小天使
发表于 2025-3-21 17:14:44
书目名称Odontogenesis影响因子(影响力)<br> http://impactfactor.cn/2024/if/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis影响因子(影响力)学科排名<br> http://impactfactor.cn/2024/ifr/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis网络公开度<br> http://impactfactor.cn/2024/at/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis网络公开度学科排名<br> http://impactfactor.cn/2024/atr/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis被引频次<br> http://impactfactor.cn/2024/tc/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis被引频次学科排名<br> http://impactfactor.cn/2024/tcr/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis年度引用<br> http://impactfactor.cn/2024/ii/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis年度引用学科排名<br> http://impactfactor.cn/2024/iir/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis读者反馈<br> http://impactfactor.cn/2024/5y/?ISSN=BK0700602<br><br> <br><br>书目名称Odontogenesis读者反馈学科排名<br> http://impactfactor.cn/2024/5yr/?ISSN=BK0700602<br><br> <br><br>
信任
发表于 2025-3-21 21:26:15
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overwrought
发表于 2025-3-22 03:41:20
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Fresco
发表于 2025-3-22 07:06:51
https://doi.org/10.1007/978-1-4939-9012-2epithelial cells; mesenchymal cells; dentin; knock-out mouse lines; Dentistry
贞洁
发表于 2025-3-22 09:27:36
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万灵丹
发表于 2025-3-22 13:58:31
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单调女
发表于 2025-3-22 18:35:29
In Situ Hybridization on Mouse Paraffin Sections Using DIG-Labeled RNA Probesroach can visualize the expression pattern of a gene of interest in a portion of tissues. Here, we detail an optimized method for performing in situ hybridization on mouse paraffin sections using digoxigenin (DIG)-labeled RNA probes.
多节
发表于 2025-3-23 00:49:44
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Basal-Ganglia
发表于 2025-3-23 04:23:56
1064-3745 ation advice from the experts.This volume provides methods and approaches to study genetic and environmental regulatory controls on odontogenesis. Chapters guide readers through protocols for isolation and characterization of both epithelial and mesenchymal dental cells, methods on isolation, phenot
粗俗人
发表于 2025-3-23 07:03:08
Establishment of an Immortalized Mouse Bmp2 Knockout Dental Papilla Mesenchymal Cell Line mesenchymal cells is critical for studying the underlying mechanism of Bmp2 signal in odontogenesis. Here we describe the generation of an immortalized deleted Bmp2 dental papilla mesenchymal (iBmp2.-dp) cell line by introducing Cre fluorescent protein (GFP) into the immortalized mouse floxed Bmp2 dental papilla mesenchymal (iBmp2.-dp) cells.