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轴突

与 轴突 相关的网络例句 [注:此内容来源于网络,仅供参考]

Additionally , tau protein takes participate in the development of axon and plays a role in signal transduction.

另外,tau蛋白还参与轴突发育和维持轴突形态相关的信号传导过程。

The axon is much longer than the dendrites and, in fact, some axons are many feet long.

这个轴突比树状突还长,事实上,一些轴突有许多英尺那么长。

The lesion, the changes of activity of cholinesterase and acid phosphatase of motor neurons in lateral nucleus of spinal cord anterior horn, the function of axoplasm transportation and nerve conduction, the regeneration of axons and myelin sheath, and the recovery of sciatic nerve function were examined at 7, 14, 30 and 90 days intervals after operation, using Nissl and enzyme histochemistry staining, electrophysiological technique, hydrogen-peroxide oxidoreductase retrograde trace method, axon image analysis, and measurement of sciatic function index. The spinal cord anterior horn of injury side was compared to the correspondence region of spinal cord.

分别于术后7、14、30和90d应用酶组织化学方法、电生理方法、HRP (hydrogen-peroxide oxidoreductase)逆行示踪方法、轴突图象分析方法以及坐骨神经功能指数(sciatic nerve function index,SFI)测量等方法检测坐骨神经损伤后对应脊髓神经元的存活率、神经元胞体酶系变化、损伤神经在轴浆运输、电传导以及轴突、髓鞘再生等方面的恢复情况,探索外周神经损伤后OECs及几丁质对神经元的保护作用以及对新生神经功能恢复的作用,为外周神经损伤的治疗提供新的理论基础。

4DRG was co-culture with sciatic nerve segment in 10%FBS+DMEM; the axons were longer and surround the sciatic nerve segment which was regard as a new evidence for chemotropism.

4有血清条件下联合培养,观察到神经元的轴突环绕坐骨神经段生长,呈现诱导现象,并且能够促使轴突长度明显增长。

When chondroitinase ABC was given to degradate CSPGs in the developmental nervous system such as the optic chiasm, the projection and destination of growing axons were altered. Also in SCI, ChABC treatment in the injuryed sites can increase regenerating ability of axons and improve spinal cord rehabilitation.

以往对发育阶段的神经系统如视交叉部位给予软骨素酶ABC降解CSPGs后,可观察到生长轴突延伸方向和终止部位的改变;SCI后,受损处给予ChABC处理,轴突再生能力可增加,脊髓功能有所恢复。

The acute reaction of neurons against axon repellents is the collapse of growth cones, while the chronical reaction is the change of axon growth direction when they are cocultured with repellents secreting cells.

神经轴突对神经生长排斥因子的急性反应是生长椎的萎缩;将神经元与分泌排斥因子的细胞共同培养时引起的慢性反应是轴突生长方向的改变网。

The table of contents include 15 parts, early events in neural development; neuronal differentiation; pattern and positional information; movement and migration of neurons; axon outgrowth and the generation of stereotyped nerve patterns; neuronal death during development; trophic effects of targets on neurons; long-term effects of neurons on their targets; formation of synapses; selective synaptic connections; the molecular basis of neuronal recognition; rearrangement of developing neuronal connections; maintenance and modifiability of synapses; the development of behavior; principles of neural development.

内容包括15部分,早期神经发育事件;神经细胞分化;模式与位置信息;神经元运动及迁移;轴突生长与固定的神经模式的形成;发育过程中的神经细胞死亡;对神经细胞靶向的营养效应;神经细胞对它们靶向的长期效应;突触形成;选择突触连结;神经细胞识别的分子基础;发育过程中神经细胞连结的重置;突触保持和改变;行为发育;神经发育原理。

BACKGROUND: Myelination following axonal regeneration is a key factor affecting the recovery of spinal cord injury.

背景:轴突再生后髓鞘化是影响脊髓损伤后恢复的一个关键性因素,而少突胶质细胞存活的多少直接影响轴突再生后髓鞘化。

We initiated a genetic screen for Drosophila olfactory genes by means of SG18.1-Gal4/UAS system: The result validates our screen as an rapid, effective approach for recovering genes controlling glomerular map patterning; From a misexpression screen of 1,515 P{GS} lines, we identified 23 genes that, when forcibly expressed in the olfactory receptor neurons, disrupted the stereotyped anatomy of the Drosophila antennal lobes; These genes, which have not been shown previously to control olfactory map development, encode novel proteins as well as proteins with known roles in axonal outgrowth and cytoskeletal remodeling.

本文首次利用SG18.1-Gal4/UAS基因筛选系统对果蝇嗅觉基因进行了筛选和鉴定:结果表明,所采用的方法可以快速、有效地分离到果蝇嗅觉相关基因;从1515株果蝇P{GS}品系分离到86株突变体,其中40株有明显表型,从中鉴定了23个基因,这些基因在ORN强迫表达时可以损坏果蝇嗅叶的固有结构;在筛选中发现的一些调节嗅觉图谱发育的基因可以编码新蛋白或编码参与轴突生长和细胞骨架重塑的蛋白;为了便于研究,根据基因的功能和所编码蛋白的特点,我们对分离到的基因进行了分类,即参与轴突引导和突触产生、调节转录、调节细胞骨架和功能未确定或未知的基因;并通过对嗅觉感觉器的检测发现,除了调节转录的基因外,其他基因对触觉器的数量和分布影响不明显。

Immunoelectron microscopic examination revealed that mGluR5 was prominently located in some neuronal somata and a lot of dendrites within the superficial layers of the spinal dorsal horn. Some dendrites containing mGluR5 constituted synaptic glomeruli with the terminals exhibiting the morphological characteristics of primary afferent C fiber. The ultrastructural features indicated that mGluR5 in the dorsal horn of the spinal cord may prominently work as a postsynaptical receptor to mediate or modulate the function of glutamate in the primary sensory transmission, including the nociceptive transmission.

免疫电镜研究显示,在脊髓背角浅层内,mGluR5主要定位在部分神经元胞体和大量树突内,并常见部分含mGluR5的树突与具有一级传入C纤维终末形态特征的轴突终末构成突触小球。mGluR5在脊髓背角浅层内的超微定位特征表明,脊髓背角内的mGluR5可能主要作为突触后受体介导或调节谷氨酸传递一级感觉的功能。

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