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

Toward Lesion-specific Stenting Strategies: A Computational Framework to Validate the Deployment of Balloon-expandable Stents

迈向病灶特异性支架置入策略:验证球囊扩张支架部署的计算框架

Jiang, David; Zimmerman, Brandon K; Maas, Steve A; Weiss, Jeffrey A; Ateshian, Gerard A; Timmins, Lucas H

Theoretical Considerations for Patient-Specific Modeling Based on Observable State Variables

基于可观测状态变量的患者特定建模的理论考量

Ateshian, Gerard A; Deiters, Sarah; Weiss, Jeffrey A

Synovial fluid protects cartilage against fatigue failure in cyclical compression

滑液可保护软骨免受循环压缩引起的疲劳损伤。

Ateshian, Gerard A; Zhang, Haoyu; Hung, Clark T

Evaluation of Dexamethasone-Eluting Cell-Seeded Constructs in a Preclinical Canine Model of Cartilage Repair

在犬软骨修复临床前模型中评估地塞米松洗脱细胞接种构建体

Lee, Andy J; Gangi, Lianna R; Hu, Yizhong Jenny; Dinescu, Andreea T; Guo, X Edward; Bozynski, Chantelle C; Kuroki, Keiichi; Stoker, Aaron M; Marra, Kacey G; Ateshian, Gerard A; Cook, James L; Hung, Clark T

Synovium friction properties are influenced by proteoglycan content.

滑膜摩擦特性受蛋白聚糖含量的影响

Gangi Lianna R, Pagon Athena D, Pellicore Matthew J, Kroupa Kimberly R, Murphy Lance A, Ateshian Gerard A, Hung Clark T

Continuum Growth Mechanics: Reconciling Two Common Frameworks

连续生长机制:协调两种常用框架

Ateshian, Gerard A; LaBelle, Steven A; Weiss, Jeffrey A

The Problem With National Institute of Standards and Technology Thermodynamics Tables in Continuum Mechanics

美国国家标准与技术研究院连续介质力学热力学表的问题

Ateshian, Gerard A; Shim, Jay J; Kepecs, Raphael J; Narayanaswamy, Arvind; Weiss, Jeffrey A

Modeling Fatigue Failure of Cartilage and Fibrous Biological Tissues Using Constrained Reactive Mixture Theory

利用约束反应混合物理论对软骨和纤维生物组织的疲劳失效进行建模

Zimmerman, Brandon K; Maas, Steve A; Weiss, Jeffrey A; Ateshian, Gerard A

Effect of Blood on Synovial Joint Tissues: Potential Role of Ferroptosis

血液对滑膜关节组织的影响:铁死亡的潜在作用

Nicholson, Howard J 3rd; Sakhrani, Neeraj; Rogot, James; Lee, Andy J; Ojediran, Inioluwa G; Sharma, Ratna; Chahine, Nadeen O; Ateshian, Gerard A; Shah, Roshan P; Hung, Clark T

Superficial zone chondrocytes can get compacted under physiological loading: A multiscale finite element analysis

表层软骨细胞在生理负荷下会发生压实:多尺度有限元分析

Kroupa, Kimberly R; Gangi, Lianna R; Zimmerman, Brandon K; Hung, Clark T; Ateshian, Gerard A