• TJP2 发育过程至关重要,因为沉默抑制小鼠胚胎中的胚泡形成

    TJP2 is crucial during development as silencing inhibits blastocele formation in mouse embryos.

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  • 小鼠胚胎发育,胎脑中波浪式信号作用就是把神经系统连接起来,以便相邻映射相邻的身体部位

    Such wave signaling in mice brains plays a role in wiring the nervous system during development so that adjacent brain regions correspond to adjacent body parts.

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  • 除了研究利用基因调控网络中的小鼠胚胎干细胞优势外,深入研究必须更加直接地集中于人类干细胞

    Despite the advantages of using mouse es cells in the study of gene regulatory networks, further research must focus more directly on human stem cells.

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  • 研究人员虽然身体任何器官系统发育过程最终都会发生同样过程,但这个研究小鼠胚胎脊髓进行的。

    The studies were done in embryonic spinal cord in mice, although the same process ultimately takes place during development of any organ or bodily system, the researchers said.

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  • 系列研究开始同事小鼠胚胎dnaSENP2发现胚胎大约10死亡

    This line of research started when Yeh and colleagues knocked SENP2 out of mouse DNA and found that the embryos died at about day 10.

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  • GJB2基因敲除小鼠胚胎致死

    GJB2 gene knockout mice led to death during embryonic period.

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  • 比较小鼠早期胚胎小鼠es培养系统生长发育特征

    The growth and developmental behaviors between rabbit and mice embryos was compared in ES culture system.

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  • 首次DEPMPO小鼠早期胚胎捕捉到了羟基自由基

    Hydroxyl radical was trapped by DEPMPO in embryos for the first time.

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  • 胚胎经过储存小鼠46个月开始出现行为方面异常

    The mice whose embryos had been stored began to show behavioural abnormalities at four to six months.

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  • 已经证实PGES小鼠胚胎着床膜化过程,以及排卵过程中起很重要的作用。

    PGES has been proved to be important for mouse implantation and decidualization, and for ovulation in bovine.

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  • 目的观察上皮型钙粘蛋白小鼠胚胎干细胞体外分化过程中的动态表达及其细胞黏附状态的关系。

    OBJECTIVE: To observe the dynamic expression of E-cadherin in embryonic stem cell differentiation and the effect on cell adhesion.

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  • 我们提供了一个完整方法确定遗传机制控制小鼠胚胎干细胞自我更新

    We present an integrated approach to identify genetic mechanisms that control self-renewal in mouse embryonic stem cells.

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  • 日本队化学物质有助于形成早期视网膜视神经小鼠胚胎细胞杯子

    Japanese team floated cells from mouse embryos in a dish of chemicals that helped form optic cups with early stage retinas.

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  • 目的探讨瘦素体外小鼠着床前胚胎发育影响

    Objective To investigate the effects of leptin on development of mouse preimplantation embryos in vitro.

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  • 研究低氧诱导因子- 1 (HIF - 1)小鼠胚胎神经胚形成阶段时空表达规律,探讨HIF - 1胚胎神经系统发生发育过程中的作用

    To investigate the spatiotemporal expression of hypoxia-inducible factor-1 (HIF-1) during murine neurulation and explore the role of HIF-1 in the embryonic development of the nervous system.

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  • 纯合子突变小鼠各个胚胎时期预期中的出现比例大小型态上没有明显缺陷

    Homozygous mutant mice showed expected ratio and no obvious defect in sizes and morphologies at all embryonic stages examined.

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  • 这里我们提出动态系统以下一个明确的摄动水平细胞小鼠胚胎干细胞命运变化研究

    Here we present a dynamic systems-level study of cell fate change in murine ESCs following a well-defined perturbation.

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  • 目的本实验室建立小鼠胚胎纤维细胞培养方法此基础上培养细胞检测氯化甲醛外来化合物的细胞毒性反应

    Objectives: To set up the methods of mouse embryo fibroblasts culture in vitro and to evaluate the toxicity of xenobiotics such as chloride cadmium and formaldehyde by using these methods.

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  • 但是小鼠母细胞体外成熟过程中,应激对卵母细胞以及随后孤雌胚胎发育能力研究较少。

    But there is little information available on in vitro parthenogenetic development of mouse oocytes that were exposed to heat stress during in vitro maturation.

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  • 电厂下风侧居民区内收集大气悬浮微粒,二氯甲烷提取浓缩制成受试物,给孕鼠腹腔注射不同剂量,观察对小鼠胚胎及胎仔发育的影响。

    Fallout particulates from ambient air were collected in an leeward residential area of a power plant. Then, were extracted with dichloromethane, concentrated and redisolved in olive oil.

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  • 该文重点比较体细胞胚胎干细胞细胞周期调控方面差异近年来有关小鼠胚胎干细胞细胞周期调控的研究进展进行介绍。

    This review will emphasize on the difference in cell cycle regulation in somatic cells versus ESCs, and update our understandings for regulation of cell cycle in mouse and human ESCs.

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  • 小鼠造血血管系统起源于胚外中胚层胚胎期6.5-7天时卵黄形成特征性血岛结构发生造血和内皮细胞的分化。

    The hematopoietic and vascular systems of the mouse arise from extraembryonic mesoderm that migrate through primitive streak to the presumptive yolk sac between days 6.5 and 7.0 of gestation.

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  • 小鼠造血血管系统起源于胚外中胚层胚胎期6.5-7天时卵黄形成特征性血岛结构发生造血和内皮细胞的分化。

    The hematopoietic and vascular systems of the mouse arise from extraembryonic mesoderm that migrate through primitive streak to the presumptive yolk sac between days 6.5 and 7.0 of gestation.

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