Xiao J, Wang S R
Laboratory for Visual Information Processing, Institute of Biophysics, Academia Sinica, Beijing, PR China.
J Neurosci Methods. 1998 Mar 13;80(1):13-7. doi: 10.1016/s0165-0270(97)00179-9.
This paper describes a new method for slicing the lower vertebrate brain which is too small and soft to be sliced using conventional methods. The brain is sliced in a pre-prepared agar mould glued to a special stage placed in a conventional vibratome. The mould is constructed from a plaster model prepared by embedding a paraformaldehyde fixed brain in a paraffin and vaseline mixture. The brain to be sliced is placed within two prepared agar half cylinders which are in turn placed in a pre-prepared larger agar collar glued to a special stage. The study describes in detail the preparation of the interlocking collar and inner cylinders of agar. The plexiglass stage allows the agar block containing the brain, to be rotated and inclined to improve the angle of cut. By using this method, small and soft brain even with thin walls and large ventricles could be sliced coronally, sagittally, horizontally or obliquely. Brain slices obtained by this method have good viability showing spontaneous and evoked activity.
本文描述了一种用于切割低等脊椎动物大脑的新方法,这类大脑体积过小且质地柔软,无法使用传统方法进行切片。大脑在预先制备好的琼脂模具中进行切片,该模具粘贴在置于传统振动切片机中的一个特殊载物台上。该模具由一个石膏模型构建而成,通过将用多聚甲醛固定的大脑嵌入石蜡和凡士林混合物中制备该石膏模型。待切片的大脑放置在两个预先制备好的琼脂半圆柱体内,这两个半圆柱体又放置在一个预先制备好的更大的琼脂套环内,该套环粘贴在一个特殊载物台上。该研究详细描述了琼脂互锁套环和内圆柱体的制备过程。有机玻璃载物台可使包含大脑的琼脂块旋转和倾斜,以改善切割角度。通过使用这种方法,即使是薄壁且脑室较大的小而软的大脑,也能进行冠状、矢状、水平或斜向切片。用这种方法获得的脑切片具有良好的活力,表现出自发活动和诱发性活动。