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含垂直裂纹的厚热障涂层的热稳定性及力学性能(英文) 被引量:11
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作者 Zhe LU min-sik kim +4 位作者 Sang-Won MYOUNG Je-Hyun LEE Yeon-Gil JUNG In-Soo kim Chang-Yong JO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第S1期29-35,共7页
采用循环热暴露及热震试验研究含或不含垂直裂纹的厚热障涂层的热稳定性和失效机制。先采用空气等离子喷涂技术在基体表面制备150μm厚的连接涂层,再在该涂层上采用空气等离子喷涂技术制备2000μm厚的热障涂层。含或不含垂直裂纹的热障... 采用循环热暴露及热震试验研究含或不含垂直裂纹的厚热障涂层的热稳定性和失效机制。先采用空气等离子喷涂技术在基体表面制备150μm厚的连接涂层,再在该涂层上采用空气等离子喷涂技术制备2000μm厚的热障涂层。含或不含垂直裂纹的热障涂层的粘附强度分别为24.7和11.0 MPa,表明含垂直裂纹的热障涂层的界面稳定性更高。循环热暴露及热震试验表明其热稳定性更高。含或不含垂直裂纹的热障涂层的硬度分别为6.6和5.3GPa,经循环热暴露试验后分别升高至9.5和5.5 GPa。实验表明上层涂层中垂直裂纹的存在有利于延长热障涂层高温环境的寿命。 展开更多
关键词 热障涂层 空气等离子喷涂 垂直裂纹 热稳定性
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Anatomical distributional defects in mutant genes associated with dominant intermediate Charcot-Marie-Tooth disease type C in an adenovirus-mediated mouse model 被引量:1
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作者 Seo Jin Lee Sandesh Panthi +6 位作者 Hyun Woo Jo Jaeyoung Cho min-sik kim Na Young Jeong In Ok Song Junyang Jung Youngbuhm Huh 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第3期486-492,共7页
Dominant intermediate Charcot-Marie-Tooth disease type C(DI-CMTC) is a dominantly inherited neuropathy that has been classified primarily based on motor conduction velocity tests but is now known to involve axonal a... Dominant intermediate Charcot-Marie-Tooth disease type C(DI-CMTC) is a dominantly inherited neuropathy that has been classified primarily based on motor conduction velocity tests but is now known to involve axonal and demyelination features.DI-CMTC is linked to tyrosyl-t RNA synthetase(YARS)-associated neuropathies,which are caused by E196 K and G41 R missense mutations and a single de novo deletion(153-156 del VKQV).It is well-established that these YARS mutations induce neuronal dysfunction,morphological symptoms involving axonal degeneration,and impaired motor performance.The present study is the first to describe a novel mouse model of YARS-mutation-induced neuropathy involving a neuron-specific promoter with a deleted mitochondrial targeting sequence that inhibits the expression of YARS protein in the mitochondria.An adenovirus vector system and in vivo techniques were utilized to express YARS fusion proteins with a Flag-tag in the spinal cord,peripheral axons,and dorsal root ganglia.Following transfection of YARS-expressing viruses,the distributions of wild-type(WT) YARS and E196 K mutant proteins were compared in all expressed regions; G41 R was not expressed.The proportion of Flag/green fluorescent protein(GFP) double-positive signaling in the E196 K mutant-type mice did not significantly differ from that of WT mice in dorsal root ganglion neurons.All adenovirus genes,and even the empty vector without the YARS gene,exhibited GFP-positive signaling in the ventral horn of the spinal cord because GFP in an adenovirus vector is driven by a cytomegalovirus promoter.The present study demonstrated that anatomical differences in tissue can lead to dissimilar expressions of YARS genes.Thus,use of this novel animal model will provide data regarding distributional defects between mutant and WT genes in neurons,the DICMTC phenotype,and potential treatment approaches for this disease. 展开更多
关键词 nerve regeneration tyrosyl-tRNA synthetase YARS-associated neuropathy YARS mutation Charcot-Marie- Tooth Disease adenoviral vector-mediated mouse models neural regeneration
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Functional reconstruction and evaluation of oral cavity: flap design and guideline
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作者 min-sik kim 《中国口腔颌面外科杂志》 CAS 2008年第B05期30-30,共1页
关键词 口腔 重建方法 手术治疗 修复术
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