日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

An Organ-on-Chip Platform for Strain-Controlled, Tissue-Specific Compression of Cartilage and Mineralized Osteochondral Interface to Study Mechanical Overloading in Osteoarthritis.

用于对软骨和矿化骨软骨界面进行应变控制、组织特异性压缩的芯片器官平台,用于研究骨关节炎中的机械过载

Mainardi Andrea, Börsch Anastasiya, Occhetta Paola, Ivanek Robert, Ehrbar Martin, Krattiger Lisa, Oertle Philipp, Loparic Marko, Martin Ivan, Rasponi Marco, Barbero Andrea

Ultrahigh-resolution spectral domain optical coherence tomography with a blue-diode-pumped Ti:sapphire laser and an axicon lens

利用蓝光二极管泵浦钛蓝宝石激光器和锥透镜实现超高分辨率光谱域光学相干断层扫描

Zeyen, Manuel; Lajtner, Karlo; Zaugg, Gregory; Liepelt, Milan; Mühlebach, Lea; Loparic, Marko; Resan, Bojan

Biomaterial surface energy-driven ligand assembly strongly regulates stem cell mechanosensitivity and fate on very soft substrates

生物材料表面能驱动的配体组装强烈调控干细胞在极软基质上的力学敏感性和命运

Razafiarison, Tojo; Holenstein, Claude N; Stauber, Tino; Jovic, Milan; Vertudes, Edward; Loparic, Marko; Kawecki, Maciej; Bernard, Laetitia; Silvan, Unai; Snedeker, Jess G

Challenges and opportunities of publishing supplements at Arthritis Research & Therapy

在《关节炎研究与治疗》杂志上发表增刊的挑战与机遇

Ströbel, Simon; Loparic, Marko; Wendt, David; Schenk, Andreas D; Candrian, Christian; Lindberg, Raija L P; Moldovan, Florina; Barbero, Andrea; Martin, Ivan; Mulvany, Frances; Baker, Jo; Lipsky, Peter E; Maini, Ravinder N

Micro- and nanomechanical analysis of articular cartilage by indentation-type atomic force microscopy: validation with a gel-microfiber composite.

利用压痕式原子力显微镜对关节软骨进行微纳米力学分析:用凝胶-微纤维复合材料进行验证

Loparic Marko, Wirz Dieter, Daniels A U, Raiteri Roberto, Vanlandingham Mark R, Guex Geraldine, Martin Ivan, Aebi Ueli, Stolz Martin