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您的检索式:作者名="Jerry Zhuang"
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| 1 | Bioactive hydrogels for bone regeneration显示文摘Bone self-healing is limited and generally requires external intervention to augment bone repair and regeneration.While traditional methods for repairing bone defects such as autografts,allografts,and xenografts have been widely used,they all have corresponding disadvantages,thus limiting their clinical use.Despite the development of a variety of biomaterials,including metal implants,calcium phosphate cements(CPC),hydroxyapatite,etc.,the desired therapeutic effect is not fully achieved.Currently,polymeric scaffolds,particularly hydrogels,are of interest and their unique configurations and tunable physicochemical properties have been extensively studied.This review will focus on the applications of various cutting-edge bioactive hydrogels systems in bone regeneration,as well as their advantages and limitations.We will examine the composition and defects of the bone,discuss the current biomaterials for bone regeneration,and classify recently developed polymeric materials for hydrogel synthesis.We will also elaborate on the properties of desirable hydrogels as well as the fabrication techniques and different delivery strategies.Finally,the existing challenges,considerations,and the future prospective of hydrogels in bone regeneration will be outlined. | Xin Bai Mingzhu Gao Sahla Syed Jerry Zhuang Xiaoyang Xu Xue-Qing Zhang | 2018 | Bioactive Materials2018,3,4: | 15 |
| 2 | Experimental study of partially flattened axial grooved heat pipes显示文摘This article made experimental study on mini-axial grooved heat pipes (AGHP) with 11 flattening forms. It analyzed how the flattening form, flattening thickness and working temperature affect axial temperature distribution, thermal resistance, heat transfer limit and the phase-change heat transfer coefficients in evaporator and condenser sections. The result indicates that all forms of AGHPs can maintain good isothermal performance under normal operating condition. The geometric shape of AGHP has obvious impact on heat transfer limit. With respect to an AGHP with 2 mm-thick evaporator section, when the thickness of its condenser section increases from 2 to 3 mm, its heat transfer limit increases by 81%; with respect to an AGHP with 3 mm-thick evaporator section, when the thickness of its con- denser section increases from 2 to 3 mm, its heat transfer limit increases by 134%; with respect to an AGHP with 4 mm-thick condenser section, when the thickness of its evaporator section increases from 2 to 3 mm, its heat transfer limit increases by 26%. When the thickness of the evaporator section in- creases by 1 mm, the heat transfer limit will increase by 9%―26%, while when the thickness of the condenser section increases by 1 mm, the heat transfer limit will increase by 20%―86%. The thickness of the condenser section has greater impact on heat transfer performance of an AGHP than the thickness of the evaporator section does. The study content of this article will help understand the heat transfer performance of AGHP, and electronic thermal design process. | TAO HanZhong ZHANG Hong ZHUANG Jun Jerry W. BOWMANS | 2008 | Chinese Science Bulletin2008,53,19: | 1 |
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