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

Are we preparing for collaboration, advocacy and leadership? Targeted multi-site analysis of collaborative intrinsic roles implementation in medical undergraduate curricula

我们是否为协作、倡导和领导做好准备?针对医学本科课程中协作内在角色实施情况的多点分析

Griewatz, Jan; Yousef, Amir; Rothdiener, Miriam; Lammerding-Koeppel, Maria

Surgeons' participation in the development of collaboration and management competencies in undergraduate medical education

外科医生参与本科医学教育中协作和管理能力培养

Rothdiener, Miriam; Griewatz, Jan; Meder, Adrian; Dall'Acqua, Alessandro; Obertacke, Udo; Kirschniak, Andreas; Borucki, Katrin; Koenig, Sarah; Ruesseler, Miriam; Steffens, Sandra; Steinweg, Bernhard; Lammerding-Koeppel, Maria

Engineering the geometrical shape of mesenchymal stromal cells through defined cyclic stretch regimens

通过定义的周期性拉伸方案设计间充质基质细胞的几何形状

Brandan Walters, Tatiana Uynuk-Ool, Miriam Rothdiener, Julian Palm, Melanie L Hart, Jan P Stegemann, Bernd Rolauffs

Loss of spatial organization and destruction of the pericellular matrix in early osteoarthritis in vivo and in a novel in vitro methodology

体内和一种新型体外方法研究早期骨关节炎中空间组织丧失和细胞周围基质破坏的现象

Felka, T; Rothdiener, M; Bast, S; Uynuk-Ool, T; Zouhair, S; Ochs, B G; De Zwart, P; Stoeckle, U; Aicher, W K; Hart, M L; Shiozawa, T; Grodzinsky, A J; Schenke-Layland, K; Venkatesan, J K; Cucchiarini, M; Madry, H; Kurz, B; Rolauffs, B

Stretching human mesenchymal stromal cells on stiffness-customized collagen type I generates a smooth muscle marker profile without growth factor addition.

在刚度定制的 I 型胶原蛋白上拉伸人类间充质干细胞,无需添加生长因子即可产生平滑肌标志物谱

Rothdiener Miriam, Hegemann Miriam, Uynuk-Ool Tatiana, Walters Brandan, Papugy Piruntha, Nguyen Phong, Claus Valentin, Seeger Tanja, Stoeckle Ulrich, Boehme Karen A, Aicher Wilhelm K, Stegemann Jan P, Hart Melanie L, Kurz Bodo, Klein Gerd, Rolauffs Bernd

Stress-vs-time signals allow the prediction of structurally catastrophic events during fracturing of immature cartilage and predetermine the biomechanical, biochemical, and structural impairment

应力-时间信号能够预测未成熟软骨断裂过程中发生的结构性灾难事件,并预先确定生物力学、生物化学和结构损伤。

Rolauffs, Bernd; Kurz, Bodo; Felka, Tino; Rothdiener, Miriam; Uynuk-Ool, Tatiana; Aurich, Matthias; Frank, Eliot; Bahrs, Christian; Badke, Andreas; Stöckle, Ulrich; Aicher, Wilhelm K; Grodzinsky, Alan J