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Between P14 and P21,CIAPIN1 immunoreaction in the brain,heart and liverbecame much lower. However,between P21 and P28,CIAPIN1 immunoreactionin the heart,brain,liver and skeletal muscle became much lower,while with thekidney development,CIAPIN1 immunoreaction in the kidney became higher. Invarious tissues from adult mouse,CIAPIN1 immunoreaction could be seen incardiac muscle cell,brain,hepatocyte,epithelium of renal tubule,skeletal muscle,lung tissue,gastric mucosa and gland,acinus lienalis.2. Distribution of CIAPIN1 in normal fetal and adult human tissuesTo reveal the possible physiological role of CIAPIN1,we examined theexpression and distribution of CIAPIN1 in fetal and adult human tissues usingimmunohistochemistry. We found that CIAPIN1 was ubiquitously distributed infetal and adult tissues,and was localized in both the cytoplasm and the nucleus.

然而,在3个月大的成年鼠中,CIAPIN1阳性反应物在心、脑、肝和肾小管中的表达强度要低于P28小鼠;但CIAPIN1阳性反应物在成年鼠骨骼肌中较P28小鼠高。2、CIAPIN1蛋白在人5个月胚胎及成人多器官组织内的表达在人5月胚胎多器官组织中,CIAPIN1阳性反应物见于心脏、胆囊单层柱状上皮和粘膜、结肠粘膜、小肠粘膜和绒毛、肝脏、直肠腺体、胃粘膜、肾上腺束状带、甲状腺滤泡、脾索、胸腺小叶间隔、皮肤真皮层和汗腺、睾丸白膜和间质、脑组织内神经元和神经胶质、肺小支气管和肺泡、骨骼肌、肾脏皮髓质和肾小管、子宫内膜、胰腺腺泡和胰岛、卵巢、输卵管粘膜等绝大多数组织细胞。

This paper proposes a novel growing neural-gas self-organizing algorithm to identify chaotic systems by imitating biological group population growing process.

在自组织神经网络基础上,根据生物群落自然增长的机制,提出了一种新的生长型神经气的自组织算法,用于混沌系统的自组织辨识。

Some of the laryngeal MFH were difficult to be differentiated from carcinosarcoma, pleomorphic rhabdomyosarcoma , myxoid liposarcoma ,malignant neurilemmoma and myxoma without immunohistochemical aids .

喉恶性纤维组织细胞瘤常规组织学与癌肉瘤、多形性横纹肌肉瘤、粘液型脂肪肉瘤、恶性神经鞘瘤、粘液瘤有时易混淆,免疫组织化学有助于明确诊断。

Bone marrow mesenchymal stem cells could differentiate into osteoblasts, adipocytes and neural like cells with osteoblast inductor (β-sodium glycerophosphate, dexamethasone, vitamin C), lipoblast inductor (dexamethasone, 3-isobutyl-1-methylxanthine, bovine insulin, indometacin) and serum-free medium inductor (dimethyl sulphoxide, butylated hydroxyanisole) respectively. Osteoblast marker (alkaline phosphatase, osteocalcin mRNA, calcium node), adipocyte marker (lipid droplet, PPAR γ-2mRNA) and neural cell-like marker (nissl body, neuron specific enolase, neurofilament protein) were respectively determined by the immunohistochemical method, polymerase chain reaction and immunocytochemical method.

分别采用成骨细胞诱导剂(β-甘油磷酸钠,地塞米松,维生素C)、成脂肪细胞诱导液(地塞米松,甲基异丁酸黄嘌呤,牛胰岛素,吲哚美辛)及二甲基亚砜和羟基丁酸苯甲醚无血清培养基诱导剂干预细胞向成骨、脂肪、神经细胞分化,经免疫组织化学染色、PCR、免疫细胞染色方法检测成骨标志物(碱性磷酸酶、骨钙素mRNA、钙结节)、脂肪标志物(脂滴、PPARγ-2mRNA)、以及类神经标志物(尼克氏体、神经烯醇化酶、神经丝蛋白)。

Electrophysciological indexes: in the experimental group ,the tardy rate of induced motorius action potential ,recovery rates of the amplitude of compound muscle action potential and twitch tension and tetanic tension of triceps surae muscle ,were significantly higher than in the control group.(4) Compared with the control group ,the triceps surae muscle wet weight was significantly greater in the experimental group.(5) histomorphological indexes: the count of myelinated nerve fibers ,diameter of regenerated axon,thickness of nerve myelin sheath and area of capillary were much more in the experimental group than in the control group.(6) observation of ultrastructure with the transmission election microscope: more abundant organella and maturer myelin sheath lay in the injured peripheral nerve of the experimental group, while not lay in the control group.

分别在术后第2、4、6周时进行各项指标的检测,结果发现:(1)实验组SD大鼠在整个实验过程中,其精神、毛发、体重,运动灵活性等一般情况优于对照组;(2)实验组的坐骨神经功能指数恢复率显著优于对照组,P<0.01;(3)神经电生理指标:实验组运动神经诱发电位潜伏期的延迟率显著优于对照组,P<0.05;复合肌肉动作电位振幅的恢复率显著高于对照组,两组比较第2周时P<0.01,第4、6周时,P<0.05;小腿三头肌单收缩力和强直收缩力的恢复率实验组显著高于对照组,P<0.01;(4)小腿三头肌湿重的恢复率,第2、4周时实验组高于对照组,差异非常显著,P<0.01;第6周时,差异仍显著,P<0.05;(5)组织形态学指标:有髓神经轴突计数、再生轴突直径的恢复率,毛细血管面积,实验组均显著大于对照组,P<0.01、P<0.05、P<0.001;实验组髓鞘厚度的恢复率也显著高于对照组,第2周时P<0.01,第4、6周时,P<0.05;(6)透射电镜超微结构观察:实验组再生轴突中细胞器丰富,髓鞘结构成熟,神经再生情况优于对照组。

The osteofibrous apertures,osteofibrous canal and the tendious decussating fibers of the nuchal muscles passed through by the greater occipital nerve are the anatomic basis of the greater occipital nerve compression syndrome.

枕大神经穿行的骨性纤维孔、纤维管道及项部肌群的腱性交叉纤维对神经的固定作用,是颈部运动或组织劳损时造成枕大神经卡压的解剖学基础。

The osteofibrous apertures,osteofibrous canal and the tendious decussating fibers of the nuchal muscles passed through by the greater occipital nerve are the anatomic basis of the greater occipital nerve compression syndrome.

枕大神经穿行的骨性纤维孔、纤维管道及项部肌群的腱性交叉纤维对神经的固定作用,是颈部运动或组织劳损时造成枕大神经卡压的解剖学基础。中国诺宇综合网http://www.siaaa.com

Instead of nerve autografts, tissue-engineered nerve grafts are being used in laboratory for the treatment of peripheral nerve deficits.

组织工程化的有生物活性的神经替代物称为&人工神经&,当前正被尝试用来替代来源有限的自体神经移植修复周围神经缺损。

Methods: Neuroepithelial stem cells derived from the embryonic neural tube of GFP transgenic mice were cultured and depurated in free serum medium containing B27, bFGF and EGF, and then they were directionally transplanted into the striatum of rats.

将GFP转基因鼠的胚胎神经上皮干细胞置于无血清培养基内纯化扩增,用巢蛋白免疫组织化学染色鉴定神经干细胞,将扩增后的含GFP基因的神经干细胞在立体定位仪下,定向移植到大鼠的纹状体内。

Gelatin microsphere is firstly made by encapsulating bFGF into gelatin by special manufacture process, then this microsphere was combinated into PLGA conduit or PLGA film.when used, we need only pack the injury peripheral nerve, injury spinal cord, wounded pars encephalic with the PLGA conduit. The conduit or film can slowly release buff which would be absorbed by around tissues.bFGF was already proved to be nutritious to the regeneration and alive of neuron and protect injury neuron.bFGF can also promote morphogenesia and division of nerve cell which would raise the survival rate of neuron, guide the generation of axon etc.bFGF is one of the important factors of sustaining the normal survival of cholinergic nerve.

使用时,只需将此材料贴敷外周损伤神经伤患处,脊髓伤口,或在脑部开颅手术后填充于术后创面,可有效地在伤口局部缓慢地释放并由机体组织吸收bFGF等神经营养因子。bFGF等已被证明具有神经营养作用,可促进神经元的再生与存活,保护受损的神经元。bFGF等对神经细胞兼有促进形态发生与分裂作用,具有提高神经元的成活率、诱导轴突向外生长等功能,是维持前脑基底部胆碱能神经元正常生存的重要因素。

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The split between the two groups can hardly be papered over.

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