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Jiazi Gao

Explore the profile of Jiazi Gao including associated specialties, affiliations and a list of published articles. Areas
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Articles 19
Citations 89
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Recent Articles
1.
Liu Z, Gao J, Gong H
Ann Biomed Eng . 2024 May; 52(9):2388-2402. PMID: 38744754
Bone tissue is subjected to increased mechanical stress during high-intensity work. Inadequate bone remodeling reparability can result in the continuous accumulation of microdamage, leading to stress fractures. The aim of...
2.
Gao J, Ren P, Gong H
Front Bioeng Biotechnol . 2023 Feb; 11:1080241. PMID: 36756384
This study aimed to investigate the morphological and mechanical changes in articular cartilage and subchondral bone during spontaneous hip osteoarthritis in guinea pigs. Hip joints of guinea pigs were investigated...
3.
Tian S, Gao J, Gong H, Zhang X, Wang S
Med Eng Phys . 2022 Dec; 110:103918. PMID: 36564133
The current study aimed to investigate the effects of whole-body vibration (WBV) before and after ovariectomy on lumbar vertebrae, and to observe whether the positive effects of WBV before and...
4.
Zou S, Gong H, Gao J
ACS Biomater Sci Eng . 2022 May; 8(7):3022-3037. PMID: 35537212
Irregular porous scaffold through Voronoi tessellation based on global modeling demonstrated randomness to a certain degree and susceptibility to producing large processing deviations. A modeling method for new types of...
5.
Liu Z, Gao J, Gong H
Med Eng Phys . 2022 Mar; 102:103785. PMID: 35346433
The osteogenic response of bone to compressive load is affected by peak strain and duration of experiment, however, combined effect of peak load and duration of experiment on the rat...
6.
Liu Z, Gong H, Gao J, Liu Z, Zou S, Tian S
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi . 2021 Oct; 38(5):960-968. PMID: 34713664
In order to establish a bone scaffold with good biological properties, two kinds of new gradient triply periodic minimal surfaces (TPMS) scaffolds, i.e., two-way linear gradient G scaffolds (L-G) and...
7.
Gao J, Liu B, Zhang M, Gong H, Gao B
Appl Bionics Biomech . 2019 Dec; 2019:1736763. PMID: 31871486
This study is aimed at providing an effective method for determining strain-load relationship and at quantifying the strain distribution within the whole tibia under axial compressive load on rats. Rat...
8.
Liu Z, Gao J, Gong H
Biomed Eng Online . 2019 Nov; 18(1):107. PMID: 31718665
Background: Bone is a dynamically hierarchical material that can be divided into length scales of several orders of magnitude. Exercise can cause bone deformation, which in turn affects bone mass...
9.
Fang J, Gao J, Gong H, Zhang T, Zhang R, Zhan B
Biomed Eng Online . 2019 Mar; 18(1):33. PMID: 30902108
Background: Bone tissue displays a hierarchical organization. Mechanical environments influence bone mass and structure. This study aimed to explore the effects of different mechanical stimuli on growing bone properties at...
10.
Gong H, Zhang R, Gao J, Zhang M, Liu B, Zhang M, et al.
Sci China Life Sci . 2018 Jul; 62(1):95-103. PMID: 30019161
Low-magnitude, high-frequency vibration (LMHFV) with rest days (particularly seven rest days) was considerably effective in improving the morphological and mechanical properties of rat proximal femur. However, current knowledge is limited...