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书目名称Genomic Mosaicism in Neurons and Other Cell Types影响因子(影响力)<br> http://figure.impactfactor.cn/if/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types影响因子(影响力)学科排名<br> http://figure.impactfactor.cn/ifr/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types网络公开度<br> http://figure.impactfactor.cn/at/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types网络公开度学科排名<br> http://figure.impactfactor.cn/atr/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types被引频次<br> http://figure.impactfactor.cn/tc/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types被引频次学科排名<br> http://figure.impactfactor.cn/tcr/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types年度引用<br> http://figure.impactfactor.cn/ii/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types年度引用学科排名<br> http://figure.impactfactor.cn/iir/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types读者反馈<br> http://figure.impactfactor.cn/5y/?ISSN=BK0382901<br><br> <br><br>书目名称Genomic Mosaicism in Neurons and Other Cell Types读者反馈学科排名<br> http://figure.impactfactor.cn/5yr/?ISSN=BK0382901<br><br> <br><br>Debility 发表于 2025-3-21 21:56:28
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Giant Cell Reparative Granulomation, some populations of vertebrate neurons can also show double the normal amount of DNA, a condition referred to as somatic tetraploidy. These neurons are generated during early stages of development, as they migrate to their adult locations in the adult nervous system, and constitute subpopulati品牌 发表于 2025-3-22 09:14:48
Poor-Prognosis Germ Cell Tumoursution of neurons with DNA content variation (DCV) in the context of preserved tissue architecture. The method had been optimized for DNA quantification of identified neurons but could easily be adapted to other tissues. It had been validated against chromogenic in situ hybridization (CISH) with chroSimulate 发表于 2025-3-22 14:28:44
Steven P. Rowe,Yafu Yin,Michael A. Gorins to isolate neuronal nuclei from human brain and identify megabase-scale copy number variants (CNVs) in single nuclei. The approach detailed herein includes use of CellRaft technology for single-nucleus isolation, the PicoPLEX approach to whole-genome amplification and library preparation, and a poSimulate 发表于 2025-3-22 19:23:15
R. Curtis Ellison,Peter F. Cohned to examine the genome at single-cell resolution. Here we describe the recent progress in the development of single-cell whole-genome amplification methods and the state of art for analyzing one of the major forms of genomic variations—copy number of variations (CNVs). Robust detection of CNVs inexclamation 发表于 2025-3-22 22:51:47
G. Schley,W. Hengstebeck,K. D. Bockwn to cause particular neurodegenerative diseases. We developed a dNTP-limited, competitive PCR technique to identify relative copy number differences between a reference and one or more target genes. Suitable fragments with single melting domains, well-separated melting temperatures, and no commonBILK 发表于 2025-3-23 02:48:09
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