Lagrán, Íñigo García Martínez, Scientific Reports, 10(1), 2131. https://doi.org/10.1038/s41598-020-58483-9
, Schuerch, Thomas, Thieringer, Florian, Brantner, Philipp, Brandt, Guido, Israel, Nicole, Arcusa Magallón, Héctor, Meyer, Christian, Mende, Balazs G., Enzmann, Frieder, et al. (2020). A massacre of early Neolithic farmers in the high Pyrenees at Els Trocs, Spain.
Cörek, Emre, Rodgers, Griffin, Siegrist, Stefan, Einfalt, Tomaz, Detampel, Pascal, Schlepütz, Christian M., Sieber, Sandro, Fluder, Pascal, Small, 16(31), e2000746. https://doi.org/10.1002/smll.202000746
, Unterweger, Harald, Alexiou, Christoph, Müller, Bert, Puchkov, Maxim, & Huwyler, Jörg. (2020). Shedding Light on Metal-Based Nanoparticles in Zebrafish by Computed Tomography with Micrometer Resolution.
Cörek, Emre, Rodgers, Griffin, Siegrist, Stefan, Einfalt, Tomaz, Detampel, Pascal, Schlepütz, Christian M., Sieber, Sandro, Fluder, Pascal, Small, 16(31), e2000746. https://doi.org/10.1002/smll.202000746
, Unterweger, Harald, Alexiou, Christoph, Müller, Bert, Puchkov, Maxim, & Huwyler, Jörg. (2020). Shedding Light on Metal-Based Nanoparticles in Zebrafish by Computed Tomography with Micrometer Resolution.
Osterwalder, Melissa, Bolten, Jan Stephan, Rodgers, Griffin, Humbel, Mattia, Spiedigitallibrary, Conference Proceedings of SPIE, 11886, 118864. https://doi.org/10.1117/12.2593119
, Tanner, Christine, Huwyler, Jörg, & Müller, Bert. (2020). Hard X-ray microtomography of Zebrafish larvae.
Osterwalder, Melissa, Bolten, Jan Stephan, Rodgers, Griffin, Humbel, Mattia, Spiedigitallibrary, Conference Proceedings of SPIE, 11886, 118864. https://doi.org/10.1117/12.2593119
, Tanner, Christine, Huwyler, Jörg, & Müller, Bert. (2020). Hard X-ray microtomography of Zebrafish larvae.
Precision Nanomedicine, 3, 656–665. https://doi.org/10.33218/001c.17211
, Deyhle, Hans, Bikis, Christos, Bunk, Oliver, & Müller, Bert. (2020). Imaging the Orientation of Myelin Sheaths in a Non-Stained Histological Slice of Human Brain.
Precision Nanomedicine, 3, 656–665. https://doi.org/10.33218/001c.17211
, Deyhle, Hans, Bikis, Christos, Bunk, Oliver, & Müller, Bert. (2020). Imaging the Orientation of Myelin Sheaths in a Non-Stained Histological Slice of Human Brain.
Buscema, Marzia, Hieber, Simone E., Scientific Reports, 9(1). https://doi.org/10.1038/s41598-019-50711-1
, Deyhle, Hans, Hipp, Alexander, Beckmann, Felix, Lobrinus, Johannes A., Saxer, Till, & Müller, Bert. (2019). Ex vivo evaluation of an atherosclerotic human coronary artery via histology and high-resolution hard X-ray tomography.
Buscema, Marzia, Hieber, Simone E., Scientific Reports, 9(1). https://doi.org/10.1038/s41598-019-50711-1
, Deyhle, Hans, Hipp, Alexander, Beckmann, Felix, Lobrinus, Johannes A., Saxer, Till, & Müller, Bert. (2019). Ex vivo evaluation of an atherosclerotic human coronary artery via histology and high-resolution hard X-ray tomography.
Bikis, Christos, Rodgers, Griffin, Deyhle, Hans, Thalmann, Peter, Hipp, Alexander, Beckmann, Felix, Weitkamp, Timm, Theocharis, Stamatios, Rau, Christoph, Applied Physics Letters, 114(8). https://doi.org/10.1063/1.5085302
, & Müller, Bert. (2019). Sensitivity comparison of absorption and grating-based phase tomography of paraffin-embedded human brain tissue.
Bikis, Christos, Rodgers, Griffin, Deyhle, Hans, Thalmann, Peter, Hipp, Alexander, Beckmann, Felix, Weitkamp, Timm, Theocharis, Stamatios, Rau, Christoph, Applied Physics Letters, 114(8). https://doi.org/10.1063/1.5085302
, & Müller, Bert. (2019). Sensitivity comparison of absorption and grating-based phase tomography of paraffin-embedded human brain tissue.
Bornert F., Gros C.-I., Lutz J.-C., Schultz D., Riehm S., Choquet P., Cone-beam computed tomography - Magnetic resonance imaging registration in dento-maxillary imaging. 11113. https://doi.org/10.1117/12.2530643
, Muller B., & Dillenseger J.-P. (2019).
Bornert F., Gros C.-I., Lutz J.-C., Schultz D., Riehm S., Choquet P., Cone-beam computed tomography - Magnetic resonance imaging registration in dento-maxillary imaging. 11113. https://doi.org/10.1117/12.2530643
, Muller B., & Dillenseger J.-P. (2019).
Costeur L., Mennecart B., Muller B., & Observations on the scaling relationship between bony labyrinth, skull size and body mass in ruminants. 11113. https://doi.org/10.1117/12.2530702
(2019).
Costeur L., Mennecart B., Muller B., & Observations on the scaling relationship between bony labyrinth, skull size and body mass in ruminants. 11113. https://doi.org/10.1117/12.2530702
(2019).
Kellner, Siri K., Knappertsbusch, Michael W., Costeur, Loïc, Müller, Bert, & Palaeontologia Electronica, 22(1), 1–19. https://doi.org/10.26879/854
. (2019). Imaging the internal structure of Borelis schlumbergeri Reichel (1937): Advances by high-resolution hard X-ray microtomography.
Kellner, Siri K., Knappertsbusch, Michael W., Costeur, Loïc, Müller, Bert, & Palaeontologia Electronica, 22(1), 1–19. https://doi.org/10.26879/854
. (2019). Imaging the internal structure of Borelis schlumbergeri Reichel (1937): Advances by high-resolution hard X-ray microtomography.
Kuo W., Evaluation of metal nanoparticle- and plastic resin-based x-ray contrast agents for kidney capillary imaging. 11113. https://doi.org/10.1117/12.2529414
, Muller B., & Kurtcuoglu V. (2019).
Kuo W., Evaluation of metal nanoparticle- and plastic resin-based x-ray contrast agents for kidney capillary imaging. 11113. https://doi.org/10.1117/12.2529414
, Muller B., & Kurtcuoglu V. (2019).
Nicklisch, Nicole, Maier, Ferdinand, International Journal of Osteoarchaeology, 29(2), 183–190. https://doi.org/10.1002/oa.2727
, Rossbach, Anne, Pichler, Sandra L., Zeilhofer, Hans-Florian, Gutwald, Ralf, Dresely, Veit, Meller, Harald, Baumhoer, Daniel, & Alt, Kurt W. (2019). An osseous lesion in the maxillary sinus-Tumour or tumour-like?
Nicklisch, Nicole, Maier, Ferdinand, International Journal of Osteoarchaeology, 29(2), 183–190. https://doi.org/10.1002/oa.2727
, Rossbach, Anne, Pichler, Sandra L., Zeilhofer, Hans-Florian, Gutwald, Ralf, Dresely, Veit, Meller, Harald, Baumhoer, Daniel, & Alt, Kurt W. (2019). An osseous lesion in the maxillary sinus-Tumour or tumour-like?
Rodgers, Griffin, Correction of phase wrapping artifacts in grating-based hard x-ray tomography. 11113. https://doi.org/10.1117/12.2530709
, Deyhle, Hans, Marathe, Shashidhara, Bikis, Christos, Müller, Bert, & Weitkamp, Timm. (2019).
Rodgers, Griffin, Correction of phase wrapping artifacts in grating-based hard x-ray tomography. 11113. https://doi.org/10.1117/12.2530709
, Deyhle, Hans, Marathe, Shashidhara, Bikis, Christos, Müller, Bert, & Weitkamp, Timm. (2019).
Sacher, Mattia, Comparing the accuracy of intraoral scanners, using advanced micro computed tomography. 11113. https://doi.org/10.1117/12.2530728
, Deyhle, Hans, Deyhle, Hans, Jäger, Kurt, & Müller, Bert. (2019).
Sacher, Mattia, Comparing the accuracy of intraoral scanners, using advanced micro computed tomography. 11113. https://doi.org/10.1117/12.2530728
, Deyhle, Hans, Deyhle, Hans, Jäger, Kurt, & Müller, Bert. (2019).
Von Jackowski J., Three-dimensional characterization of soft silicone elements for intraoral device. 11113. https://doi.org/10.1117/12.2529340
, Osmani B., Topper T., & Muller B. (2019).
Von Jackowski J., Three-dimensional characterization of soft silicone elements for intraoral device. 11113. https://doi.org/10.1117/12.2529340
, Osmani B., Topper T., & Muller B. (2019).
Costeur L., Grohe C., Aguirre-Fernandez G., Ekdale E., Scientific Reports, 8(1). https://doi.org/10.1038/s41598-018-26094-0
, Muller B., & Mennecart B. (2018). The bony labyrinth of toothed whales reflects both phylogeny and habitat preferences.
Costeur L., Grohe C., Aguirre-Fernandez G., Ekdale E., Scientific Reports, 8(1). https://doi.org/10.1038/s41598-018-26094-0
, Muller B., & Mennecart B. (2018). The bony labyrinth of toothed whales reflects both phylogeny and habitat preferences.
Rodgers, G. F., Erskine, D., McKieth, I., Taylor, J.-P., Mueller, B., Biskis, C., Schulz, G., Kuo, W., Hieber, S., & Urwyler, P. (2018). P1‐101: FEASIBILITY STUDY OF SYNCHROTRON‐BASED MICROTOMOGRAPHY TO IDENTIFY α‐SYNUCLEIN OLIGOMERS IN POSTMORTEM TISSUE [Journal-article]. Alzheimer’s &Amp; Dementia, 14(7S_Part_5). https://doi.org/10.1016/j.jalz.2018.06.104
Rodgers, G. F., Erskine, D., McKieth, I., Taylor, J.-P., Mueller, B., Biskis, C., Schulz, G., Kuo, W., Hieber, S., & Urwyler, P. (2018). P1‐101: FEASIBILITY STUDY OF SYNCHROTRON‐BASED MICROTOMOGRAPHY TO IDENTIFY α‐SYNUCLEIN OLIGOMERS IN POSTMORTEM TISSUE [Journal-article]. Alzheimer’s &Amp; Dementia, 14(7S_Part_5). https://doi.org/10.1016/j.jalz.2018.06.104
Khimchenko A, APL Bioengineering, 2(1), 16106. https://doi.org/10.1063/1.5022184
, Thalmann P, & Müller B. (2018). Implementation of a double-grating interferometer for phase-contrast computed tomography in a conventional system nanotom(®) m.
Khimchenko A, APL Bioengineering, 2(1), 16106. https://doi.org/10.1063/1.5022184
, Thalmann P, & Müller B. (2018). Implementation of a double-grating interferometer for phase-contrast computed tomography in a conventional system nanotom(®) m.
Bikis C., Thalmann P., Degrugillier L., Journal of Neuroscience Methods, 294, 59–66. https://doi.org/10.1016/j.jneumeth.2017.11.005
, Muller B., Kalbermatten D.F., Madduri S., & Hieber S.E. (2018). Three-dimensional and non-destructive characterization of nerves inside conduits using laboratory-based micro computed tomography.
Bikis C., Thalmann P., Degrugillier L., Journal of Neuroscience Methods, 294, 59–66. https://doi.org/10.1016/j.jneumeth.2017.11.005
, Muller B., Kalbermatten D.F., Madduri S., & Hieber S.E. (2018). Three-dimensional and non-destructive characterization of nerves inside conduits using laboratory-based micro computed tomography.
Bikis, Christos, Degrugillier, Lucas, Thalmann, Peter, Journal of Neuroscience Methods, 295, 37–44. https://doi.org/10.1016/j.jneumeth.2017.11.015
, Müller, Bert, Hieber, Simone E., Kalbermatten, Daniel F., & Madduri, Srinivas. (2018). Three-dimensional imaging and analysis of entire peripheral nerves after repair and reconstruction.
Bikis, Christos, Degrugillier, Lucas, Thalmann, Peter, Journal of Neuroscience Methods, 295, 37–44. https://doi.org/10.1016/j.jneumeth.2017.11.015
, Müller, Bert, Hieber, Simone E., Kalbermatten, Daniel F., & Madduri, Srinivas. (2018). Three-dimensional imaging and analysis of entire peripheral nerves after repair and reconstruction.
Kellner, Siri K., Knappertsbusch, Michael W., Costeur, Loic, Müller, Bert, & Data-archive to “Imaging the internal structure of Borelis schlumbergeri Reichel (1937): Advances by high-resolution hard X-ray tomography”. PANGAEA. Alfred Wegener Institute, Helmholtz Center for Polar and Marine Research (AWI). https://doi.org/10.1594/pangaea.884663
. (2018).
Kellner, Siri K., Knappertsbusch, Michael W., Costeur, Loic, Müller, Bert, & Data-archive to “Imaging the internal structure of Borelis schlumbergeri Reichel (1937): Advances by high-resolution hard X-ray tomography”. PANGAEA. Alfred Wegener Institute, Helmholtz Center for Polar and Marine Research (AWI). https://doi.org/10.1594/pangaea.884663
. (2018).
Khimchenko, Anna, Bikis, Christos, Pacureanu, Alexandra, Hieber, Simone E., Thalmann, Peter, Deyhle, Hans, Schweighauser, Gabriel, Hench, Jürgen, Frank, Stephan, Müller-Gerbl, Magdalena, Advanced Science, 5. https://doi.org/10.1002/advs.201700694
, Cloetens, Peter, & Müller, Bert. (2018). Hard X-Ray Nanoholotomography: Large-Scale, Label-Free, 3D Neuroimaging beyond Optical Limit.
Khimchenko, Anna, Bikis, Christos, Pacureanu, Alexandra, Hieber, Simone E., Thalmann, Peter, Deyhle, Hans, Schweighauser, Gabriel, Hench, Jürgen, Frank, Stephan, Müller-Gerbl, Magdalena, Advanced Science, 5. https://doi.org/10.1002/advs.201700694
, Cloetens, Peter, & Müller, Bert. (2018). Hard X-Ray Nanoholotomography: Large-Scale, Label-Free, 3D Neuroimaging beyond Optical Limit.
Rodgers, Griffin, Applied Physics Letters, 113. https://doi.org/10.1063/1.5045398
, Deyhle, Hans, Marathe, Shashidhara, Bikis, Christos, Weitkamp, Timm, & Müller, Bert. (2018). A quantitative correction for phase wrapping artifacts in hard X-ray grating interferometry.
Rodgers, Griffin, Applied Physics Letters, 113. https://doi.org/10.1063/1.5045398
, Deyhle, Hans, Marathe, Shashidhara, Bikis, Christos, Weitkamp, Timm, & Müller, Bert. (2018). A quantitative correction for phase wrapping artifacts in hard X-ray grating interferometry.
Deyhle, Hans, Bikis, Christos, Khimchenko, Anna, Schweighauser, Gabriel, Hench, Jürgen, Microscopy and Microanalysis, 24(Suppl 2), 408–409. https://doi.org/10.1017/s1431927618014320
, Müller, Bert, & Hieber, Simone E. (2018). Visualization and Segmentation of Cells in Unstained Paraffin-Embedded Cerebral Tissue. [Case Report].
Deyhle, Hans, Bikis, Christos, Khimchenko, Anna, Schweighauser, Gabriel, Hench, Jürgen, Microscopy and Microanalysis, 24(Suppl 2), 408–409. https://doi.org/10.1017/s1431927618014320
, Müller, Bert, & Hieber, Simone E. (2018). Visualization and Segmentation of Cells in Unstained Paraffin-Embedded Cerebral Tissue. [Case Report].
Khimchenko, Anna, Pacureanu, Alexandra, Bikis, Christos, Hieber, Simone E., Thalmann, Peter, Deyhle, Hans, Schweighauser, Gabriel, Hench, Jürgen, Frank, Stephan, Müller-Gerbl, Magdalena, Microscopy and Microanalysis, 24(Suppl 2), 354–355. https://doi.org/10.1017/s143192761801406x
, Cloetens, Peter, & Muller, Bert. (2018). Hard X-ray Nano-Holotomography of Formalin-Fixated and Paraffin-Embedded Human Brain Tissue.
Khimchenko, Anna, Pacureanu, Alexandra, Bikis, Christos, Hieber, Simone E., Thalmann, Peter, Deyhle, Hans, Schweighauser, Gabriel, Hench, Jürgen, Frank, Stephan, Müller-Gerbl, Magdalena, Microscopy and Microanalysis, 24(Suppl 2), 354–355. https://doi.org/10.1017/s143192761801406x
, Cloetens, Peter, & Muller, Bert. (2018). Hard X-ray Nano-Holotomography of Formalin-Fixated and Paraffin-Embedded Human Brain Tissue.
Rodgers, Griffin, Khimchenko, Anna, Deyhle, Hans, Schulz, Joachim, Muller, Bert, & Microscopy and Microanalysis, 24(Suppl 2), 388–389. https://doi.org/10.1017/s1431927618014228
. (2018). Double Grating Interferometry in a Commercial Micro Computed Tomography System for Biomedical Imaging.
Rodgers, Griffin, Khimchenko, Anna, Deyhle, Hans, Schulz, Joachim, Muller, Bert, & Microscopy and Microanalysis, 24(Suppl 2), 388–389. https://doi.org/10.1017/s1431927618014228
. (2018). Double Grating Interferometry in a Commercial Micro Computed Tomography System for Biomedical Imaging.
Microscopy and Microanalysis, 24(Suppl 2), 406–407. https://doi.org/10.1017/s1431927618014319
, Corek, E., Siegrist, S., Thalmann, P., Deyhle, H., Rack, A., Huwyler, J., & Muller, B. (2018). Propagation-based X-ray Phase Contrast Microtomography of Zebrafish Embryos to Understand Drug Delivery.
Microscopy and Microanalysis, 24(Suppl 2), 406–407. https://doi.org/10.1017/s1431927618014319
, Corek, E., Siegrist, S., Thalmann, P., Deyhle, H., Rack, A., Huwyler, J., & Muller, B. (2018). Propagation-based X-ray Phase Contrast Microtomography of Zebrafish Embryos to Understand Drug Delivery.
Mennecart B., DeMiguel D., Bibi F., Rossner G.E., Metais G., Neenan J.M., Wang S., Scientific Reports, 7(1). https://doi.org/10.1038/s41598-017-12848-9
, Muller B., & Costeur L. (2017). Bony labyrinth morphology clarifies the origin and evolution of deer.
Mennecart B., DeMiguel D., Bibi F., Rossner G.E., Metais G., Neenan J.M., Wang S., Scientific Reports, 7(1). https://doi.org/10.1038/s41598-017-12848-9
, Muller B., & Costeur L. (2017). Bony labyrinth morphology clarifies the origin and evolution of deer.
Thalmann, P., Bikis, C., Hipp, A., Mueller, B., Hieber, S. E., & APPLIED PHYSICS LETTERS, 110. https://doi.org/10.1063/1.4975679
(2017). Single and double grating-based X-ray microtomography using synchrotron radiation.
Thalmann, P., Bikis, C., Hipp, A., Mueller, B., Hieber, S. E., & APPLIED PHYSICS LETTERS, 110. https://doi.org/10.1063/1.4975679
(2017). Single and double grating-based X-ray microtomography using synchrotron radiation.
Zdora MC, Vila-Comamala J, Biomedical optics express, 8(2), 1257–1270. https://doi.org/10.1364/boe.8.001257
, Khimchenko A, Hipp A, Cook AC, Dilg D, David C, Grünzweig C, Rau C, Thibault P, & Zanette I. (2017). X-ray phase microtomography with a single grating for high-throughput investigations of biological tissue.
Zdora MC, Vila-Comamala J, Biomedical optics express, 8(2), 1257–1270. https://doi.org/10.1364/boe.8.001257
, Khimchenko A, Hipp A, Cook AC, Dilg D, David C, Grünzweig C, Rau C, Thibault P, & Zanette I. (2017). X-ray phase microtomography with a single grating for high-throughput investigations of biological tissue.
Costeur, Loic, Mennecart, Bastien, Khimchenko, Anna, Mueller, Bert, & Proceedings of SPIE (Vol. 10391). SPIE-INT SOC OPTICAL ENGINEERING. https://doi.org/10.1117/12.2276158
. (2017). Innervation of the cow’s inner ear derived from micro-computed tomography. In Muller, B; Wang, G (ed.),
Costeur, Loic, Mennecart, Bastien, Khimchenko, Anna, Mueller, Bert, & Proceedings of SPIE (Vol. 10391). SPIE-INT SOC OPTICAL ENGINEERING. https://doi.org/10.1117/12.2276158
. (2017). Innervation of the cow’s inner ear derived from micro-computed tomography. In Muller, B; Wang, G (ed.),
Costeur, Loïc, Mennecart, Bastien, Müller, Bert, & Journal of Anatomy, 230, 347–353. https://doi.org/10.1111/joa.12549
. (2017). Prenatal growth stages show the development of the ruminant bony labyrinth and petrosal bone.
Costeur, Loïc, Mennecart, Bastien, Müller, Bert, & Journal of Anatomy, 230, 347–353. https://doi.org/10.1111/joa.12549
. (2017). Prenatal growth stages show the development of the ruminant bony labyrinth and petrosal bone.
Khimchenko, A., Bikis, C., Hard X-ray submicrometer tomography of human brain tissue at Diamond Light Source. 849. https://doi.org/10.1088/1742-6596/849/1/012030
, Zdora, M.-C., Zanette, I., Vila-Comamala, J., Schweighauser, G., Hench, J., Hieber, S.E., Deyhle, H., Thalmann, P., & Müller, B. (2017).
Khimchenko, A., Bikis, C., Hard X-ray submicrometer tomography of human brain tissue at Diamond Light Source. 849. https://doi.org/10.1088/1742-6596/849/1/012030
, Zdora, M.-C., Zanette, I., Vila-Comamala, J., Schweighauser, G., Hench, J., Hieber, S.E., Deyhle, H., Thalmann, P., & Müller, B. (2017).
Khimchenko, Anna, Bikis, Christos, Schweighauser, Gabriel, Hench, Jürgen, Joita-Pacureanu, Alexandra-Teodora, Thalmann, Peter, Deyhle, Hans, Osmani, Bekim, Chicherova, Natalia, Hieber, Simone E., Cloetens, Peter, Müller-Gerbl, Magdalena, Imaging cellular and subcellular structure of human brain tissue using micro computed tomography. 10391. https://doi.org/10.1117/12.2274120
, & Müller, Bert. (2017).
Khimchenko, Anna, Bikis, Christos, Schweighauser, Gabriel, Hench, Jürgen, Joita-Pacureanu, Alexandra-Teodora, Thalmann, Peter, Deyhle, Hans, Osmani, Bekim, Chicherova, Natalia, Hieber, Simone E., Cloetens, Peter, Müller-Gerbl, Magdalena, Imaging cellular and subcellular structure of human brain tissue using micro computed tomography. 10391. https://doi.org/10.1117/12.2274120
, & Müller, Bert. (2017).
Khimchenko, Anna, Three-dimensional imaging of human brain tissues using absorption-contrast high-resolution X-ray tomography. 10162. https://doi.org/10.1117/12.2259977
, Bikis, Christos, Deyhle, Hans, Chicherova, Natalia, Hieber, Simone E., Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2017).
Khimchenko, Anna, Three-dimensional imaging of human brain tissues using absorption-contrast high-resolution X-ray tomography. 10162. https://doi.org/10.1117/12.2259977
, Bikis, Christos, Deyhle, Hans, Chicherova, Natalia, Hieber, Simone E., Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2017).
Mani-Caplazi, Gabriela, Imaging of the human tooth cementum ultrastructure of archeological teeth, using hard x-ray microtomography to determine age-at-death and stress periods. 10391. https://doi.org/10.1117/12.2276148
, Deyhle, Hans, Hotz, Gerhard, Vach, Werner, Wittwer-Backofen, Ursula, & Müller, Bert. (2017).
Mani-Caplazi, Gabriela, Imaging of the human tooth cementum ultrastructure of archeological teeth, using hard x-ray microtomography to determine age-at-death and stress periods. 10391. https://doi.org/10.1117/12.2276148
, Deyhle, Hans, Hotz, Gerhard, Vach, Werner, Wittwer-Backofen, Ursula, & Müller, Bert. (2017).
Xrm, 849. https://doi.org/10.1088/1742-6596/849/1/012026
, Götz, C., Müller-Gerbl, M., Zanette, I., Zdora, M.-C., Khimchenko, A., Deyhle, H., Thalmann, P., & Müller, B. (2017). Multimodal imaging of the human knee down to the cellular level.
Xrm, 849. https://doi.org/10.1088/1742-6596/849/1/012026
, Götz, C., Müller-Gerbl, M., Zanette, I., Zdora, M.-C., Khimchenko, A., Deyhle, H., Thalmann, P., & Müller, B. (2017). Multimodal imaging of the human knee down to the cellular level.
Grating-based tomography applications in biomedical engineering. 10391. https://doi.org/10.1117/12.2274244
, Thalmann P., Khimchenko A., & Muller B. (2017).
Grating-based tomography applications in biomedical engineering. 10391. https://doi.org/10.1117/12.2274244
, Thalmann P., Khimchenko A., & Muller B. (2017).
Sutter, Sarah, Todorov, Atanas, Ismail, Tarek, Haumer, Alexander, Fulco, Ilario, Contrast Media & Molecular Imaging, 2017, 4035160. https://doi.org/10.1155/2017/4035160
, Scherberich, Arnaud, Scherberich, Arnaud, Kaempfen, Alexandre, Martin, Ivan, & Schaefer, Dirk J. (2017). Contrast-Enhanced Microtomographic Characterisation of Vessels in Native Bone and Engineered Vascularised Grafts Using Ink-Gelatin Perfusion and Phosphotungstic Acid.
Sutter, Sarah, Todorov, Atanas, Ismail, Tarek, Haumer, Alexander, Fulco, Ilario, Contrast Media & Molecular Imaging, 2017, 4035160. https://doi.org/10.1155/2017/4035160
, Scherberich, Arnaud, Scherberich, Arnaud, Kaempfen, Alexandre, Martin, Ivan, & Schaefer, Dirk J. (2017). Contrast-Enhanced Microtomographic Characterisation of Vessels in Native Bone and Engineered Vascularised Grafts Using Ink-Gelatin Perfusion and Phosphotungstic Acid.
Thalmann, Peter, Bikis, Christos, Proceedings of SPIE, 10391, 1039114–1039111. https://doi.org/10.1117/12.2274236
, Paleo, Pierre, Mirone, Alessandro, Rack, Alexander, Siegrist, Stefan, Cörek, Emre, Huwyler, Jörg, & Müller, Bert. (2017). Conference Proceedings: Removing ring artefacts from synchrotron radiation-based hard x-ray tomography data.
Thalmann, Peter, Bikis, Christos, Proceedings of SPIE, 10391, 1039114–1039111. https://doi.org/10.1117/12.2274236
, Paleo, Pierre, Mirone, Alessandro, Rack, Alexander, Siegrist, Stefan, Cörek, Emre, Huwyler, Jörg, & Müller, Bert. (2017). Conference Proceedings: Removing ring artefacts from synchrotron radiation-based hard x-ray tomography data.
Mennecart, Bastien, Rössner, Gertrud E, Métais, Grégoire, DeMiguel, Daniel, Journal of Morphology, 277(10), 1329–1338. https://doi.org/10.1002/jmor.20579
, Muller B., & Costeur L. (2016). The petrosal bone and bony labyrinth of early to middle Miocene European deer (Mammalia, Cervidae) reveal their phylogeny.
Mennecart, Bastien, Rössner, Gertrud E, Métais, Grégoire, DeMiguel, Daniel, Journal of Morphology, 277(10), 1329–1338. https://doi.org/10.1002/jmor.20579
, Muller B., & Costeur L. (2016). The petrosal bone and bony labyrinth of early to middle Miocene European deer (Mammalia, Cervidae) reveal their phylogeny.
Hieber S.E., Bikis C., Khimchenko A., Schweighauser G., Hench J., Chicherova N., Scientific Reports, 6. https://doi.org/10.1038/srep32156
, & Muller B. (2016). Tomographic brain imaging with nucleolar detail and automatic cell counting.
Hieber S.E., Bikis C., Khimchenko A., Schweighauser G., Hench J., Chicherova N., Scientific Reports, 6. https://doi.org/10.1038/srep32156
, & Muller B. (2016). Tomographic brain imaging with nucleolar detail and automatic cell counting.
Vogtlin C., Physics in Medicine, 1, 20–26. https://doi.org/10.1016/j.phmed.2016.04.002
, Jager K., & Muller B. (2016). Comparing the accuracy of master models based on digital intra-oral scanners with conventional plaster casts.
Vogtlin C., Physics in Medicine, 1, 20–26. https://doi.org/10.1016/j.phmed.2016.04.002
, Jager K., & Muller B. (2016). Comparing the accuracy of master models based on digital intra-oral scanners with conventional plaster casts.
Bikis, Christos, Janz, Philipp, High-resolution synchrotron radiation-based phase tomography of the healthy and epileptic brain. 9967. https://doi.org/10.1117/12.2237816
, Schweighauser, Gabriel, Hench, Jürgen, Thalmann, Peter, Deyhle, Hans, Chicherova, Natalia, Rack, Alexander, Khimchenko, Anna, Hieber, Simone E., Mariani, Luigi, Haas, Carola A., & Müller, Bert. (2016).
Bikis, Christos, Janz, Philipp, High-resolution synchrotron radiation-based phase tomography of the healthy and epileptic brain. 9967. https://doi.org/10.1117/12.2237816
, Schweighauser, Gabriel, Hench, Jürgen, Thalmann, Peter, Deyhle, Hans, Chicherova, Natalia, Rack, Alexander, Khimchenko, Anna, Hieber, Simone E., Mariani, Luigi, Haas, Carola A., & Müller, Bert. (2016).
Botta, Lea Maria, White, Shane N., Deyhle, Hans, Dziadowiec, Iwona, Comparing natural and artificial carious lesions in human crowns by means of conventional hard X-ray micro-tomography and two-dimensional X-ray scattering with synchrotron radiation. 9967. https://doi.org/10.1117/12.2238487
, Thalmann, Peter, & Müller, Bert. (2016).
Botta, Lea Maria, White, Shane N., Deyhle, Hans, Dziadowiec, Iwona, Comparing natural and artificial carious lesions in human crowns by means of conventional hard X-ray micro-tomography and two-dimensional X-ray scattering with synchrotron radiation. 9967. https://doi.org/10.1117/12.2238487
, Thalmann, Peter, & Müller, Bert. (2016).
Buscema, Marzia, Histology-validated X-ray tomography for imaging human coronary arteries. 9967. https://doi.org/10.1117/12.2238702
, Deyhle, Hans, Khimchenko, Anna, Matviykiv, Sofiya, Holme, Margaret N., Hipp, Alexander, Beckmann, Felix, Saxer, Till, Michaud, Katarzyna, & Müller, Bert. (2016).
Buscema, Marzia, Histology-validated X-ray tomography for imaging human coronary arteries. 9967. https://doi.org/10.1117/12.2238702
, Deyhle, Hans, Khimchenko, Anna, Matviykiv, Sofiya, Holme, Margaret N., Hipp, Alexander, Beckmann, Felix, Saxer, Till, Michaud, Katarzyna, & Müller, Bert. (2016).
Chicherova, Natalia, Hieber, Simone E., Proceedings of SPIE. 5200 (Vol. 9967). SPIE. https://doi.org/10.1117/12.2237322
, Khimchenko, Anna, Bikis, Christos, Cattin, Philippe C., & Müller, Bert. (2016). Automatic histology registration in application to X-ray modalities. In Stock, Stuart R.; Müller, Bert; Wang, Ge (Ed.),
Chicherova, Natalia, Hieber, Simone E., Proceedings of SPIE. 5200 (Vol. 9967). SPIE. https://doi.org/10.1117/12.2237322
, Khimchenko, Anna, Bikis, Christos, Cattin, Philippe C., & Müller, Bert. (2016). Automatic histology registration in application to X-ray modalities. In Stock, Stuart R.; Müller, Bert; Wang, Ge (Ed.),
Costeur, Loic, Mennecart, Bastien, Mueller, Bert, & Middle ear bones of a mid-gestation ruminant foetus extracted from X-ray computed tomography. 9967. https://doi.org/10.1117/12.2238119
. (2016).
Costeur, Loic, Mennecart, Bastien, Mueller, Bert, & Middle ear bones of a mid-gestation ruminant foetus extracted from X-ray computed tomography. 9967. https://doi.org/10.1117/12.2238119
. (2016).
Dalstra M., Hard X-ray micro-tomography of a human head post-mortem as a gold standard to compare X-ray modalities. 9967. https://doi.org/10.1117/12.2237655
, Dagassan-Berndt D., Verna, C., Muller-Gerbl M., & Muller B. (2016).
Dalstra M., Hard X-ray micro-tomography of a human head post-mortem as a gold standard to compare X-ray modalities. 9967. https://doi.org/10.1117/12.2237655
, Dagassan-Berndt D., Verna, C., Muller-Gerbl M., & Muller B. (2016).
Deyhle, Hans, Imaging tissues for biomedical research using the high-resolution micro-tomography system nanotom® m. 9967. https://doi.org/10.1117/12.2237809
, Khimchenko, Anna, Bikis, Christos, Hieber, Simone E., Jaquiery, Claude, Kunz, Christoph, Müller-Gerbl, Magdalena, Höchel, Sebastian, Saxer, Till, Stalder, Anja K., Ilgenstein, Bernd, Beckmann, Felix, Thalmann, Peter, Buscema, Marzia, Rohr, Nadja, Holme, Margaret N., & Müller, Bert. (2016).
Deyhle, Hans, Imaging tissues for biomedical research using the high-resolution micro-tomography system nanotom® m. 9967. https://doi.org/10.1117/12.2237809
, Khimchenko, Anna, Bikis, Christos, Hieber, Simone E., Jaquiery, Claude, Kunz, Christoph, Müller-Gerbl, Magdalena, Höchel, Sebastian, Saxer, Till, Stalder, Anja K., Ilgenstein, Bernd, Beckmann, Felix, Thalmann, Peter, Buscema, Marzia, Rohr, Nadja, Holme, Margaret N., & Müller, Bert. (2016).
Hieber, Simone E., Bikis, Christos, Khimchenko, Anna, Computational cell quantification in the human brain tissues based on hard X-ray phase-contrast tomograms. 9967. https://doi.org/10.1117/12.2237012
, Deyhle, Hans, Thalmann, Peter, Chicherova, Natalia, Rack, Alexander, Zdora, Marie-Christine, Zanette, Irene, Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2016).
Hieber, Simone E., Bikis, Christos, Khimchenko, Anna, Computational cell quantification in the human brain tissues based on hard X-ray phase-contrast tomograms. 9967. https://doi.org/10.1117/12.2237012
, Deyhle, Hans, Thalmann, Peter, Chicherova, Natalia, Rack, Alexander, Zdora, Marie-Christine, Zanette, Irene, Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2016).
Khimchenko, Anna, Deyhle, Hans, NeuroImage, 139, 26–36. https://doi.org/10.1016/j.neuroimage.2016.06.005
, Schweighauser, Gabriel, Hench, Jürgen, Chicherova, Natalia, Bikis, Christos, Hieber, Simone E., & Müller, Bert. (2016). Extending two-dimensional histology into the third dimension through conventional micro computed tomography.
Khimchenko, Anna, Deyhle, Hans, NeuroImage, 139, 26–36. https://doi.org/10.1016/j.neuroimage.2016.06.005
, Schweighauser, Gabriel, Hench, Jürgen, Chicherova, Natalia, Bikis, Christos, Hieber, Simone E., & Müller, Bert. (2016). Extending two-dimensional histology into the third dimension through conventional micro computed tomography.
Khimchenko, Anna, Non-destructive phase contrast hard X-ray imaging to reveal the three-dimensional microstructure of soft and hard tissues. 9797. https://doi.org/10.1117/12.2222038
, Deyhle, Hans, Hieber, Simone E., Hasan, Samiul, Bikis, Christos, Schulz, Joachim, Costeur, Loïc, & Müller, Bert. (2016).
Khimchenko, Anna, Non-destructive phase contrast hard X-ray imaging to reveal the three-dimensional microstructure of soft and hard tissues. 9797. https://doi.org/10.1117/12.2222038
, Deyhle, Hans, Hieber, Simone E., Hasan, Samiul, Bikis, Christos, Schulz, Joachim, Costeur, Loïc, & Müller, Bert. (2016).
Khimchenko, Anna, X-ray micro-tomography for investigations of brain tissues on cellular level. 9967. https://doi.org/10.1117/12.2237554
, Deyhle, Hans, Thalmann, Peter, Zanette, Irene, Zdora, Marie-Christine, Bikis, Christos, Hipp, Alexander, Hieber, Simone E., Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2016).
Khimchenko, Anna, X-ray micro-tomography for investigations of brain tissues on cellular level. 9967. https://doi.org/10.1117/12.2237554
, Deyhle, Hans, Thalmann, Peter, Zanette, Irene, Zdora, Marie-Christine, Bikis, Christos, Hipp, Alexander, Hieber, Simone E., Schweighauser, Gabriel, Hench, Jürgen, & Müller, Bert. (2016).
Müller, Bert, 12th International Conference on X‐Ray Microscopy, 1696. https://doi.org/10.1063/1.4937504
, Deyhle, Hans, Stalder, Anja K., Ilgenstein, Bernd, Holme, Margaret N., Weitkamp, Timm, Beckmann, Felix, & Hieber, Simone E. (2016). X-ray microscopy of soft and hard human tissues.
Müller, Bert, 12th International Conference on X‐Ray Microscopy, 1696. https://doi.org/10.1063/1.4937504
, Deyhle, Hans, Stalder, Anja K., Ilgenstein, Bernd, Holme, Margaret N., Weitkamp, Timm, Beckmann, Felix, & Hieber, Simone E. (2016). X-ray microscopy of soft and hard human tissues.
Hierarchical imaging of the human knee. 9967. https://doi.org/10.1117/12.2238089
, Götz, Christian, Deyhle, Hans, Müller-Gerbl, Magdalena, Zanette, Irene, Zdora, Marie-Christine, Khimchenko, Anna, Thalmann, Peter, Rack, Alexander, & Müller, Bert. (2016).
Hierarchical imaging of the human knee. 9967. https://doi.org/10.1117/12.2238089
, Götz, Christian, Deyhle, Hans, Müller-Gerbl, Magdalena, Zanette, Irene, Zdora, Marie-Christine, Khimchenko, Anna, Thalmann, Peter, Rack, Alexander, & Müller, Bert. (2016).
Deyhle, Hans, Dziadowiec, Iwona, Kind, Lucy, Thalmann, Peter, Dentistry Journal, 3, 111–122. https://doi.org/10.3390/dj3040111
, & Müller, Bert. (2015). Mineralization of early stage carious lesions in vitro-a quantitative approach.
Deyhle, Hans, Dziadowiec, Iwona, Kind, Lucy, Thalmann, Peter, Dentistry Journal, 3, 111–122. https://doi.org/10.3390/dj3040111
, & Müller, Bert. (2015). Mineralization of early stage carious lesions in vitro-a quantitative approach.
Hoechel, Sebastian, Annals of Anatomy - Anatomischer Anzeiger, 200, 98–104. https://doi.org/10.1016/j.aanat.2015.02.007
, & Müller-Gerbl, Magdalena. (2015). Insight into the 3D-trabecular architecture of the human patella.
Hoechel, Sebastian, Annals of Anatomy - Anatomischer Anzeiger, 200, 98–104. https://doi.org/10.1016/j.aanat.2015.02.007
, & Müller-Gerbl, Magdalena. (2015). Insight into the 3D-trabecular architecture of the human patella.
Lang S., Zanette I., Dominietto M., Langer M., Rack A., Journal of Applied Physics, 116(15). https://doi.org/10.1063/1.4897225
, Le Duc G., David C., Mohr J., Pfeiffer F., Muller B., & Weitkamp T. (2014). Experimental comparison of grating- and propagation-based hard X-ray phase tomography of soft tissue.
Lang S., Zanette I., Dominietto M., Langer M., Rack A., Journal of Applied Physics, 116(15). https://doi.org/10.1063/1.4897225
, Le Duc G., David C., Mohr J., Pfeiffer F., Muller B., & Weitkamp T. (2014). Experimental comparison of grating- and propagation-based hard X-ray phase tomography of soft tissue.
Bormann, Therese, Acta Biomaterialia, 10, 1024–1034. https://doi.org/10.1016/j.actbio.2013.11.007
, Deyhle, Hans, Beckmann, Felix, De Wild, Michael, Küffer, Jürg, Münch, Christoph, Hoffmann, Waldemar, & Müller, Bert. (2014). Combining micro computed tomography and three-dimensional registration to evaluate local strains in shape memory scaffolds.
Bormann, Therese, Acta Biomaterialia, 10, 1024–1034. https://doi.org/10.1016/j.actbio.2013.11.007
, Deyhle, Hans, Beckmann, Felix, De Wild, Michael, Küffer, Jürg, Münch, Christoph, Hoffmann, Waldemar, & Müller, Bert. (2014). Combining micro computed tomography and three-dimensional registration to evaluate local strains in shape memory scaffolds.