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

Age Dependence of Systemic Bone Loss and Recovery Following Femur Fracture in Mice

小鼠股骨骨折后全身性骨丢失和恢复的年龄依赖性

Emami, Armaun J; Toupadakis, Chrisoula A; Telek, Stephanie M; Fyhrie, David P; Yellowley, Clare E; Christiansen, Blaine A

Strain-induced optical changes in demineralized bone

脱矿骨中应变引起的光学变化

Hardisty, Michael R; Kienle, Daniel F; Kuhl, Tonya L; Stover, Susan M; Fyhrie, David P

Remineralized bone matrix as a scaffold for bone tissue engineering

再矿化骨基质作为骨组织工程的支架

Soicher, Matthew A; Christiansen, Blaine A; Stover, Susan M; Leach, J Kent; Yellowley, Clare E; Griffiths, Leigh G; Fyhrie, David P

Effects of mineral content on the fracture properties of equine cortical bone in double-notched beams

矿物质含量对双缺口梁中马皮质骨断裂性能的影响

McCormack, Jordan; Stover, Susan M; Gibeling, Jeffery C; Fyhrie, David P

Relating micromechanical properties and mineral densities in severely suppressed bone turnover patients, osteoporotic patients, and normal subjects

探讨骨转换严重受抑制患者、骨质疏松症患者和正常受试者的微观力学特性与矿物质密度之间的关系

Tjhia, Crystal K; Stover, Susan M; Rao, D Sudhaker; Odvina, Clarita V; Fyhrie, David P

Mechanical property and tissue mineral density differences among severely suppressed bone turnover (SSBT) patients, osteoporotic patients, and normal subjects

严重骨转换抑制(SSBT)患者、骨质疏松症患者和正常受试者的力学性能和组织矿物质密度差异

Tjhia, Crystal K; Odvina, Clarita V; Rao, D Sudhaker; Stover, Susan M; Wang, Xiang; Fyhrie, David P

Cancellous bone properties and matrix content of TGF-beta2 and IGF-I in human tibia: a pilot study.

人类胫骨中松质骨特性及TGF-β2和IGF-I基质含量:一项初步研究

Yeni Yener N, Dong X Neil, Zhang Bingbing, Gibson Gary J, Fyhrie David P

Cancellous bone lamellae strongly affect microcrack propagation and apparent mechanical properties: separation of patients with osteoporotic fracture from normal controls using a 2D nonlinear finite element method (biomechanical stereology)

松质骨板层对微裂纹扩展和表观力学性能有显著影响:采用二维非线性有限元方法(生物力学立体学)区分骨质疏松性骨折患者与正常对照组

Wang, Xiang; Zauel, Roger R; Rao, D Sudhaker; Fyhrie, David P

Molecular NMR T2 values can predict cartilage stress-relaxation parameters.

分子核磁共振T2值可以预测软骨应力松弛参数

June Ronald K, Fyhrie David P