White W F, O'Gorman S, Roe A W
Department of Neuroscience, Children's Hospital, and Harvard Medical School, Boston, Massachusetts 02115.
J Neurosci. 1990 Mar;10(3):795-813. doi: 10.1523/JNEUROSCI.10-03-00795.1990.
The autoradiographic analysis of neurotransmitter receptor distribution is a powerful technique that provides extensive information on the localization of neurotransmitter systems. Computer methodologies are described for the analysis of autoradiographic material which include quench correction, 3-dimensional display, and quantification based on anatomical boundaries determined from the tissue sections. These methodologies are applied to the problem of the distribution of glycine receptors measured by 3H-strychnine binding in the mouse CNS. The most distinctive feature of this distribution is its marked caudorostral gradient. The highest densities of binding sites within this gradient were seen in somatic motor and sensory areas; high densities of binding were seen in branchial efferent and special sensory areas. Moderate levels were seen in nuclei related to visceral function. Densities within the reticular formation paralleled the overall gradient with high to moderate levels of binding. The colliculi had low and the diencephalon had very low levels of binding. No binding was seen in the cerebellum or the telencephalon with the exception of the amygdala, which had very low levels of specific binding. This distribution of glycine receptors correlates well with the known functional distribution of glycine synaptic function. These data are illustrated in 3 dimensions and discussed in terms of the significance of the analysis techniques on this type of data as well as the functional significance of the distribution of glycine receptors.
神经递质受体分布的放射自显影分析是一项强大的技术,可提供有关神经递质系统定位的广泛信息。本文描述了用于分析放射自显影片的计算机方法,包括淬灭校正、三维显示以及基于从组织切片确定的解剖边界进行定量分析。这些方法被应用于通过3H-士的宁结合测量小鼠中枢神经系统中甘氨酸受体分布的问题。这种分布最显著的特征是其明显的尾-嘴侧梯度。在这个梯度中,结合位点密度最高的区域见于躯体运动和感觉区域;在鳃传出和特殊感觉区域也可见到高密度的结合;在内脏功能相关的核团中结合水平中等;网状结构内的密度与整体梯度平行,结合水平从高到中等;丘脑中结合水平较低,间脑中结合水平极低;除了杏仁核有极低水平的特异性结合外,在小脑或端脑中未观察到结合。甘氨酸受体的这种分布与已知的甘氨酸突触功能的功能分布密切相关。这些数据以三维形式展示,并就分析技术对这类数据的意义以及甘氨酸受体分布的功能意义进行了讨论。