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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。

It is related to the variational inequality problem, bilinear programming, nonlinear equation. So there is actual meaning and theories value to study how to solve it.In recent years, many algorithms for solving the generalized linear complementarity problem are put forward. But they basically belong to the traditional iterative methods, and may not be efficient since the computing time required for a solution is greatly dependent on the dimension, structure of the problem and the complexity of the algorithm used. Different from the traditional algorithms, the neural network has many advantages on calculations and real-time applications for its inherent massive parallelism and electric circuit implementation.

近年来,人们对广义线性互补问题提出了许多算法,但这些方法基本上属于传统的迭代法,由于它们的计算时间极大地依赖于问题的规模、维数以及所使用的算法,因此很难满足实时并行的要求,与传统数值方法不同,由于内在的并行分布处理信息的特点及电路实现的潜能,神经网络有着许多计算上的优势和实时性的应用,自Hopfield提出著名的人工神经网络模型-Hopfield神经网络,并将其成功应用于优化问题后,用神经网络求解优化问题得到了相当深入的研究,并取得了许多重要的成果。

The possibility was discussed that the conventional mechanic carding machine was modified with a computer automatic controlling system based on the artificial neural network.

探讨了利用人工神经网络进行粗梳毛纺毛条质量控制的原理及方法,探讨了用基于人工神经网络的计算机自动控制系统改造传统机械式梳毛机的可能性,通过比较基于人工神经网络的计算机自动控制系统与一般自动控制系统提出了基于人工神经网络的计算机自动控制系统,经对实测数据验算,控制精度十分理想。

Moreover, with its help people can also evaluate the fault-tolerant performance of ANN. In this paper, Chebyshev Inequality method, as a kind of evaluating thought, was firstly concerned in the faulttolerance analysis of ANN; 4. The variation of faulty behaviors of ANNs during the course of learning was studied by taking the discrete Hopfield neural network and Hebb learning algorithm as examples.

这种方法首次将切比雪夫不等式引入人工神经网络容错性分析当中,从而提出了对人工神经网络容错性分析采用估算的思想; 4 以离散型Hopfield神经网络和Hebb学习算法为例,着重研究了在学习过程中人工神经网络故障性能的变化。

Results:The following were observed and measured:the location where the genitofemoral nerve coming out from the psoas major,the plane of the location the highest plane of the iliac crest,common iliac vessels branch plane,the distance between the ureter and the lateral part of the psoas major,the distance between the genitofemoral nerve and the lateral part of the psoas major,the distance between the genitofemoral nerve and the ureter,the location at the decussation of the genitofemoral nerve and the ureter.

结果:观测了生殖股神经穿出腰大肌的位置;在穿出点平面、髂嵴最高点平面、髂总血管分叉平面,输尿管距离腰大肌外侧缘的水平距离,生殖股神经距离腰大肌外侧缘的水平距离,生殖股神经与输尿管的水平距离;生殖股神经与输尿管交叉点与腰大肌外侧缘的水平距离,交叉点距离髂嵴最高点平面的垂直距离。

METHODS: The right peroneal nerve was transected and an epineural window of 1 mm was created on the neighboring tibial nerve.

表皮生长因子组:切断右侧腓神经,在邻近的胫神经干外膜上开一1 mm小窗,将腓神经远端吻合到胫神经干侧方开窗处。

A group of 10 Wistar rats had the peroneal nerve sectioned,and the distal ending was sturued to the lateral face of the tibial nerve after removing an l mm epineural window.

实验将Wistar大鼠一侧腓神经切断,在胫神经外膜上开一1 mm小窗,将腓神经远端与胫神经作端侧吻合。

METHODS: Peripheral nerve injury models of New Zealand rabbits were established. The immediate repairing group received suture immediately after injury; For the other three groups, the two broken ends of their nerves were fixed on sarcolemmas temporarily and their wounds were sutured layer by layer. Then they were opened respectively at week 2, week 4 and month 3 after injury, to receive epineural suture with non traumatic 10-0 nylon suture under operating microscope, after which wounds were sutured again.

建立成年新西兰大白兔周围神经损伤模型,即时修复组立即缝合伤口,2周后神经修复组、4周后神经修复组、3个月后神经修复组采用神经两断端分别固定于肌膜上,逐层缝合伤口,2周,4周,3个月后重新打开伤口,在手术显微镜下用10-0无损伤尼龙针线进行外膜缝合修复坐骨神经,缝合伤口。

In experimental side, the peroneal nerve was transected, the distal segment was kept close to neighboring tibial nerve at suitable site, and then the epineurium and perineurium of two neigh...

实验侧 :将腓总神经在大腿下 1/3处切断,断端结扎后将其远端与相邻胫神经干适当松解后靠拢,纵行切开两神经相邻侧面的神经外膜、束膜长约 0.5 cm,至部分神经纤维外露。

METHODS: Sixty Sprague-Dawley male rats were randomly divided into four groups(n = 15), four methods were designed on rats models of sciatic nerve compression. There were simple decompression as group A, internal neurolysis after decompression as group B, lemithason(0.5 mg/kg) injected in the epineurium after decompression as group C, and lemithason(0.5 mg/kg) injected around the epineurium after decompression and internal neurolysis as group D.

在大鼠坐骨神经卡压模型基础上,将60只SD成年雄性大鼠随机等分为四组。A组:仅去除卡压;B组:去除卡压后切开神经外膜;C组:去除卡压后神经外膜下周围注射利美达松(0.5mg/kg);D组:去除卡压后切开神经外膜,然后在神经周围注射利美达松(0.5mg/kg)。

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