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多孔介质速度场和流量场分布 被引量:1
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作者 戚涛 胡勇 +3 位作者 李骞 彭先 赵潇雨 荆晨 《天然气地球科学》 EI CAS CSCD 北大核心 2020年第3期340-347,共8页
流体在多孔介质中的宏观特性由介质本身的孔隙结构直接决定,速度场和流量场作为连接微观和宏观的桥梁显得尤为重要,但相关的研究相对较少。基于孔隙网络模型中的流动模拟,采用欧拉描述方法,系统统计了多孔介质中速度和流量的分布,分析... 流体在多孔介质中的宏观特性由介质本身的孔隙结构直接决定,速度场和流量场作为连接微观和宏观的桥梁显得尤为重要,但相关的研究相对较少。基于孔隙网络模型中的流动模拟,采用欧拉描述方法,系统统计了多孔介质中速度和流量的分布,分析了速度和流量的概率密度函数随孔隙结构的变化关系。研究表明:①随多孔介质无序性的增加,速度的分布范围急剧增加,流量的分布范围变化不大;②速度的概率密度函数随无序因子的减小依次表现为:高斯分布、指数分布、指数截断的幂律分布及幂律分布,流量的概率密度函数主要受孔隙非均质性的影响,表现为高斯分布和指数截断的幂律分布;③归一化流体速度的平均值受变异系数和配位数共同影响,且与配位数成乘幂关系,归一化流体流量的平均值不随配位数的变化而变化,但其随变异系数的增加而降低。 展开更多
关键词 速度场 流量场 无序因子 幂律分布 指数截断的幂律分布
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A TOP6BL mutation abolishes meiotic DNA double-strand break formation and causes human infertility 被引量:3
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作者 Yuying Jiao Suixing Fan +23 位作者 Nazish Jabeen Huan Zhang Ranjha Khan Ghulam Murtaza Hanwei Jiang Asim Ali Yang Li Jianqiang Bao Beibei Zhang Jianze Xu Bo Xu Hafiz Muhammad Jafar Hussain Qumar Zaman Ihsan Khan Ihtisham Bukhari Furhan Iqbal Ayesha Yousaf Sobia Dil Manan Khan Niaz Ahmad Hui Ma Xiaohua Jiang Yuanwei Zhang Qinghua Shi 《Science Bulletin》 SCIE EI CSCD 2020年第24期2120-2129,M0006,共11页
Meiosis is pivotal for sexual reproduction and fertility. Meiotic programmed DNA double-strand breaks(DSBs) initiate homologous recombination, ensuring faithful chromosome segregation and generation of gametes. Howeve... Meiosis is pivotal for sexual reproduction and fertility. Meiotic programmed DNA double-strand breaks(DSBs) initiate homologous recombination, ensuring faithful chromosome segregation and generation of gametes. However, few studies have focused on meiotic DSB formation in human reproduction.Here, we report four infertile siblings born to a consanguineous marriage, with three brothers suffering from non-obstructive azoospermia and one sister suffering from unexplained infertility with normal menstrual cycles and normal ovary sizes with follicular activity. An autosomal recessive mutation in TOP6BL was found co-segregating with infertility in this family. Investigation of one male patient revealed failure in programmed meiotic DSB formation and meiotic arrest prior to pachytene stage of prophase I.Mouse models carrying similar mutations to that in patients recapitulated the spermatogenic abnormalities of the patient. Pathogenicity of the mutation in the female patient was supported by observations in mice that meiotic programmed DSBs failed to form in mutant oocytes and oocyte maturation failure due to absence of meiotic recombination. Our study thus illustrates the phenotypical characteristics and the genotype-phenotype correlations of meiotic DSB formation failure in humans. 展开更多
关键词 Programmed meiotic DNA double-strand breaks TOP6BL mutation Meiotic DSB formation failure Human infertility Oocyte maturation failure Meiotic arrest
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