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1.
These form the poles of the developing spindle.
星体形成正在发育的纺锤体的两极。
2.
Either end of the spindle formed in a cell during mitosis.
纺锤极细胞在有丝分裂中形成的纺锤体两端的任一端
3.
CDK5RAP2 is Required for Spindle Assembly Checkpoint Function
CDK5RAP2调控纺锤体装配检验点功能研究
4.
Monopolar spindle 1(Mps1)
单极纺锤体蛋白激酶1(Mps1)
5.
chromosomes are distributed by spindles in mitosis and meiosis.
在有丝分裂及减数分裂时染色体沿纺锤体排列。
6.
Study the Function of the Structural Domain of CENP-E Protein on the Spindle Assemble Checkpoint
CENP-E蛋白结构域在纺锤体检查点中的功能研究
7.
Relationship between Expression of BubR1 and Cenp-E Protein of Spindle Checkpoint and Chromosmal Numerical Abnormality in Human Hepatoma Cells;
纺锤体检查点蛋白BubR1和Cenp-E与肝癌细胞染色体数目异常的关系
8.
The plane of cell division is, in turn, determined by the orientation of the mitotic spindle.
细胞分裂的方向又是由有丝分裂的纺锤体所确定。
9.
The Expression of Spindle Checkpoint Genes in Spontaneous Abortions;
自然流产胚胎绒毛组织纺锤体检查点基因表达研究
10.
Study of the Expression of Spindle Checkpoint Protein MAD2 in Carcinogenesis of Epithelial Ovarian Tumors and Its Mechanism;
纺锤体检查点蛋白MAD_2在上皮性卵巢癌发生中的作用及其机制研究
11.
The Preliminary Use of the Observation of Human Oocytes Spindles in the IVF Clinic Center;
人卵母细胞纺锤体的观测在人类辅助生殖领域的初步临床应用
12.
Study of the hsMAD2 Gene Expression on HCC and Its Effects on HepG2 Cell;
纺锤体组装关卡基因hsMAD2在HCC中的表达及其对HepG2作用的研究
13.
Functional Delineation of CLASP1-PRC1 Interaction in Central Spindle Formation
CLASP1与PRC1的相互作用在中心纺锤体微管构架形成中的功能解析
14.
The Effects of Simulated Microgravity on Spindle and MAD2 of the Human Osteosarcoma Cell Line MG-63
模拟微重力效应对MG-63细胞纺锤体结构及MAD2的影响
15.
Effects of Cooling and Centrifugation on the Meiotic Spindle and the Developmental Potential of the Mouse Oocytes
低温和离心对小鼠卵母细胞纺锤体和发育潜能的影响
16.
Effects of cryopreservation on the spindles and developmental potentiality of human oocytes
冷冻保存对人卵母细胞纺锤体及发育潜能的影响
17.
Effects of Cooling and Rewarming on the Meiotic Spindle and the Developmental Potential of the Mouse Oocytes
低温对小鼠卵母细胞纺锤体损伤和发育潜力的影响
18.
The Effects of Different Cryopreservation Methods on Maturation and Meiotic Spindle of Immature Mouse and Human Oocytes;
不同冷冻方法对小鼠及人类未成熟卵母细胞体外成熟及纺锤体的影响