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首页> 外文期刊>Journal of Neuroscience Methods >A quantitative computer-assisted morphometric analysis of stimulation-induced injury to myelinated fibers in a peripheral nerve.
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A quantitative computer-assisted morphometric analysis of stimulation-induced injury to myelinated fibers in a peripheral nerve.

机译:定量计算机辅助形态计量分析,分析了刺激引起的周围神经髓鞘纤维损伤。

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We describe a computer-assisted morphometric procedure for quantifying acute axonal injury induced in peripheral nerves by prolonged electrical stimulation. The procedure is a two-phase process, with the image analysis implemented via a commercial image analysis program, followed by an automated editing of the morphometric parameters of each object identified by the image analysis software. Both phases are implemented on IBM-compatible personal computers. The custom software counts the number of fibers undergoing early axonal degeneration, using a two-category classification scheme based on the range of myelin cross-sectional area and axonal cross-sectional areas of normal (unstimulated) nerves. When the damaged fibers are counted using this procedure, the correlation between the normalized amplitude of the electric stimulus and the number of degenerating fibers is the same as when the analysis is performed by an experienced histopathologist (R = 0.87) and carries the advantage of being entirely objective. The correlation was higher with a two-category classification (damageo damage) than when the severity of the damage to each axon was weighted according to the amount of axonal shrinkage. We determined that axons 3.5-9 microm in diameter are the most vulnerable to injury from the electrical stimulation. This has certain implications regarding the mechanism underlying this type of injury.
机译:我们描述了一种计算机辅助的形态计量学程序,用于量化通过长时间电刺激在周围神经中引起的急性轴突损伤。该过程分为两个阶段,通过商业图像分析程序执行图像分析,然后自动编辑由图像分析软件识别的每个对象的形态参数。这两个阶段均在IBM兼容的个人计算机上实现。该定制软件使用两类分类方案,根据正常(未刺激)神经的髓鞘横截面积和轴突横截面积的范围,对经历早期轴突变性的纤维数量进行计数。当使用此程序对受损纤维进行计数时,电刺激的归一化幅度与退化纤维数量之间的相关性与经验丰富的组织病理学家进行分析时的相关性相同(R = 0.87),具有以下优势:完全客观。与两类分类(损伤/无损伤)相比,根据轴突收缩量对每个轴突的损伤严重程度进行加权时,相关性更高。我们确定直径3.5-9微米的轴突最容易受到电刺激的伤害。这对造成这种伤害的机制有一定的影响。

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