1) pancreatic B cell
胰腺B细胞
1.
Conclusion 99Tcm-DTPA-NGN2 can be clearly visualized in pancreas in mice,and maybe it\'s promising in imaging pancreatic tumor and in evaluating the function of pancreatic B cell.
目的研究胰腺B细胞显像剂99Tcm-DTPA-NGN2在小鼠体内的分布规律,为99Tcm-DTPA-NGN2用于临床胰腺B细胞显像及胰腺癌的核医学显像做基础。
2) Pancreatic cell
胰腺细胞
1.
Changes of pancreatic cell proliferation in human embryonic development;
人胚胎发育中胰腺细胞的增殖变化
2.
Experimental study on pancreatic cells apoptosis of acute pancreatitis rats induced by local irradiation of microwave therapy apparatus
微波治疗仪局部照射诱导胰腺炎大鼠胰腺细胞凋亡的实验研究
3.
Protection effect of oyster extract against on pancreatic cell injury in mice;
结论牡蛎提取物对四氧嘧啶所致的小鼠胰腺细胞损伤有一定的保护作用。
3) Pancreas cell
胰腺细胞
1.
Methods (1) In vivo experiment,differet dose of GPC was given by mouth to the mice who radiated and not radiated by 60 Co -γ-ray,then proliferation of pancreas cells was measured by MTT assay.
目的 观察葡多酚 (GPC)对正常胰腺细胞和受损伤胰腺细胞增殖活性的影响。
4) islet A cell
胰腺A细胞
1.
Objective To study the changes of cholinergic neurons in the model rats with islet A cell injured.
目的 探讨选择性破坏胰腺A细胞的模型大鼠胆碱能神经的变化。
5) pancreatic B cells
胰岛B细胞
1.
Effects of Low Dose Lacl_3 on the Pancreatic B Cells of Experimental Diabetic Rats;
稀土三氯化镧对糖尿病大鼠胰岛B细胞的影响
2.
Objective:To investigate the protection and plerosis effects of the low dose LaCl3 on the pancreatic B cells of experimental DM rats.
目的:观察不同剂量的三氯化镧(LaCl3)对糖尿病大鼠胰岛B细胞凋亡的作用。
6) Pancreas islet B cell
胰岛B细胞
1.
Methods: by the mouse of experimental diabetes induced by alloxan, by the investigated of colorimetric method,it was measured the blood sugar ,and by the immun-ohistochemistry and transmission electron microscope(TEM),it was observed pancreas islet B cell,and by the histochemistry,it was observed hepatic glycogen.
方法:采用四氧嘧啶制备实验性糖尿病小鼠模型,以比色分析法测定血糖并通过免疫组织化学和透射电镜观察胰岛B细胞以及通过组织化学观察肝糖原。
补充资料:胰腺
胰腺
pancreas
胰腺位于上腹部腹膜后,呈长条状,长13~18cm,宽3~5cm,厚1.5~2.5cm,横过第1、2腰椎前方,其上界可达第12胸椎中1/3,下界抵第2~3腰椎椎间盘水平。除包围在十二指肠框内的头部较扁平外,余各部断面大体呈三棱形。胰腺是兼有内分泌和外分泌功能的器官。胰腺的外分泌物称为胰液,由胰腺的腺泡细胞和小的导管管壁细胞所分泌,含有多种重要的消化酶及水、电解质等物质。胰腺的内分泌物主要有胰岛素、胰高血糖素、胃泌素及生长抑素等,与机体内的营养代谢及调节有关。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条