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Nahum, Uri, Gorlanova, Olga, Decrue, Fabienne, Oller, Heide, Delgado-Eckert, Edgar, Böck, Andreas, Schulzke, Sven, Latzin, Philipp, Schaub, Bianca, Karvonen, Anne M, Lauener, Roger, Divaret-Chauveau, Amandine, Illi, Sabina, Roduit, Caroline, von Mutius, Erika, & The Lancet Digital Health, 6(10), e718–e728. https://doi.org/10.1016/s2589-7500(24)00147-x
. (2024). Symptom trajectories in infancy for the prediction of subsequent wheeze and asthma in the BILD and PASTURE cohorts: a dynamic network analysis [Journal-article].
Nahum, Uri, Gorlanova, Olga, Decrue, Fabienne, Oller, Heide, Delgado-Eckert, Edgar, Böck, Andreas, Schulzke, Sven, Latzin, Philipp, Schaub, Bianca, Karvonen, Anne M, Lauener, Roger, Divaret-Chauveau, Amandine, Illi, Sabina, Roduit, Caroline, von Mutius, Erika, & The Lancet Digital Health, 6(10), e718–e728. https://doi.org/10.1016/s2589-7500(24)00147-x
. (2024). Symptom trajectories in infancy for the prediction of subsequent wheeze and asthma in the BILD and PASTURE cohorts: a dynamic network analysis [Journal-article].
Gorlanova, O., Rüttimann, C., Soti, A., de Hoogh, K., Vienneau, D., Künstle, N., Da Silva Sena, C. R., Steinberg, R., Bovermann, X., Schulzke, S., Latzin, P., Röösli, M., Frey, U., & Müller, L. (2024). TOLLIP and MUC5B modulate the effect of ambient NO2 on respiratory symptoms in infancy. Chemosphere, 363. https://doi.org/10.1016/j.chemosphere.2024.142837
Gorlanova, O., Rüttimann, C., Soti, A., de Hoogh, K., Vienneau, D., Künstle, N., Da Silva Sena, C. R., Steinberg, R., Bovermann, X., Schulzke, S., Latzin, P., Röösli, M., Frey, U., & Müller, L. (2024). TOLLIP and MUC5B modulate the effect of ambient NO2 on respiratory symptoms in infancy. Chemosphere, 363. https://doi.org/10.1016/j.chemosphere.2024.142837
Künstle, Noëmi, Gorlanova, Olga, Marten, Andrea, Müller, Loretta, Sharma, Pawan, Röösli, Martin, Sinues, Pablo, Schär, Primo, Schürmann, David, Rüttimann, Céline, Da Silva Sena, Carla Rebeca, Nahum, Uri, Usemann, Jakob, Steinberg, Ruth, Yammine, Sophie, Schulzke, Sven, Latzin, Philipp, Pediatric Research. https://doi.org/10.1038/s41390-024-03273-6
, & , on behalf of the BILD study group. (2024). Differences in autophagy marker levels at birth in preterm vs. term infants [Journal-article].
Künstle, Noëmi, Gorlanova, Olga, Marten, Andrea, Müller, Loretta, Sharma, Pawan, Röösli, Martin, Sinues, Pablo, Schär, Primo, Schürmann, David, Rüttimann, Céline, Da Silva Sena, Carla Rebeca, Nahum, Uri, Usemann, Jakob, Steinberg, Ruth, Yammine, Sophie, Schulzke, Sven, Latzin, Philipp, Pediatric Research. https://doi.org/10.1038/s41390-024-03273-6
, & , on behalf of the BILD study group. (2024). Differences in autophagy marker levels at birth in preterm vs. term infants [Journal-article].
Salem, Y., Jakob, J., Steinberg, R., Gorlanova, O., Fuchs, O., Müller, L., Usemann, J., Frey, U., Latzin, P., & Yammine, S. (2024). Cohort Profile Update: The Bern Basel Infant Lung Development Cohort. International Journal of Epidemiology, 53(1). https://doi.org/10.1093/ije/dyad164
Salem, Y., Jakob, J., Steinberg, R., Gorlanova, O., Fuchs, O., Müller, L., Usemann, J., Frey, U., Latzin, P., & Yammine, S. (2024). Cohort Profile Update: The Bern Basel Infant Lung Development Cohort. International Journal of Epidemiology, 53(1). https://doi.org/10.1093/ije/dyad164
Awchi, Mo, Singh, Kapil Dev, Brenner, Sara Bachmann, Burckhardt, Marie-Anne, Hess, Melanie, Zeng, Jiafa, Datta, Alexandre N., Frontiers in Endocrinology, 15. https://doi.org/10.3389/fendo.2024.1360989
, Zumsteg, Urs, Szinnai, Gabor, & Sinues, Pablo. (2024). Metabolic trajectories of diabetic ketoacidosis onset described by breath analysis.
Awchi, Mo, Singh, Kapil Dev, Brenner, Sara Bachmann, Burckhardt, Marie-Anne, Hess, Melanie, Zeng, Jiafa, Datta, Alexandre N., Frontiers in Endocrinology, 15. https://doi.org/10.3389/fendo.2024.1360989
, Zumsteg, Urs, Szinnai, Gabor, & Sinues, Pablo. (2024). Metabolic trajectories of diabetic ketoacidosis onset described by breath analysis.
Sola-Martínez, R. A., Zeng, J., Awchi, M., Gisler, A., Arnold, K., Singh, K. D., Frey, U., Díaz, M. C., de Diego Puente, T., & Sinues, P. (2024). Preservation of exhaled breath samples for analysis by off-line SESI-HRMS: proof-of-concept study [Journal-article]. Journal of Breath Research, 18(1). https://doi.org/10.1088/1752-7163/ad10e1
Sola-Martínez, R. A., Zeng, J., Awchi, M., Gisler, A., Arnold, K., Singh, K. D., Frey, U., Díaz, M. C., de Diego Puente, T., & Sinues, P. (2024). Preservation of exhaled breath samples for analysis by off-line SESI-HRMS: proof-of-concept study [Journal-article]. Journal of Breath Research, 18(1). https://doi.org/10.1088/1752-7163/ad10e1
Wyler, F., Manogaran, T., Monney, N., Salem, Y., Steinberg, R., Kentgens, A.-C., Jacobs, C., Chaya, S., Sena, C. R. d. S., Künstle, N., Gorlanova, O., Yammine, S., Gray, D. M., Frey, U., Oestreich, M.-A., & Latzin, P. (2024). Optimized algorithm for speed-of-sound-based infant sulfur hexafluoride multiple-breath washout measurements. Pediatric Pulmonology. https://doi.org/10.1002/ppul.27180
Wyler, F., Manogaran, T., Monney, N., Salem, Y., Steinberg, R., Kentgens, A.-C., Jacobs, C., Chaya, S., Sena, C. R. d. S., Künstle, N., Gorlanova, O., Yammine, S., Gray, D. M., Frey, U., Oestreich, M.-A., & Latzin, P. (2024). Optimized algorithm for speed-of-sound-based infant sulfur hexafluoride multiple-breath washout measurements. Pediatric Pulmonology. https://doi.org/10.1002/ppul.27180
Abdel-Aziz, M. I., Thorsen, J., Hashimoto, S., Vijverberg, S. J. H., Neerincx, A. H., Brinkman, P., Van Aalderen, W., Stokholm, J., Rasmussen, M. A., Roggenbuck-Wedemeye, M., Vissing, N. H., Mortensen, M. S., Brejnrod, A. D., Fleming, L. J., Murray, C. S., Fowler, S. J., Frey, U., Bush, A., Singer, F., et al. (2023). Oropharyngeal Microbiota Clusters in Children with Asthma or Wheeze Associate with Allergy, Blood Transcriptomic Immune Pathways, and Exacerbation Risk. American Journal of Respiratory and Critical Care Medicine, 208(2), 142–154. https://doi.org/10.1164/rccm.202211-2107oc
Abdel-Aziz, M. I., Thorsen, J., Hashimoto, S., Vijverberg, S. J. H., Neerincx, A. H., Brinkman, P., Van Aalderen, W., Stokholm, J., Rasmussen, M. A., Roggenbuck-Wedemeye, M., Vissing, N. H., Mortensen, M. S., Brejnrod, A. D., Fleming, L. J., Murray, C. S., Fowler, S. J., Frey, U., Bush, A., Singer, F., et al. (2023). Oropharyngeal Microbiota Clusters in Children with Asthma or Wheeze Associate with Allergy, Blood Transcriptomic Immune Pathways, and Exacerbation Risk. American Journal of Respiratory and Critical Care Medicine, 208(2), 142–154. https://doi.org/10.1164/rccm.202211-2107oc
Khaleva E, Rattu A, Brightling C, Bush A, Bossios A, Bourdin A, Chung KF, Chaudhuri R, Coleman C, Dahlén SE, Djukanovic R, Deschildre A, Fleming L, Fowler SJ, Gupta A, Hamelmann E, Hashimoto S, Hedlin G, Koppelman GH, et al. (2023). Development of Core Outcome Measures sets for paediatric and adult Severe Asthma (COMSA). The European Respiratory Journal, 61(4). https://doi.org/10.1183/13993003.00606-2022
Khaleva E, Rattu A, Brightling C, Bush A, Bossios A, Bourdin A, Chung KF, Chaudhuri R, Coleman C, Dahlén SE, Djukanovic R, Deschildre A, Fleming L, Fowler SJ, Gupta A, Hamelmann E, Hashimoto S, Hedlin G, Koppelman GH, et al. (2023). Development of Core Outcome Measures sets for paediatric and adult Severe Asthma (COMSA). The European Respiratory Journal, 61(4). https://doi.org/10.1183/13993003.00606-2022
Awchi, M., Singh, K. D., Dill, P. E., Frey, U., Datta, A. N., & Sinues, P. (2023). Prediction of systemic free and total valproic acid by off-line analysis of exhaled breath in epileptic children and adolescents. Journal of Breath Research, 17. https://doi.org/10.1088/1752-7163/acf782
Awchi, M., Singh, K. D., Dill, P. E., Frey, U., Datta, A. N., & Sinues, P. (2023). Prediction of systemic free and total valproic acid by off-line analysis of exhaled breath in epileptic children and adolescents. Journal of Breath Research, 17. https://doi.org/10.1088/1752-7163/acf782
Rüttimann, C., Nissen-Kratzert, A., Mostacci, N., Künstle, N., Marten, A., Gisler, A., Bacher, K., Yammine, S., Steinberg, R., Schulzke, S., Röösli, M., Latzin, P., Hilty, M., Frey, U., & Gorlanova, O. (2023). Antibiotics in pregnancy influence nasal microbiome and respiratory morbidity in infancy. ERJ Open Research, 9. https://doi.org/10.1183/23120541.00225-2023
Rüttimann, C., Nissen-Kratzert, A., Mostacci, N., Künstle, N., Marten, A., Gisler, A., Bacher, K., Yammine, S., Steinberg, R., Schulzke, S., Röösli, M., Latzin, P., Hilty, M., Frey, U., & Gorlanova, O. (2023). Antibiotics in pregnancy influence nasal microbiome and respiratory morbidity in infancy. ERJ Open Research, 9. https://doi.org/10.1183/23120541.00225-2023
Gisler A., Singh K.D., Zeng J., Osswald M., Awchi M., Decrue F., Schmidt F., Sievi N.A., Chen X., Usemann J., iScience, 25(12). https://doi.org/10.1016/j.isci.2022.105557
, Kohler M., Li X., & Sinues P. (2022). An interoperability framework for multicentric breath metabolomic studies.
Gisler A., Singh K.D., Zeng J., Osswald M., Awchi M., Decrue F., Schmidt F., Sievi N.A., Chen X., Usemann J., iScience, 25(12). https://doi.org/10.1016/j.isci.2022.105557
, Kohler M., Li X., & Sinues P. (2022). An interoperability framework for multicentric breath metabolomic studies.
Gisler, Amanda, Singh, Kapil Dev, Zeng, Jiafa, Osswald, Martin, Awchi, Mo, Decrue, Fabienne, Schmidt, Felix, Sievi, Noriane A., Chen, Xing, Usemann, Jakob, iScience, 25(12), 105557. https://doi.org/10.1016/j.isci.2022.105557
, Kohler, Malcolm, Li, Xue, & Sinues, Pablo. (2022). An interoperability framework for multicentric breath metabolomic studies [Journal-article].
Gisler, Amanda, Singh, Kapil Dev, Zeng, Jiafa, Osswald, Martin, Awchi, Mo, Decrue, Fabienne, Schmidt, Felix, Sievi, Noriane A., Chen, Xing, Usemann, Jakob, iScience, 25(12), 105557. https://doi.org/10.1016/j.isci.2022.105557
, Kohler, Malcolm, Li, Xue, & Sinues, Pablo. (2022). An interoperability framework for multicentric breath metabolomic studies [Journal-article].
Thorsen J, Stokholm J, Rasmussen MA, Roggenbuck-Wedemeyer M, Vissing NH, Mortensen MS, Brejnrod AD, Fleming L, Bush A, Roberts G, Singer F, Annals of the American Thoracic Society, 19(12), 2031–2043. https://doi.org/10.1513/annalsats.202110-1152oc
, Hedlin G, Nordlund B, Murray CS, Abdel-Aziz MI, Hashimoto S, van Aalderen W, Maitland-van der Zee AH, et al. (2022). Asthma and Wheeze Severity and the Oropharyngeal Microbiota in Children and Adolescents.
Thorsen J, Stokholm J, Rasmussen MA, Roggenbuck-Wedemeyer M, Vissing NH, Mortensen MS, Brejnrod AD, Fleming L, Bush A, Roberts G, Singer F, Annals of the American Thoracic Society, 19(12), 2031–2043. https://doi.org/10.1513/annalsats.202110-1152oc
, Hedlin G, Nordlund B, Murray CS, Abdel-Aziz MI, Hashimoto S, van Aalderen W, Maitland-van der Zee AH, et al. (2022). Asthma and Wheeze Severity and the Oropharyngeal Microbiota in Children and Adolescents.
van Meel ER, Mensink-Bout SM, den Dekker HT, Ahluwalia TS, Annesi-Maesano I, Arshad SH, Baïz N, Barros H, von Berg A, Bisgaard H, Bønnelykke K, Carlsson CJ, Casas M, Chatzi L, Chevrier C, Dalmeijer G, Dezateux C, Duchen K, Eggesbø M, et al. (2022). Early-life respiratory tract infections and the risk of school-age lower lung function and asthma: a meta-analysis of 150 000 European children. The European Respiratory Journal, 60(4). https://doi.org/10.1183/13993003.02395-2021
van Meel ER, Mensink-Bout SM, den Dekker HT, Ahluwalia TS, Annesi-Maesano I, Arshad SH, Baïz N, Barros H, von Berg A, Bisgaard H, Bønnelykke K, Carlsson CJ, Casas M, Chatzi L, Chevrier C, Dalmeijer G, Dezateux C, Duchen K, Eggesbø M, et al. (2022). Early-life respiratory tract infections and the risk of school-age lower lung function and asthma: a meta-analysis of 150 000 European children. The European Respiratory Journal, 60(4). https://doi.org/10.1183/13993003.02395-2021
Stolz D, Mkorombindo T., Schumann DM, Agusti A., Ash SY, Bafadhel M, Bai C, Chalmers JD, Criner GJ, Dharmage S.C., Franssen F.M.E., The Lancet, 400(10356), 921–972. https://doi.org/10.1016/s0140-6736(22)01273-9
, Han M, Hansel NN, Hawkins NM, Kalhan R, Konigshoff M, Ko F.W., Parekh TM, et al. (2022). Towards the elimination of chronic obstructive pulmonary disease: a Lancet Commission.
Stolz D, Mkorombindo T., Schumann DM, Agusti A., Ash SY, Bafadhel M, Bai C, Chalmers JD, Criner GJ, Dharmage S.C., Franssen F.M.E., The Lancet, 400(10356), 921–972. https://doi.org/10.1016/s0140-6736(22)01273-9
, Han M, Hansel NN, Hawkins NM, Kalhan R, Konigshoff M, Ko F.W., Parekh TM, et al. (2022). Towards the elimination of chronic obstructive pulmonary disease: a Lancet Commission.
Huvanandana J, Nguyen CD, Foster JM, Annals of the American Thoracic Society, 19(6), 933–942. https://doi.org/10.1513/annalsats.202106-653oc
, Reddel HK, & Thamrin C. (2022). Novel Methods of Measuring Adherence Patterns Reveal Adherence Phenotypes with Distinct Asthma Outcomes.
Huvanandana J, Nguyen CD, Foster JM, Annals of the American Thoracic Society, 19(6), 933–942. https://doi.org/10.1513/annalsats.202106-653oc
, Reddel HK, & Thamrin C. (2022). Novel Methods of Measuring Adherence Patterns Reveal Adherence Phenotypes with Distinct Asthma Outcomes.
Mariëlle W Pijnenburg, Urs Frey, European Respiratory Journal, 59(6). https://doi.org/10.1183/13993003.00731-2021
, & Sejal Saglani. (2022). Childhood asthma: pathogenesis and phenotypes.
Mariëlle W Pijnenburg, Urs Frey, European Respiratory Journal, 59(6). https://doi.org/10.1183/13993003.00731-2021
, & Sejal Saglani. (2022). Childhood asthma: pathogenesis and phenotypes.
Salem Y, Oestreich MA, Fuchs O, Usemann J, American Journal of Obstetrics and Gynecology, 226(2), 257. https://doi.org/10.1016/j.ajog.2021.07.027
, Surbek D, Amylidi-Mohr S, Latzin P, Ramsey K, Yammine S, & Bern Basel Infant Lung Development Study Group. (2022). Are children born by cesarean delivery at higher risk for respiratory sequelae?
Salem Y, Oestreich MA, Fuchs O, Usemann J, American Journal of Obstetrics and Gynecology, 226(2), 257. https://doi.org/10.1016/j.ajog.2021.07.027
, Surbek D, Amylidi-Mohr S, Latzin P, Ramsey K, Yammine S, & Bern Basel Infant Lung Development Study Group. (2022). Are children born by cesarean delivery at higher risk for respiratory sequelae?
Badi Y.E., Pavel A.B., Pavlidis S., Riley J.H., Bates S., Kermani N.Z., Knowles R., Kolmert J., Wheelock C.E., Worsley S., Uddin M., Alving K., Bakke P.S., Behndig A., Caruso M., Chanez P., Fleming L.J., Fowler S.J., Journal of Allergy and Clinical Immunology, 149(1), 89–101. https://doi.org/10.1016/j.jaci.2021.04.010
, et al. (2022). Mapping atopic dermatitis and anti–IL-22 response signatures to type 2–low severe neutrophilic asthma.
Badi Y.E., Pavel A.B., Pavlidis S., Riley J.H., Bates S., Kermani N.Z., Knowles R., Kolmert J., Wheelock C.E., Worsley S., Uddin M., Alving K., Bakke P.S., Behndig A., Caruso M., Chanez P., Fleming L.J., Fowler S.J., Journal of Allergy and Clinical Immunology, 149(1), 89–101. https://doi.org/10.1016/j.jaci.2021.04.010
, et al. (2022). Mapping atopic dermatitis and anti–IL-22 response signatures to type 2–low severe neutrophilic asthma.
Decrue, F., Gorlanova, O., Salem, Y., Vienneau, D., de Hoogh, K., Gisler, A., Usemann, J., Korten, I., Nahum, U., Sinues, P., Schulzke, S., Fuchs, O., Latzin, P., Röösli, M., Am J Respir Crit Care Med, 205(1), 99–107. https://doi.org/10.1164/rccm.202102-0272oc
, & Bild Study Group. (2022). Increased impact of air pollution on lung function in preterm versus term infants: the BILD study.
Decrue, F., Gorlanova, O., Salem, Y., Vienneau, D., de Hoogh, K., Gisler, A., Usemann, J., Korten, I., Nahum, U., Sinues, P., Schulzke, S., Fuchs, O., Latzin, P., Röösli, M., Am J Respir Crit Care Med, 205(1), 99–107. https://doi.org/10.1164/rccm.202102-0272oc
, & Bild Study Group. (2022). Increased impact of air pollution on lung function in preterm versus term infants: the BILD study.
Gisler, A., Eeftens, M., de Hoogh, K., Vienneau, D., Salem, Y., Yammine, S., Jakob, J., Gorlanova, O., Decrue, F., Gehrig, R., Allergy, 77(12), 3606–3616. https://doi.org/10.1111/all.15284
, Latzin, P., Fuchs, O., Usemann, J., & Bild study group. (2022). Pollen exposure is associated with risk of respiratory symptoms during the first year of life.
Gisler, A., Eeftens, M., de Hoogh, K., Vienneau, D., Salem, Y., Yammine, S., Jakob, J., Gorlanova, O., Decrue, F., Gehrig, R., Allergy, 77(12), 3606–3616. https://doi.org/10.1111/all.15284
, Latzin, P., Fuchs, O., Usemann, J., & Bild study group. (2022). Pollen exposure is associated with risk of respiratory symptoms during the first year of life.
Gorlanova, O., Oller, H., Marten, A., Müller, L., Laine-Carmelli, J., Decrue, F., Salem, Y., Vienneau, D., de Hoogh, K., Gisler, A., Usemann, J., Korten, I., Yammine, S., Nahum, U., Künstle, N., Sinues, P., Schulzke, S., Latzin, P., Fuchs, O., et al. (2022). Ambient prenatal air pollution exposure is associated with low cord blood IL-17a in infants. Pediatric Allergy and Immunology, 34, e13902. https://doi.org/10.1111/pai.13902
Gorlanova, O., Oller, H., Marten, A., Müller, L., Laine-Carmelli, J., Decrue, F., Salem, Y., Vienneau, D., de Hoogh, K., Gisler, A., Usemann, J., Korten, I., Yammine, S., Nahum, U., Künstle, N., Sinues, P., Schulzke, S., Latzin, P., Fuchs, O., et al. (2022). Ambient prenatal air pollution exposure is associated with low cord blood IL-17a in infants. Pediatric Allergy and Immunology, 34, e13902. https://doi.org/10.1111/pai.13902
Jaboyedoff M, Rakic M, Bachmann S, Berger C, Diezi M, Fuchs O, Swiss Medical Weekly, 151, w30069. https://doi.org/10.4414/smw.2021.w30069
, Gervaix A, Glücksberg AS, Grotzer M, Heininger U, Kahlert CR, Kaiser D, Kopp MV, Lauener R, Neuhaus TJ, Paioni P, Posfay-Barbe K, Ramelli GP, et al. (2021). SwissPedData: Standardising hospital records for the benefit of paediatric research.
Jaboyedoff M, Rakic M, Bachmann S, Berger C, Diezi M, Fuchs O, Swiss Medical Weekly, 151, w30069. https://doi.org/10.4414/smw.2021.w30069
, Gervaix A, Glücksberg AS, Grotzer M, Heininger U, Kahlert CR, Kaiser D, Kopp MV, Lauener R, Neuhaus TJ, Paioni P, Posfay-Barbe K, Ramelli GP, et al. (2021). SwissPedData: Standardising hospital records for the benefit of paediatric research.
Decrue, Fabienne, Singh, Kapil Dev, Gisler, Amanda, Awchi, Mo, Zeng, Jiafa, Usemann, Jakob, Analytical Chemistry, 47, 15579. https://doi.org/10.1021/acs.analchem.1c02036
, & Sinues, Pablo. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants [Doi: 10.1021/acs.analchem.1c02036].
Decrue, Fabienne, Singh, Kapil Dev, Gisler, Amanda, Awchi, Mo, Zeng, Jiafa, Usemann, Jakob, Analytical Chemistry, 47, 15579. https://doi.org/10.1021/acs.analchem.1c02036
, & Sinues, Pablo. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants [Doi: 10.1021/acs.analchem.1c02036].
Decrue F, Singh KD, Gisler A, Awchi M, Zeng J., Usemann J, Analytical Chemistry, 93(47), 15579–15583. https://doi.org/10.1021/acs.analchem.1c02036
, & Sinues P. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants.
Decrue F, Singh KD, Gisler A, Awchi M, Zeng J., Usemann J, Analytical Chemistry, 93(47), 15579–15583. https://doi.org/10.1021/acs.analchem.1c02036
, & Sinues P. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants.
Korten I, Oestreich MA, Journal of Cystic Fibrosis, 20(6), 957–964. https://doi.org/10.1016/j.jcf.2021.04.006
, Moeller A, Jung A, Spinas R, Mueller-Suter D., Trachsel D, Rochat I, Spycher B, Latzin P., Casaulta C, & Ramsey K. (2021). Respiratory symptoms do not reflect functional impairment in early CF lung disease.
Korten I, Oestreich MA, Journal of Cystic Fibrosis, 20(6), 957–964. https://doi.org/10.1016/j.jcf.2021.04.006
, Moeller A, Jung A, Spinas R, Mueller-Suter D., Trachsel D, Rochat I, Spycher B, Latzin P., Casaulta C, & Ramsey K. (2021). Respiratory symptoms do not reflect functional impairment in early CF lung disease.
de Gouveia Belinelo P, Collison AM, Murphy VE, Robinson PD, Jesson K, Hardaker K, de Queiroz Andrade E, Oldmeadow C, Martins Costa Gomes G, Sly PD, Usemann J, Appenzeller R, Gorlanova O, Fuchs O, Latzin P, Gibson PG, Thorax, 76(10), 996–1001. https://doi.org/10.1136/thoraxjnl-2020-215526
, & Mattes J. (2021). Maternal asthma is associated with reduced lung function in male infants in a combined analysis of the BLT and BILD cohorts.
de Gouveia Belinelo P, Collison AM, Murphy VE, Robinson PD, Jesson K, Hardaker K, de Queiroz Andrade E, Oldmeadow C, Martins Costa Gomes G, Sly PD, Usemann J, Appenzeller R, Gorlanova O, Fuchs O, Latzin P, Gibson PG, Thorax, 76(10), 996–1001. https://doi.org/10.1136/thoraxjnl-2020-215526
, & Mattes J. (2021). Maternal asthma is associated with reduced lung function in male infants in a combined analysis of the BLT and BILD cohorts.
Rakic M, Jaboyedoff M, Bachmann S, Berger C, Diezi M, do Canto P, Forrest CB, BMC Proceedings, 15(Suppl 13), 19. https://doi.org/10.1186/s12919-021-00226-3
, Fuchs O, Gervaix A, Gluecksberg AS, Grotzer M, Heininger U, Kahlert CR, Kaiser D, Kopp MV, Lauener R, Neuhaus TJ, Paioni P, et al. (2021). Clinical data for paediatric research: the Swiss approach : Proceedings of the National Symposium in Bern, Switzerland, Dec 5-6, 2019.
Rakic M, Jaboyedoff M, Bachmann S, Berger C, Diezi M, do Canto P, Forrest CB, BMC Proceedings, 15(Suppl 13), 19. https://doi.org/10.1186/s12919-021-00226-3
, Fuchs O, Gervaix A, Gluecksberg AS, Grotzer M, Heininger U, Kahlert CR, Kaiser D, Kopp MV, Lauener R, Neuhaus TJ, Paioni P, et al. (2021). Clinical data for paediatric research: the Swiss approach : Proceedings of the National Symposium in Bern, Switzerland, Dec 5-6, 2019.
Winkler T., & Journal of Allergy and Clinical Immunology, 148(3), 710–712. https://doi.org/10.1016/j.jaci.2021.07.010
(2021). Airway remodeling: Shifting the trigger point for exacerbations in asthma.
Winkler T., & Journal of Allergy and Clinical Immunology, 148(3), 710–712. https://doi.org/10.1016/j.jaci.2021.07.010
(2021). Airway remodeling: Shifting the trigger point for exacerbations in asthma.
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