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Research on Intelligent Transportation System and Its Key Technology based on IOT 被引量:1
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作者 xinghua huang 《International Journal of Technology Management》 2015年第5期22-24,共3页
关键词 智能交通系统 基础 技术 总体规划设计 IOT GPRS网络 ZIGBEE 以太网接入
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Seizure-related 6,a brain-specific expression gene,is highly expressed in the human cerebellum
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作者 Jianming Jiang Long Yu +5 位作者 Yangtai Guan Zhiliang Yu xinghua huang Xiaosong Chen LishaTang Xianning Zhang 《Neural Regeneration Research》 SCIE CAS CSCD 2010年第16期1231-1237,共7页
Epilepsy is a complex, Mendelian disease, and most cases are sporadic. Genomic comparisons of tissue from identified monogenic epilepsies with multigenic and acquired syndromes could ultimately reveal crucial molecula... Epilepsy is a complex, Mendelian disease, and most cases are sporadic. Genomic comparisons of tissue from identified monogenic epilepsies with multigenic and acquired syndromes could ultimately reveal crucial molecular neuropathology for an epileptic phenotype. In the present study, a novel gene, human seizure-related (hSEZ)-6, was isolated from a human brain cDNA library. hSEZ-6 comprises 17 exons and spans a region of at least 55.6 kb, which was localized to 17q 12 by radiation hybridization, hSEZ-6 exhibits two isoform types, hSEZ-6A and hSEZ-6B, which encode 996 and 995 amino acids, respectively. The two putative hSEZ-6 proteins contain similar motifs and share 82% and 84% identity with mouse SEZ-6A protein, whose expression level increased in mouse cerebral cortex-derived cells treated with a convulsant drug, pentylentetrazole. Northern blot analysis demonstrated that hSEZ-6 is expressed highly in the cerebellum and in nucleus of the extrapyramidal system, such as the caudate nucleus and putamen. Reverse transcription polymerase chain reaction revealed that hSEZ-6 is expressed in neurons rather than gliocytes, which suggests that hSEZ-6 is a seizure-related gone. 展开更多
关键词 seizures epilepsy human seizure-related-6 gene cloning brain-specific expression CEREBELLUM
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基于微小槽道的冷媒直冷电池热管理系统性能研究与优化 被引量:1
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作者 王肖军 张恒运 +1 位作者 黄兴华 李康 《过程工程学报》 CAS CSCD 北大核心 2023年第1期154-162,共9页
本工作以基于微小槽道换热器的小型蒸气压缩系统为研究对象,对冷媒直冷电池热管理系统进行研究。确定了系统最佳冷媒充注量,总结了不同参数对系统热管理性能的影响规律,最后根据模型分析提出降低排气温度的改进方案。基于能效比(COP)最... 本工作以基于微小槽道换热器的小型蒸气压缩系统为研究对象,对冷媒直冷电池热管理系统进行研究。确定了系统最佳冷媒充注量,总结了不同参数对系统热管理性能的影响规律,最后根据模型分析提出降低排气温度的改进方案。基于能效比(COP)最高的指标,确定系统冷媒最佳充注量为250 g。在固定加热功率条件下,随膨胀阀开度(OEV)的增加,微小槽道内的换热系数持续升高,而电池温度出现先降低后升高的趋势,因此存在最佳OEV使得电池温度最低;随电池模组加热功率增加,最佳OEV对应的蒸发器出口干度逐渐降低,虽然微小槽道换热系数有所升高,但是更快的加热功率增大速率使得电池温度升高;环境温度的升高对系统热管理性能产生不利影响,但是在35℃的高温环境下,电池温度依然能够被冷却至环境温度以下。基于AMEsim模型分析表明,增加冷凝器换热面积的方案,能够有效降低排气温度。 展开更多
关键词 冷媒充注量 OEV 加热功率 环境温度 排气温度
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