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国家自然科学基金(11372243)

作品数:6 被引量:10H指数:2
相关作者:徐峰卢天健曹雷李世超高彬更多>>
相关机构:西安交通大学中国航天员科研训练中心第四军医大学第一附属医院更多>>
发文基金:国家自然科学基金中国博士后科学基金国家教育部博士点基金更多>>
相关领域:医药卫生生物学理学核科学技术更多>>

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Development of a micro-indentation device for measuring the mechanical properties of soft materials
2013年
Indentation is a simple and nondestructive method to measure the mechanical properties of soft materials,such as hydrogels,elastomers and soft tissues.In this work,we have developed a micro-indentation system with high-precision to measure the mechanical properties of soft materials,where the shear modulus and Poisson’s ratio of the materials can be obtained by analyzing the load–relaxation curve.We have validated the accuracy and stability of the system by comparing the measured mechanical properties of a polyethylene glycol sample with that obtained from a commercial instrument.The mechanical properties of another typical polydimethylsiloxane sample submerged in heptane are measured by using conical and spherical indenters,respectively.The measured values of shear modulus and Poisson’s ratio are within a reasonable range.
Xiang HePengfei WangGuoyou HuangShaobao LiuMinglong XuFeng XuTianJian Lu
关键词:聚二甲基硅氧烷剪切模量
Effect of viscoelasticity on skin pain sensation被引量:1
2015年
Pain sensation may appear under long-lasting mechanical stimulation. Although people have the experience that pain sensation generally decreases with time while the stimulation remains, the underlying mechanism remains elusive. We experimentally studied the thermal and strain ratedependent viscoelastic behavior of skin in uniaxial stretch and numerically investigated the effects of temperature and strain rate on pain sensation. The results indicate that the viscosity of skin tissue decreases with increasing temperature and reducing strain rate, which subsequently decreases the discharge frequency of skin nociceptor and thus relieves the pain sensation. The results would contribute to the understanding of pain relief mechanism and optimizing for mechanical treatment.
Fusheng LiuChenghai LiShaobao LiuGuy M.GeninGuoyou HuangTianJian LuFeng Xu
关键词:低应变速率应变率机械刺激单轴拉伸
Bioprinting-Based High-Throughput Fabrication of Three-Dimensional MCF-7 Human Breast Cancer Cellular Spheroids被引量:2
2015年
Cellular spheroids serving as three-dimensional(3D) in vitro tissue models have attracted increasing interest for pathological study and drug-screening applications. Various methods, including microwells in particular, have been developed for engineering cellular spheroids. However, these methods usually suffer from either destructive molding operations or cell loss and non-uniform cell distribution among the wells due to two-step molding and cell seeding. We have developed a facile method that utilizes cellembedded hydrogel arrays as templates for concave well fabrication and in situ MCF-7 cellular spheroid formation on a chip. A custom-built bioprinting system was applied for the fabrication of sacrificial gelatin arrays and sequentially concave wells in a high-throughput, flexible, and controlled manner. The ability to achieve in situ cell seeding for cellular spheroid construction was demonstrated with the advantage of uniform cell seeding and the potential for programmed fabrication of tissue models on chips. The developed method holds great potential for applications in tissue engineering, regenerative medicine, and drug screening.
凌楷黄国友刘俊聪张晓慧马玉菲卢天健徐峰
关键词:MCF-7细胞
三维肿瘤微环境构建及微环境与细胞的相互作用研究
肿瘤疾病是世界范围内主要的公共健康问题之一,也是国内外生物医学领域研究的焦点问题。在过去的几十年中,生物学家在基因及蛋白水平阐释了肿瘤发生、发展的过程,从肿瘤生物学的角度对疾病的理解做出了巨大贡献,为肿瘤治疗手段的发展提...
韩玉龙
关键词:肿瘤微环境细胞微环境生物力学细胞体积
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基于水凝胶的“自下而上”组织工程技术研究进展被引量:1
2015年
随着微纳生物制造技术和新型生物材料(如新型水凝胶)的发展,基于模块化组装的"自下而上"组织工程技术引起了广泛的关注,在复杂微结构和血管化组织/器官构建方面显示了广阔的发展前景.本文介绍了"自下而上"组织工程技术的基本原理及模块单元的制备和组装方法,综述和讨论了"自下而上"组织工程技术在体外重构三维组织/器官方面取得的最新研究进展,并对其在生物医学领域的发展前景进行了展望.
刘灏黄国友李昱辉张晓慧卢天健徐峰
关键词:水凝胶模块化组装
绝对定量的多聚酶链式反应技术的发展现状及其生物医学应用被引量:3
2016年
自1985年Mullis发明了体外多聚酶链反应(PCR)至今,PCR已经发展到第三代技术,即绝对定量的数字化PCR.PCR技术自问世以来,在遗传病、病原体、癌基因等分子诊断领域和法医鉴定等方面发挥了巨大作用.本文简要介绍了PCR技术的发展历程,综述和讨论了绝对定量的数字化PCR的技术路线和应用进展,总结提出了其进一步发展面临的问题,并展望了数字PCR技术在生物医学方面的发展前景.
曹雷许夏瑜高彬李世超文婷李莹辉卢天健徐峰
关键词:多聚酶链式反应微孔油包水微流体
Non-contact tensile viscoelastic characterization of microscale biological materials被引量:3
2018年
Many structures and materials in nature and physiology have important "meso-scale" structures at the micron lengthscale whose tensile responses have proven difficult to characterize mechanically. Although techniques such as atomic force microscopy and micro-and nano-identation are mature for compression and indentation testing at the nano-scale, and standard uniaxial and shear rheometry techniques exist for the macroscale, few techniques are applicable for tensile-testing at the micrometre-scale, leaving a gap in our understanding of hierarchical biomaterials. Here, we present a novel magnetic mechanical testing(MMT) system that enables viscoelastic tensile testing at this critical length scale. The MMT system applies non-contact loading, avoiding gripping and surface interaction effects. We demonstrate application of the MMT system to the first analyses of the pure tensile responses of several native and engineered tissue systems at the mesoscale, showing the broad potential of the system for exploring micro-and meso-scale analysis of structured and hierarchical biological systems.
Yuhui LiYuan HongGuang-Kui XuShaobao LiuQiang ShiDeding TangHui YangGuy M.GeninTian Jian LuFeng Xu
关键词:粘弹性生物系统
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