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regenerate nerve
相关语句
  再生神经
     EXPERIMENTAL STUDY ON NGF FOR THE PROMOTION OF THE REGENERATE NERVE FUNCTION RECOVERY
     NGF促再生神经功能恢复的实验研究
短句来源
     Conclusion Electrophysiology and CB-HRP retrograde trace test demonstrate that NGF can promote the regenerate nerve function recovery.
     结论 通过电生理及 CB-HRP逆行追踪证实 ,NGF有促进再生神经功能恢复的作用
短句来源
     Objective To evaluate the effect of NGF in promoting the regenerate nerve function recovery.
     目的 运用电生理、类霍乱毒 -辣根过氧化物酶 (CB-HRP)逆行追踪的方法 ,研究神经生长因子 (nerve growth factorNGF)对再生神经功能恢复的影响。
短句来源
     Conclusion The regenerate nerve repaired the gap,nerve continuity obtained restoration,and had a satisfactory axonal transport function.
     结论再生神经修复了缺损,恢复了神经干的连续性,再生神经具有良好的物质运输功能。
短句来源
  “regenerate nerve”译为未确定词的双语例句
     Conclusion Somatic motor axons(L4VR)can regenerate into peripheral autonomic and somatic motor nerve fibers. Some of regenerate nerve fibers directly terminated EUS,and others terminated the MPG. Postganglionic neurons that project to the bladder were distributed in the MPG;
     结论 躯体运动神经 (L4VR)可以再生替代内脏传出和躯体运动混合神经 ,再生的神经纤维部分直接支配EUS ,部分终止于MPG ,在MPG内换元 ,由节后神经元支配膀胱 ;
短句来源
     Nerve trichrome stain showed grafting segment was concentrated mainly by regenerate nerve fiber,which assemble mass regenerate units.
     神经三色染色显示,桥接段再生神经纤维密集,形成大量的再生单位。
短句来源
     Objective Used Fluoro-Gold to evaluate the axonal transport function of the regenerate nerve after a tissue-engineered nerve of auto bone mesenchymal stem cells bridged to repair longer dog sciatic nerve gap.
     目的采用荧光金逆行示踪方法来评价自体骨髓间充质干细胞组织工程化神经修复狗坐骨神经缺损,再生神经的物质运输功能。
短句来源
  相似匹配句对
     Objective:To observe whether the sensory nerve can regenerate.
     目的 :通过动物实验 ,观察无神经支配的皮瓣移植术后感觉神经有无再生及其再生规律。
短句来源
     The blood vessels regenerate more earlier than the nerve fibers.
     移植脾组织血管再生早于神经再生
短句来源
     Nes-B in nerve;
     神经为Nes—B;
短句来源
     FACIAL NERVE GRAFTING
     面神经移植——附4例报告
短句来源
     THE REGENERATE TECHNOLOGY FOR GANGUE PIPE
     尾矿管道再生技术
短句来源
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The repair process of the iibial fascicle of the rabbit sciatic nerve which had been transected and sutured or simply crushed was studied by means of light and . electron microscopy.It was found that the perineurium was able to heal after the nerve had been transected and sutured through the formation of a new epineurium-perineurium tube which contained many minute fascicles of regenerated nerve fibers. The newlyformed epineurium-perineurium tubs rejoined ths two stumps of the transected epineurium...

The repair process of the iibial fascicle of the rabbit sciatic nerve which had been transected and sutured or simply crushed was studied by means of light and . electron microscopy.It was found that the perineurium was able to heal after the nerve had been transected and sutured through the formation of a new epineurium-perineurium tube which contained many minute fascicles of regenerated nerve fibers. The newlyformed epineurium-perineurium tubs rejoined ths two stumps of the transected epineurium theath perineurium tube. The healing process of the nerve fascicle after crushing was similar to that after transection and suturing.From the transection and suturing of the nerve to the formation of the new epineurium-perineurium tubs the sequence of pathological events occurring in the epineurium and perineurium could be divided into 3 stages, the first stage of trau-matic inflammation, degeneration and necrosis of the perineurium, the second stage of perineurial cell proliferation, and the regeneration nerve fiber growth into the pre-perineurium mass and the third stage of the formation of new small nerve fascicles.The formation of the new epineurium-perineurium tube is of vital importance to nerve regeneration, it can prevent the nerve fibers from growing astray and guide them to the distal perineurium tube. The pro-perineurial cells might originate from the proliferation of the perineurial cells, themselves.The normal histological and ultrastructural morphology of the rab bit sciatic nerve was described. The nuclei of the perineurial cells have the tendency to form palisades. It seems that this may explain the palisading of the nuclei of neurofibr-oma cells.

家兔坐骨神经胫神经束横断吻合和单纯挤压损伤后光、电镜对照观察,发现束膜损伤后能够修复,其方式是形成一含有许多神经小束的新外膜-束膜管,从而实现两断端束膜的再连接。神经切断缝合后至新外膜-束膜管的形成,外膜、束膜的变化可分为三期,即创伤性炎性反应,束膜变性坏死期,前束膜细胞增殖、神经纤维长入期与再生神经小束形成期。新外膜-束膜管的形成对神经的再生具有重要意义,能阻止新生的神经纤维向外生长并诱导其长入远端束膜管。作者考虑,再生束膜细胞可能来自束膜细胞本身的增殖。本文还描述了兔坐骨神经束膜的正常组织学和超微结构态形,束膜细胞核有作栅状排列的倾向,似可解释神经纤维瘤细胞每作栅状排列的现象。

In the present study,we have further investigated the long-term morphologicalchanges of the skeletal muscle bridge in rats based on the observations on short-term muscle bridge.The results showed that the muscular fibers in the bridge were further disorganized and most of them were replaced by the regenerating nervefibers.Most of the regenerating nerve fibers were well myelinated and showed no-rmal histochemical activities.The gastrocnemius muscle could be made to contractby stimulating the proximal part...

In the present study,we have further investigated the long-term morphologicalchanges of the skeletal muscle bridge in rats based on the observations on short-term muscle bridge.The results showed that the muscular fibers in the bridge were further disorganized and most of them were replaced by the regenerating nervefibers.Most of the regenerating nerve fibers were well myelinated and showed no-rmal histochemical activities.The gastrocnemius muscle could be made to contractby stimulating the proximal part of the muscle bridge.All these further suggestthat skeletal muscle bridge could serve as a graft for the repairing of peripheralnerve injuries.

本文用大白鼠为实验模型,在用肌桥修复神经缺损近期形态学变化的基础上,进一步对术后6个月的肌桥作了观察。结果表明:肌桥中的肌纤维进一步退化、萎缩,为神经纤维所代替;再生神经纤维生长良好,部分有无完整髓鞘,呈成熟状态,组化染色已能恢复至正常;腓肠肌刺激有收缩反应,运动终板清晰可见。进一步提示:肌桥作为移植体用于修复周围神经缺损,远期疗效良好。

Fast or slow axoplasmic transport (FAT or SAT) returned three days after crushing rat sciatic nerve. On 14th day the transport distance of labeled protein in regenerating nerve was similar to its control and similar also to the regenerating nerves crushed 21-98 days before, so the transport recovered since the day 14. The regenerating rate was 1.77±0.14 mm/d by FAT, 1.96 ± 0.06 mm/d by SAT, both about 7 times than the normal growing rate of intact nerves. Some kinds of transport...

Fast or slow axoplasmic transport (FAT or SAT) returned three days after crushing rat sciatic nerve. On 14th day the transport distance of labeled protein in regenerating nerve was similar to its control and similar also to the regenerating nerves crushed 21-98 days before, so the transport recovered since the day 14. The regenerating rate was 1.77±0.14 mm/d by FAT, 1.96 ± 0.06 mm/d by SAT, both about 7 times than the normal growing rate of intact nerves. Some kinds of transport waves wcre found during the course of SAT and the transport rate of wave Wl in regenerating nerves was one time larger than that in control nerves, so Wl would contain some components transporting more quickely for regenerating requirement. The components would be determined in further work.

夹伤坐骨神经阻断标记蛋白在轴浆中的快、慢转运。3天后转运再现。第14天的转运距离与对照相似,说明再生神经的转运动能基本恢复。用快、慢转运测出的14天平均再生速度分别为1.77±0.14与1.96±0.07mm/d,比对照神经的正常生长速度快6.3—7倍,提示再生需要更多的转运物质。进一步发现再生神经中某些标记蛋白(慢转运波W1)的转运速度为10.25±0.66mm/d,约比对照快1倍,因此这些标记蛋白可能包含适应再生需要而加速转运的结构和功能物质。

 
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