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Orso Pusterla, Corin Willers, Robin Sandkühler, Simon Andermatt, Sylvia Nyilas, Philippe C. Cattin, Philipp Latzin, Oliver Bieri, & Zeitschrift Für Medizinische Physik. https://doi.org/10.1016/j.zemedi.2024.08.001
. (2024). An automated pipeline for computation and analysis of functional ventilation and perfusion lung MRI with matrix pencil decomposition: TrueLung.
Orso Pusterla, Corin Willers, Robin Sandkühler, Simon Andermatt, Sylvia Nyilas, Philippe C. Cattin, Philipp Latzin, Oliver Bieri, & Zeitschrift Für Medizinische Physik. https://doi.org/10.1016/j.zemedi.2024.08.001
. (2024). An automated pipeline for computation and analysis of functional ventilation and perfusion lung MRI with matrix pencil decomposition: TrueLung.
Bieri, Oliver, Pusterla, Orso, & Zeitschrift Fur Medizinische Physik. https://doi.org/10.1016/j.zemedi.2024.07.003
. (2024). Erratum to “Free-breathing half-radial dual-echo balanced steady-state free precession thoracic imaging with wobbling Archimedean spiral pole trajectories” [Z Med. Phys. 33 (2023) 220–229, (S0939388922000034), (10.1016/j.zemedi.2022.01.003)].
Bieri, Oliver, Pusterla, Orso, & Zeitschrift Fur Medizinische Physik. https://doi.org/10.1016/j.zemedi.2024.07.003
. (2024). Erratum to “Free-breathing half-radial dual-echo balanced steady-state free precession thoracic imaging with wobbling Archimedean spiral pole trajectories” [Z Med. Phys. 33 (2023) 220–229, (S0939388922000034), (10.1016/j.zemedi.2022.01.003)].
Doellinger, Felix, Frontiers in Medicine, 11. https://doi.org/10.3389/fmed.2024.1349466
, Roehmel, Jobst, Stahl, Mirjam, Posch, Helena, Steffen, Ingo G., Pusterla, Orso, Bieri, Oliver, Wielpütz, Mark O., & Mall, Marcus A. (2024). Contrast agent-free functional magnetic resonance imaging with matrix pencil decomposition to quantify abnormalities in lung perfusion and ventilation in patients with cystic fibrosis.
Doellinger, Felix, Frontiers in Medicine, 11. https://doi.org/10.3389/fmed.2024.1349466
, Roehmel, Jobst, Stahl, Mirjam, Posch, Helena, Steffen, Ingo G., Pusterla, Orso, Bieri, Oliver, Wielpütz, Mark O., & Mall, Marcus A. (2024). Contrast agent-free functional magnetic resonance imaging with matrix pencil decomposition to quantify abnormalities in lung perfusion and ventilation in patients with cystic fibrosis.
Frauchiger, Bettina S., Willers, Corin, Cotting, Jasna, Kieninger, Elisabeth, Korten, Insa, Casaulta, Carmen, Salem, Yasmin, Stranzinger, Enno, Brabandt, Ben, Usemann, Jakob, Regamey, Nicolas, Kuhn, Alena, Blanchon, Sylvain, Rochat, Isabelle, Journal of Cystic Fibrosis. https://doi.org/10.1016/j.jcf.2024.05.010
, Müller-Suter, Dominik, Moeller, Alexander, Latzin, Philipp, & Ramsey, Kathryn A. (2024). Lung structural and functional impairments in young children with cystic fibrosis diagnosed following newborn screening – A nationwide observational study.
Frauchiger, Bettina S., Willers, Corin, Cotting, Jasna, Kieninger, Elisabeth, Korten, Insa, Casaulta, Carmen, Salem, Yasmin, Stranzinger, Enno, Brabandt, Ben, Usemann, Jakob, Regamey, Nicolas, Kuhn, Alena, Blanchon, Sylvain, Rochat, Isabelle, Journal of Cystic Fibrosis. https://doi.org/10.1016/j.jcf.2024.05.010
, Müller-Suter, Dominik, Moeller, Alexander, Latzin, Philipp, & Ramsey, Kathryn A. (2024). Lung structural and functional impairments in young children with cystic fibrosis diagnosed following newborn screening – A nationwide observational study.
Lee, N. G., Bauman, G., Bieri, O., & Nayak, K. S. (2024). Replication of the bSTAR sequence and open-source implementation [Journal-article]. Magnetic Resonance in Medicine, 91, 1464–1477. https://doi.org/10.1002/mrm.29947
Lee, N. G., Bauman, G., Bieri, O., & Nayak, K. S. (2024). Replication of the bSTAR sequence and open-source implementation [Journal-article]. Magnetic Resonance in Medicine, 91, 1464–1477. https://doi.org/10.1002/mrm.29947
McGrath, Charles, Bieri, Oliver, Kozerke, Sebastian, & Magnetic Resonance in Medicine, 91, 174–189. https://doi.org/10.1002/mrm.29837
. (2024). Self-gated cine phase-contrast balanced SSFP flow quantification at 0.55 T.
McGrath, Charles, Bieri, Oliver, Kozerke, Sebastian, & Magnetic Resonance in Medicine, 91, 174–189. https://doi.org/10.1002/mrm.29837
. (2024). Self-gated cine phase-contrast balanced SSFP flow quantification at 0.55 T.
Schäper, Jessica, Magnetic Resonance in Medicine, 91, 162–173. https://doi.org/10.1002/mrm.29838
, & Bieri, Oliver. (2024). Improved gray-white matter contrast using magnetization prepared fast imaging with steady-state free precession (MP-FISP) brain imaging at 0.55 T.
Schäper, Jessica, Magnetic Resonance in Medicine, 91, 162–173. https://doi.org/10.1002/mrm.29838
, & Bieri, Oliver. (2024). Improved gray-white matter contrast using magnetization prepared fast imaging with steady-state free precession (MP-FISP) brain imaging at 0.55 T.
Schäper, Jessica, Magnetic Resonance in Medicine, 91(1), 162–173. https://doi.org/10.1002/mrm.29838
, & Bieri, Oliver. (2024). Improved gray‐white matter contrast using magnetization prepared fast imaging with steady‐state free precession (MP‐FISP) brain imaging at 0.55 T [Journal-article].
Schäper, Jessica, Magnetic Resonance in Medicine, 91(1), 162–173. https://doi.org/10.1002/mrm.29838
, & Bieri, Oliver. (2024). Improved gray‐white matter contrast using magnetization prepared fast imaging with steady‐state free precession (MP‐FISP) brain imaging at 0.55 T [Journal-article].
Triphan SMF, Journal of Magnetic Resonance Imaging : JMRI. https://doi.org/10.1002/jmri.28912
, Konietzke P, Konietzke M, Wielpütz MO, & International Workshop for Pulmonary Functional Imaging (IWPFI). (2023). Magnetic Resonance Imaging of Lung Perfusion.
Triphan SMF, Journal of Magnetic Resonance Imaging : JMRI. https://doi.org/10.1002/jmri.28912
, Konietzke P, Konietzke M, Wielpütz MO, & International Workshop for Pulmonary Functional Imaging (IWPFI). (2023). Magnetic Resonance Imaging of Lung Perfusion.
Streibel C, Willers CC, Pusterla O., Journal of Cystic Fibrosis, 22(4), 615–622. https://doi.org/10.1016/j.jcf.2022.12.012
, Stranzinger E, Brabandt B., Bieri O., Curdy M, Bullo M., Frauchiger BS, Korten I, Kruger L., Casaulta C, Ratjen F., Latzin P., & Kieninger E. (2023). Effects of elexacaftor/tezacaftor/ivacaftor therapy in children with cystic fibrosis – a comprehensive assessment using lung clearance index, spirometry, and functional and structural lung MRI.
Streibel C, Willers CC, Pusterla O., Journal of Cystic Fibrosis, 22(4), 615–622. https://doi.org/10.1016/j.jcf.2022.12.012
, Stranzinger E, Brabandt B., Bieri O., Curdy M, Bullo M., Frauchiger BS, Korten I, Kruger L., Casaulta C, Ratjen F., Latzin P., & Kieninger E. (2023). Effects of elexacaftor/tezacaftor/ivacaftor therapy in children with cystic fibrosis – a comprehensive assessment using lung clearance index, spirometry, and functional and structural lung MRI.
Bieri O., Pusterla O., & Zeitschrift Fur Medizinische Physik, 33(2), 220–229. https://doi.org/10.1016/j.zemedi.2022.01.003
. (2023). Free-breathing half-radial dual-echo balanced steady-state free precession thoracic imaging with wobbling Archimedean spiral pole trajectories.
Bieri O., Pusterla O., & Zeitschrift Fur Medizinische Physik, 33(2), 220–229. https://doi.org/10.1016/j.zemedi.2022.01.003
. (2023). Free-breathing half-radial dual-echo balanced steady-state free precession thoracic imaging with wobbling Archimedean spiral pole trajectories.
Magnetic Resonance in Medicine, 90, 1949–1957. https://doi.org/10.1002/mrm.29757
, Lee, Nam G., Tian, Ye, Bieri, Oliver, & Nayak, Krishna S. (2023). Submillimeter lung MRI at 0.55 T using balanced steady-state free precession with half-radial dual-echo readout (bSTAR).
Magnetic Resonance in Medicine, 90, 1949–1957. https://doi.org/10.1002/mrm.29757
, Lee, Nam G., Tian, Ye, Bieri, Oliver, & Nayak, Krishna S. (2023). Submillimeter lung MRI at 0.55 T using balanced steady-state free precession with half-radial dual-echo readout (bSTAR).
Kentgens, Anne-Christianne, Pusterla, Orso, Respiratory Medicine and Research, 83. https://doi.org/10.1016/j.resmer.2023.100993
, Santini, Francesco, Wyler, Florian, Curdy, Marion S., Willers, C.Corin, Bieri, Oliver, Latzin, Philipp, & Ramsey, Kathryn A. (2023). Simultaneous multiple breath washout and oxygen-enhanced magnetic resonance imaging in healthy adults.
Kentgens, Anne-Christianne, Pusterla, Orso, Respiratory Medicine and Research, 83. https://doi.org/10.1016/j.resmer.2023.100993
, Santini, Francesco, Wyler, Florian, Curdy, Marion S., Willers, C.Corin, Bieri, Oliver, Latzin, Philipp, & Ramsey, Kathryn A. (2023). Simultaneous multiple breath washout and oxygen-enhanced magnetic resonance imaging in healthy adults.
Streibel, C., Willers, C. C., Bauman, G., Pusterla, O., Bieri, O., Curdy, M., Horn, M., Casaulta, C., Berger, S., Dekany, G. M., Kieninger, E., Bartenstein, A., & Latzin, P. (2023). Long-term pulmonary outcome of children with congenital diaphragmatic hernia: functional lung MRI using matrix-pencil decomposition enables side-specific assessment of lung function [Journal-article]. European Radiology, null. https://doi.org/10.1007/s00330-023-10395-8
Streibel, C., Willers, C. C., Bauman, G., Pusterla, O., Bieri, O., Curdy, M., Horn, M., Casaulta, C., Berger, S., Dekany, G. M., Kieninger, E., Bartenstein, A., & Latzin, P. (2023). Long-term pulmonary outcome of children with congenital diaphragmatic hernia: functional lung MRI using matrix-pencil decomposition enables side-specific assessment of lung function [Journal-article]. European Radiology, null. https://doi.org/10.1007/s00330-023-10395-8
Willers CC, Frauchiger BS, Stranzinger E, Feasibility of unsedated lung MRI in young children with cystic fibrosis. (Patent No. 5). 60(5), Article 5. https://doi.org/10.1183/13993003.03112-2021
, Moeller A, Jung A, Hector A, Regamey N, Zanolari M, Mueller-Suter D, Kuhn AL, Blanchon S, Rochat I, Latzin P, Ramsey KA, & the SCILD Study group. (2022).
Willers CC, Frauchiger BS, Stranzinger E, Feasibility of unsedated lung MRI in young children with cystic fibrosis. (Patent No. 5). 60(5), Article 5. https://doi.org/10.1183/13993003.03112-2021
, Moeller A, Jung A, Hector A, Regamey N, Zanolari M, Mueller-Suter D, Kuhn AL, Blanchon S, Rochat I, Latzin P, Ramsey KA, & the SCILD Study group. (2022).
Nyilas S., Radiology, 304(1), 195–204. https://doi.org/10.1148/radiol.211327
, Korten I, Pusterla O., Singer F, Ith M, Groen C, Schoeni A, Heverhagen JT, Christe A., Rodondi N, Bieri O., Geiser T, Auer R, Funke-Chambour M., & Ebner L. (2022). MRI Shows Lung Perfusion Changes after Vaping and Smoking.
Nyilas S., Radiology, 304(1), 195–204. https://doi.org/10.1148/radiol.211327
, Korten I, Pusterla O., Singer F, Ith M, Groen C, Schoeni A, Heverhagen JT, Christe A., Rodondi N, Bieri O., Geiser T, Auer R, Funke-Chambour M., & Ebner L. (2022). MRI Shows Lung Perfusion Changes after Vaping and Smoking.
Pusterla O., Heule R., Santini F, Weikert T, Willers C., Andermatt S., Sandkuhler R., Nyilas S., Latzin P., Bieri O., & Magnetic Resonance in Medicine, 88(1), 391–405. https://doi.org/10.1002/mrm.29184
. (2022). MRI lung lobe segmentation in pediatric cystic fibrosis patients using a recurrent neural network trained with publicly accessible CT datasets.
Pusterla O., Heule R., Santini F, Weikert T, Willers C., Andermatt S., Sandkuhler R., Nyilas S., Latzin P., Bieri O., & Magnetic Resonance in Medicine, 88(1), 391–405. https://doi.org/10.1002/mrm.29184
. (2022). MRI lung lobe segmentation in pediatric cystic fibrosis patients using a recurrent neural network trained with publicly accessible CT datasets.
Willers C, Maager L, Pediatric Radiology, 52(7), 1255–1265. https://doi.org/10.1007/s00247-022-05317-7
, Cholewa D, Stranzinger E, Raio L, Casaulta C, & Latzin P. (2022). School-age structural and functional MRI and lung function in children following lung resection for congenital lung malformation in infancy.
Willers C, Maager L, Pediatric Radiology, 52(7), 1255–1265. https://doi.org/10.1007/s00247-022-05317-7
, Cholewa D, Stranzinger E, Raio L, Casaulta C, & Latzin P. (2022). School-age structural and functional MRI and lung function in children following lung resection for congenital lung malformation in infancy.
Breit HC, & Radiology, 303(2), 255. https://doi.org/10.1148/radiol.211760
. (2022). Morphologic and Functional Assessment of Sarcoidosis Using Low-Field MRI.
Breit HC, & Radiology, 303(2), 255. https://doi.org/10.1148/radiol.211760
. (2022). Morphologic and Functional Assessment of Sarcoidosis Using Low-Field MRI.
Duetschler A, Medical Physics, 49(5), 2890–2903. https://doi.org/10.1002/mp.15591
, Bieri O., Cattin PC, Ehrbar S, Engin-Deniz G, Giger A., Josipovic M, Jud C., Krieger M, Nguyen D., Persson GF, Salomir R., Weber DC, Lomax AJ, & Zhang Y. (2022). Synthetic 4DCT(MRI) lung phantom generation for 4D radiotherapy and image guidance investigations.
Duetschler A, Medical Physics, 49(5), 2890–2903. https://doi.org/10.1002/mp.15591
, Bieri O., Cattin PC, Ehrbar S, Engin-Deniz G, Giger A., Josipovic M, Jud C., Krieger M, Nguyen D., Persson GF, Salomir R., Weber DC, Lomax AJ, & Zhang Y. (2022). Synthetic 4DCT(MRI) lung phantom generation for 4D radiotherapy and image guidance investigations.
Kieninger E, Willers C, Röthlisberger K, Yammine S, Pusterla O, Respiration, 101(3), 281–290. https://doi.org/10.1159/000519751
, Stranzinger E, Bieri O, Latzin P, & Casaulta C. (2022). Effect of salbutamol on lung ventilation in children with cystic fibrosis: Comprehensive assessment using spirometry, multiple-breath washout, and functional lung magnetic resonance imaging.
Kieninger E, Willers C, Röthlisberger K, Yammine S, Pusterla O, Respiration, 101(3), 281–290. https://doi.org/10.1159/000519751
, Stranzinger E, Bieri O, Latzin P, & Casaulta C. (2022). Effect of salbutamol on lung ventilation in children with cystic fibrosis: Comprehensive assessment using spirometry, multiple-breath washout, and functional lung magnetic resonance imaging.
Schäper, Jessica, Magnetic Resonance in Medicine, 87, 1886–1893. https://doi.org/10.1002/mrm.29086
, Ganter, Carl, & Bieri, Oliver. (2022). Pure balanced steady-state free precession imaging (pure bSSFP).
Schäper, Jessica, Magnetic Resonance in Medicine, 87, 1886–1893. https://doi.org/10.1002/mrm.29086
, Ganter, Carl, & Bieri, Oliver. (2022). Pure balanced steady-state free precession imaging (pure bSSFP).
Valk A., Willers C, Shahim K., Pusterla O, Magnetic Resonance in Medicine, 86(6), 3224–3235. https://doi.org/10.1002/mrm.28947
, Sandkühler R, Bieri O., Wyler F., & Latzin P. (2021). Defect distribution index: A novel metric for functional lung MRI in cystic fibrosis.
Valk A., Willers C, Shahim K., Pusterla O, Magnetic Resonance in Medicine, 86(6), 3224–3235. https://doi.org/10.1002/mrm.28947
, Sandkühler R, Bieri O., Wyler F., & Latzin P. (2021). Defect distribution index: A novel metric for functional lung MRI in cystic fibrosis.
Krieger M., Giger A, Jud C, Duetschler A., Salomir R, Bieri O., Physics in Medicine and Biology, 66(3). https://doi.org/10.1088/1361-6560/abcde6
, Nguyen D, Cattin P.C., Weber D.C., Lomax A.J., & Zhang Y. (2021). Liver-ultrasound-guided lung tumour tracking for scanned proton therapy: a feasibility study.
Krieger M., Giger A, Jud C, Duetschler A., Salomir R, Bieri O., Physics in Medicine and Biology, 66(3). https://doi.org/10.1088/1361-6560/abcde6
, Nguyen D, Cattin P.C., Weber D.C., Lomax A.J., & Zhang Y. (2021). Liver-ultrasound-guided lung tumour tracking for scanned proton therapy: a feasibility study.
Willers C, Magnetic Resonance in Medicine, 85(2), 1079–1092. https://doi.org/10.1002/mrm.28476
, Andermatt S, Santini F, Sandkühler R, Ramsey KA, Cattin PC, Bieri O, Pusterla O, & Latzin P. (2021). The impact of segmentation on whole-lung functional MRI quantification: Repeatability and reproducibility from multiple human observers and an artificial neural network.
Willers C, Magnetic Resonance in Medicine, 85(2), 1079–1092. https://doi.org/10.1002/mrm.28476
, Andermatt S, Santini F, Sandkühler R, Ramsey KA, Cattin PC, Bieri O, Pusterla O, & Latzin P. (2021). The impact of segmentation on whole-lung functional MRI quantification: Repeatability and reproducibility from multiple human observers and an artificial neural network.
Giger A, Krieger M, Jud C, Duetschler A, Salomir R, Bieri O, Physics in Medicine and Biology, 65(23), 235050. https://doi.org/10.1088/1361-6560/abaa26
, Nguyen D, Weber DC, Lomax AJ, Zhang Y, & Cattin PC. (2020). Liver-ultrasound based motion modelling to estimate 4D dose distributions for lung tumours in scanned proton therapy.
Giger A, Krieger M, Jud C, Duetschler A, Salomir R, Bieri O, Physics in Medicine and Biology, 65(23), 235050. https://doi.org/10.1088/1361-6560/abaa26
, Nguyen D, Weber DC, Lomax AJ, Zhang Y, & Cattin PC. (2020). Liver-ultrasound based motion modelling to estimate 4D dose distributions for lung tumours in scanned proton therapy.
Nyilas S, Der Radiologe, 60(9), 823–830. https://doi.org/10.1007/s00117-020-00730-1
, & Sommer G. (2020). [Assessment of lung impairment in patients with cystic fibrosis : Novel magnetic resonance imaging methods].
Nyilas S, Der Radiologe, 60(9), 823–830. https://doi.org/10.1007/s00117-020-00730-1
, & Sommer G. (2020). [Assessment of lung impairment in patients with cystic fibrosis : Novel magnetic resonance imaging methods].
Magnetic Resonance in Medicine, 84(1), 237–246. https://doi.org/10.1002/mrm.28119
, & Bieri O. (2020). Balanced steady-state free precession thoracic imaging with half-radial dual-echo readout on smoothly interleaved archimedean spirals.
Magnetic Resonance in Medicine, 84(1), 237–246. https://doi.org/10.1002/mrm.28119
, & Bieri O. (2020). Balanced steady-state free precession thoracic imaging with half-radial dual-echo readout on smoothly interleaved archimedean spirals.
Bondesson D, Schneider MJ, Gaass T, Kühn B, Magnetic Resonance in Medicine, 82(4), 1312–1321. https://doi.org/10.1002/mrm.27803
, Dietrich O, & Dinkel J. (2019). Nonuniform Fourier-decomposition MRI for ventilation- and perfusion-weighted imaging of the lung.
Bondesson D, Schneider MJ, Gaass T, Kühn B, Magnetic Resonance in Medicine, 82(4), 1312–1321. https://doi.org/10.1002/mrm.27803
, Dietrich O, & Dinkel J. (2019). Nonuniform Fourier-decomposition MRI for ventilation- and perfusion-weighted imaging of the lung.
Nyilas S, Journal of Cystic Fibrosis, 18(4), 543–550. https://doi.org/10.1016/j.jcf.2018.10.003
, Pusterla O, Ramsey K, Singer F, Stranzinger E, Yammine S, Casaulta C, Bieri O, & Latzin P. (2019). Ventilation and perfusion assessed by functional MRI in children with CF: reproducibility in comparison to lung function.
Nyilas S, Journal of Cystic Fibrosis, 18(4), 543–550. https://doi.org/10.1016/j.jcf.2018.10.003
, Pusterla O, Ramsey K, Singer F, Stranzinger E, Yammine S, Casaulta C, Bieri O, & Latzin P. (2019). Ventilation and perfusion assessed by functional MRI in children with CF: reproducibility in comparison to lung function.
Magnetic Resonance in Medicine, 81(3), 1915–1923. https://doi.org/10.1002/mrm.27535
, Pusterla O, & Bieri O. (2019). Functional lung imaging with transient spoiled gradient echo.
Magnetic Resonance in Medicine, 81(3), 1915–1923. https://doi.org/10.1002/mrm.27535
, Pusterla O, & Bieri O. (2019). Functional lung imaging with transient spoiled gradient echo.
Sandkuhler R., Gated Recurrent Neural Networks for Accelerated Ventilation MRI. 11861 LNCS, 549–556. https://doi.org/10.1007/978-3-030-32692-0_63
, Nyilas S., Pusterla O., Willers C., Bieri O., Latzin P., Jud C., Jud C., & Cattin P.C. (2019).
Sandkuhler R., Gated Recurrent Neural Networks for Accelerated Ventilation MRI. 11861 LNCS, 549–556. https://doi.org/10.1007/978-3-030-32692-0_63
, Nyilas S., Pusterla O., Willers C., Bieri O., Latzin P., Jud C., Jud C., & Cattin P.C. (2019).
Sandkuhler R., Jud C., Weakly Supervised Learning Strategy for Lung Defect Segmentation. 11861 LNCS, 541–548. https://doi.org/10.1007/978-3-030-32692-0_62
, Willers C., Pusterla O., Nyilas S., Peters A., Ebner L., Stranziger E., Bieri O., Latzin P., & Cattin P.C. (2019).
Sandkuhler R., Jud C., Weakly Supervised Learning Strategy for Lung Defect Segmentation. 11861 LNCS, 541–548. https://doi.org/10.1007/978-3-030-32692-0_62
, Willers C., Pusterla O., Nyilas S., Peters A., Ebner L., Stranziger E., Bieri O., Latzin P., & Cattin P.C. (2019).
Sandkühler, Robin, Andermatt, Simon, Recurrent registration neural networks for deformable image registration. 32.
, Nyilas, Sylvia, Jud, Christoph, & Cattin, Philippe C. (2019).
Sandkühler, Robin, Andermatt, Simon, Recurrent registration neural networks for deformable image registration. 32.
, Nyilas, Sylvia, Jud, Christoph, & Cattin, Philippe C. (2019).
Nyilas S, Annals of the American Thoracic Society, 15(12), 1434–1442. https://doi.org/10.1513/annalsats.201712-967oc
, Pusterla O, Sommer G, Singer F, Stranzinger E, Heyer C, Ramsey K, Schlegtendal A, Benzrath S, Casaulta C, Goutaki M, Kuehni CE, Bieri O, Koerner-Rettberg C, & Latzin P. (2018). Structural and Functional Lung Impairment in Primary Ciliary Dyskinesia. Assessment with Magnetic Resonance Imaging and Multiple Breath Washout in Comparison to Spirometry.
Nyilas S, Annals of the American Thoracic Society, 15(12), 1434–1442. https://doi.org/10.1513/annalsats.201712-967oc
, Pusterla O, Sommer G, Singer F, Stranzinger E, Heyer C, Ramsey K, Schlegtendal A, Benzrath S, Casaulta C, Goutaki M, Kuehni CE, Bieri O, Koerner-Rettberg C, & Latzin P. (2018). Structural and Functional Lung Impairment in Primary Ciliary Dyskinesia. Assessment with Magnetic Resonance Imaging and Multiple Breath Washout in Comparison to Spirometry.
Magnetic resonance in medicine, 79(2), 839–845. https://doi.org/10.1002/mrm.26739
, Pusterla O, Santini F, & Bieri O. (2018). Dynamic and steady-state oxygen-dependent lung relaxometry using inversion recovery ultra-fast steady-state free precession imaging at 1.5 T.
Magnetic resonance in medicine, 79(2), 839–845. https://doi.org/10.1002/mrm.26739
, Pusterla O, Santini F, & Bieri O. (2018). Dynamic and steady-state oxygen-dependent lung relaxometry using inversion recovery ultra-fast steady-state free precession imaging at 1.5 T.
Giger, Alina, Sandkühler, Robin, Jud, Christoph, Lecture Notes in Computer Science. Springer. https://doi.org/10.1007/978-3-030-00937-3_10
, Bieri, Oliver, Salomir, Rares, & Cattin, Philippe C. (2018). Respiratory Motion Modelling Using cGANs. In Frangi, Alejandro F.; Schnabel, Julia A.; Davatzikos, Christos; Alberola-López, Carlos; Fichtinger, Gabor (ed.),
Giger, Alina, Sandkühler, Robin, Jud, Christoph, Lecture Notes in Computer Science. Springer. https://doi.org/10.1007/978-3-030-00937-3_10
, Bieri, Oliver, Salomir, Rares, & Cattin, Philippe C. (2018). Respiratory Motion Modelling Using cGANs. In Frangi, Alejandro F.; Schnabel, Julia A.; Davatzikos, Christos; Alberola-López, Carlos; Fichtinger, Gabor (ed.),
Pusterla O, Magnetic resonance in medicine, 79(1), 246–255. https://doi.org/10.1002/mrm.26665
, & Bieri O. (2018). Three-dimensional oxygen-enhanced MRI of the human lung at 1.5T with ultra-fast balanced steady-state free precession.
Pusterla O, Magnetic resonance in medicine, 79(1), 246–255. https://doi.org/10.1002/mrm.26665
, & Bieri O. (2018). Three-dimensional oxygen-enhanced MRI of the human lung at 1.5T with ultra-fast balanced steady-state free precession.
Pusterla, Orso, Sommer, Gregor, Santini, Francesco, Wiese, Mark, Lardinois, Didier, Tamm, Michael, Bremerich, Jens, Journal of Magnetic Resonance Imaging (JMRI), 48(1), 48–57. https://doi.org/10.1002/jmri.25928
, & Bieri, Oliver. (2018). Signal enhancement ratio imaging of the lung parenchyma with ultra-fast steady-state free precession MRI at 1.5T.
Pusterla, Orso, Sommer, Gregor, Santini, Francesco, Wiese, Mark, Lardinois, Didier, Tamm, Michael, Bremerich, Jens, Journal of Magnetic Resonance Imaging (JMRI), 48(1), 48–57. https://doi.org/10.1002/jmri.25928
, & Bieri, Oliver. (2018). Signal enhancement ratio imaging of the lung parenchyma with ultra-fast steady-state free precession MRI at 1.5T.
Risse, F., & Bauman, G. (2018). MR perfusion in the lung (Vol. 0, pp. 53–67). Springer Verlagservice@springer.de. https://doi.org/10.1007/174_2016_82
Risse, F., & Bauman, G. (2018). MR perfusion in the lung (Vol. 0, pp. 53–67). Springer Verlagservice@springer.de. https://doi.org/10.1007/174_2016_82
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