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hematopoiesis相关的网络例句

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与 hematopoiesis 相关的网络例句 [注:此内容来源于网络,仅供参考]

It is with printing and section contrast, 124 smear have nuclear cell to decrease in, 58.9% decrease with the 66.1% positive that it is a holiday, common by accident for; of bring down of aplastic anemia, hematopoiesis printing and section cell quantity increase examine disease in, smear still has 26% decrease with the 36% negative that it is a holiday, common disease or conclusion are grow in quantity of red blood cell of lienal function hyperfunction, true sex disease, special the; such as disease of grow in quantity of the plaque that send a gender printing and section cell bring down person in, smear is accorded with rate (91.2% with 97.9%), and in the person that smear cell increases, printing and section are accorded with rate (95% with 100%) all tall.

以印片和切片为对照,124例涂片有核细胞减少中,58.9%和66.1%为假阳性减少,常见误诊疾病为再生障碍性贫血、造血减低;而印片和切片细胞量增加中,涂片仍有26%和36%为假阴性减少,常见疾病或结论为脾功能亢进、真性红细胞增多症、特发性血小板增多症等;印片和切片细胞减低者中,涂片符合率(91.2%和97.9%),以及涂片细胞增加者中,印片和切片符合率(95%和100%)均高。

It publishes original research reports, reviews in the following areas: cell cycle regulation, cytokines, erythropoiesis, gene therapy, general hematopoiesis, granulopoiesis, hematological malignancies, immunobiology, immunotherapy, lymphopoiesis, megakaryocytopoiesis, microenvironment, monocyte development, molecular genetics, signal transduction, stem cell biology, and experimental as well as clinical stem cell transplantation.

该杂志刊载细胞周期调控、细胞因子、红细胞生成、基因疗法、全身血细胞生成、粒细胞生成、血液肿瘤、免疫生物、免疫疗法、淋巴细胞生成、巨核细胞生成、微环境、单细胞生成、分子遗传学、信号传导、干细胞生物学、实验与临床干细胞移植方面的原始论文及综述等。

Therefore, in order to find out the most important bioactivity of Hoshouwu, the present research chooses cell regeneration and immunomodulation as platforms for validation. The bone marrow cavity consists of two rapidly regenerating systems: hematopoiesis and bone remodeling process.

骨髓是人体持续进行细胞再生作用最活跃的区域之一,本论文分别以体外细胞培养及动物实验方式测试何首乌成分对骨髓中具有细胞再生功能的两大族群:造血干细胞和基质细胞的相关影响。

PartⅠTheoretical Research MSCs is stem cells capable of multi-directional differentiation arising from mesoblast, which principally lies in stroma of connective tissues and organs, especially abundant in marrow, even divorted from fetal umbilic blood, differentiates into osteocytes, chondrocytes, tendon cells, myoctes, nerve cells, adipose cells and hematopoiesis stromal cells and so on.

理论研究间充质干细胞(mesenchymal stem cells,MSCs)是中胚层来源的具有多向分化能力的干细胞,主要存在于全身结缔组织和器官间质中,以骨髓组织中含量最为丰富,胎儿脐血中亦可分离得到。

Bone marrow mesenchymal stem cells are multipotential progenitors of connective tissues and bone marrow stroma as well, which implies the modulatory function of MSCs in hematopoiesis.

体内的稳态造血依赖于复杂而完整的骨髓造血微环境系统,其中的细胞成分是该系统的关键。

By retrovirus vector the foreign mdr1 gene could be efficiently transferred into bone marrow mononuclear cells of mouse in vitro, and it was confirmed that mdr1 gene was expressing stably and effectively in cells; in short terms there is no significant influence on the bone marrow MNC by transfection of mdr1 gene,but in the long run(in our study we had surveyed 2 months),there is a decline in the expression of apoptosis factor Bax in the MNC which transfected by mdr1 gene,in favour of the recovery of the receptor mouse;on the other hand it also poses a blance problem between multiplication and apoptosis in the process of receptor hematopoiesis after transplanting HSC which was transfected with mdr1 gene.

通过逆转录病毒载体可在体外将外源性mdr1基因转入小鼠骨髓单个核细胞中,转染的mdr1基因能整合到骨髓单个核细胞基因组中并有功能性表达;mdr1基因转入小鼠骨髓单个核细胞在移植后短期内对受体造血细胞没有显著影响,但从长期看来(本研究观察2个月)转染了mdr1基因的造血干细胞的凋亡因子Bax表达降低,更有利于受体鼠造血的恢复;另一个方面它也同时提出一个问题,即mdr1基因转染造血干细胞在回输受体后造血过程的增殖凋亡平衡。

Objective To study the role of placenta on fetal hematopoiesis during embryo ontogeny, so as to find a new source of hematopoietic stem/progenitor cells for clinical transplantation.

目的 探讨胎盘在整个胎儿时期造血中的作用,寻找造血干/祖细胞的新来源,供临床移植应用。

The many dark clusters of cells in the hepatic parenchyma are islands of extramedullary hematopoiesis typical for fetal liver.

在肝实质有许多细胞密集排列成簇,这些细胞是髓外具有造血能力的肝细胞岛。

The Collaborative Program in Developmental Biology is primarily dedicated to research and education in Developmental Biology including amphibian gastrulation, molecular control of hematopoiesis, lymphocyte lineage commitment and cell development, hematopoietic stem cells, lymphocyte development, cell enlargement and cell differentiation, vertebrate embryogenesis, developmental neurobiology.

动物学系发育生物学合作研究组主要致力于两栖动力原肠胚形成,造血作用的分子控制,淋巴细胞血统定型和细胞发育,造血干细胞,淋巴细胞发育,细胞生长和细胞分化,脊椎动物胚形成,发育神经生物学等。

The Collaborative Program in Developmental Biology is primarily dedicated to research and education in Developmental Biology including amphibian gastrulation, molecular control of hematopoiesis, lymphocyte lineage commitment and cell development, hematopoietic stem cells, lymphocyte development, cell enlargement and cell differentiation, vertebrate embryogenesis, developmental neurobiology.

动物学系发育生物学合作研究组主要致力于两栖动力原肠胚形成,造血作用的分子控制,淋巴细胞血统定型和细胞发育,造血干细胞,淋巴细胞发育,细胞生长和细胞分化,脊椎动物胚形成,发育???经生物学等。

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