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个人简介
The skeletal muscle is a highly plastic organ, able to adapt to contraction, nutrient availability and supply, ambient oxygen and temperature, as well as numerous other perturbations. In recent years, novel functions of muscle beyond force generation have been discovered, with enormous physiological and clinical implications.
We are interested in understanding and linking molecular mechanisms to physiological processes and pathophysiological events in skeletal muscle. In addition, the interaction of muscle with other cell types and tissues, e.g. the neuromuscular junction (NMJ) and motor neurons, is interrogated to reveal insights about the broader aspects of muscle plasticity. Therefore, we study exercise – the main physiological function of muscle – juxtaposed to inactivity, aging, cancer cachexia, muscular dystrophies and other muscle wasting pathologies.
研究兴趣
论文共 198 篇作者统计合作学者相似作者
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Free radical biology & medicine (2024): 53-68
Alexis Ruiz,Sofia Benucci, Herve Meier, Georg Schultz,Katarzyna Buczak,Christoph Handschin, Rodrigo C. G. Pena,Susan Treves, Francesco Zorzato
biorxiv(2024)
Ajda Lenardic,Seraina A. Domenig,Joel Zvick,Nicola Bundschuh,Monika Tarnowska-Sengul,Regula Furrer, Falko Noe, Christine L. Trautmann,Adhideb Ghosh, Giada Bacchin, Pjeter Gjonlleshaj,Xhem Qabrati,Evi Masschelein,Katrien De Bock,Christoph Handschin,Ori Bar-Nur
JOURNAL OF CLINICAL INVESTIGATIONno. 12 (2024)
JOURNAL OF PHYSIOLOGY-LONDON (2024)
NATURE METABOLISMno. 11 (2023): 1856-1857
Physiological reportsno. 11 (2023): n/a-n/a
Regula Furrer, Barbara Heim, Svenia Schmid,Sedat Dilbaz,Volkan Adak, Karl J. Nordstrom,Danilo Ritz,Stefan A. Steurer,Jorn Walter,Christoph Handschin
NATURE METABOLISMno. 11 (2023): 2020-+
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#Papers: 198
#Citation: 23707
H-Index: 54
G-Index: 153
Sociability: 6
Diversity: 0
Activity: 1
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