Tang Y, Nyengaard J R
University Institute of Pathology and 2nd University Clinic of Internal Medicine, University of Aarhus, Denmark.
J Neurosci Methods. 1997 May 16;73(2):193-200. doi: 10.1016/s0165-0270(97)02228-0.
A practically unbiased stereological method to obtain estimates of the volume and total length of nerve fibers in brain white matter is described. The sampling scheme is designed so that the majority of brain white matter is left intact, thus providing the possibility for resampling and further analysis. Uniform sampling of one complete hemispherical white matter is performed. The volume fraction of nerve fibers in white matter is estimated by point counting. The total length of nerve fibers was estimated from the product of the volume of white matter, obtained with the Cavalieri principle, and the fiber length density, obtained from the isotropic, uniform random sections which were ensured by the isector. The size of nerve fibers was derived by measuring the profile diameter perpendicular to its longest axis. The influence of the postmortem fixation delay on nerve fiber parameters was investigated in one dog and one pig. The criteria for identification of nerve fiber profiles at light microscopy were evaluated using electron microscopy.
本文描述了一种实用的无偏立体学方法,用于估计脑白质中神经纤维的体积和总长度。采样方案的设计使得大部分脑白质保持完整,从而为重新采样和进一步分析提供了可能性。对一个完整的半球形白质进行均匀采样。通过点计数估计白质中神经纤维的体积分数。神经纤维的总长度是根据用卡瓦列里原理获得的白质体积与从各向同性、均匀随机切片获得的纤维长度密度的乘积来估计的,这些切片由等面积取样器确保。通过测量垂直于其最长轴的轮廓直径来得出神经纤维的大小。在一只狗和一头猪身上研究了死后固定延迟对神经纤维参数的影响。使用电子显微镜评估了光学显微镜下神经纤维轮廓识别的标准。