Three-dimensional microCT imaging of mouse heart development from early post-implantation to late fetal stages.

Three-dimensional microCT imaging of mouse heart development from early post-implantation to late fetal stages.
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DOI:
10.1007/s00335-022-09976-7
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发表时间:
2023-06
期刊:
影响因子:
2.5
通讯作者:
Hsu, Chih-Wei
Hsu, Chih-Wei
中科院分区:
生物学4区
文献类型:
--
作者:
Li-Villarreal, Nanbing;Rasmussen, Tara L.;Christiansen, Audrey E.;Dickinson, Mary E.;Hsu, Chih-Wei

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由于开发这些模型所涉及的个体重点,对新的鼠标模型的全面、详细的描述可能是具有挑战性的。通常,模型是为了在有限数量的组织、阶段和/或其他环境中测试特定假设而设计的。无论模型是否产生所需的表型,超出所需背景的表型都可能是非常密集的工作,而且这些研究通常不会进行。然而,由更广泛的表型分析产生的一般信息对更广泛的科学界来说可能是无价的。国际鼠标表型鉴定联盟(IMPC)及其子公司,如Knokout Mouse Project(KOMP),在简化这一过程方面取得了长足的进步。特别是,MicroCT的使用在检查整个胎儿/发育阶段的内部器官系统方面一直是一种宝贵的资源。在这里,我们提供了几个新的小插曲,展示了MicroCT在揭示基于人类疾病相关性和那些不可预测的心脏表型方面的应用。
Comprehensive detailed characterization of new mouse models can be challenging due to the individual focus involved in developing these models. Often models are engineered to test a specific hypothesis in a limited number of tissues, stages, and/or other contexts. Whether or not the model produces the desired phenotypes, phenotyping beyond the desired context can be extremely work intensive and these studies are often not undertaken. However, the general information resulting from broader phenotyping can be invaluable to the wider scientific community. The International Mouse Phenotyping Consortium (IMPC) and its subsidiaries, like the Knockout Mouse Project (KOMP), has made great strides in streamlining this process. In particular, the use of microCT has been an invaluable resource in examining internal organ systems throughout fetal/developmental stages. Here, we provide several novel vignettes demonstrating the utility of microCT in uncovering cardiac phenotypes both based on human disease correlations and those that are unpredicted.
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