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大鼠脑定量放射自显影代谢数据的三维重建

Three-dimensional reconstruction of metabolic data from quantitative autoradiography of rat brain.

作者信息

Hibbard L S, Hawkins R A

出版信息

Am J Physiol. 1984 Sep;247(3 Pt 1):E412-9. doi: 10.1152/ajpendo.1984.247.3.E412.

Abstract

Quantitative autoradiography is a powerful method for studying brain function by the determination of blood flow, glucose utilization, or transport of essential nutrients. Autoradiographic images contain vast amounts of potentially useful information, but conventional analyses can practically sample the data at only a small number of points arbitrarily chosen by the experimenter to represent discrete brain structures. To use image data more fully, computer methods for its acquisition, storage, quantitative analysis, and display are required. We have developed a system of computer programs that performs these tasks and has the following features: 1) editing and analysis of single images using interactive graphics, 2) an automatic image alignment algorithm that places images in register with one another using only the mathematical properties of the images themselves, 3) the calculation of mean images from equivalent images in different experimental serial image sets, 4) the calculation of difference images (e.g., experiment-minus-control) with the option to display only differences estimated to be statistically significant, and 5) the display of serial image metabolic maps reconstructed in three dimensions using a high-speed computer graphics system.

摘要

定量放射自显影术是一种通过测定血流量、葡萄糖利用情况或必需营养素的转运来研究脑功能的强大方法。放射自显影图像包含大量潜在有用信息,但传统分析实际上只能在实验者任意选择的少数几个点对数据进行采样,以代表离散的脑结构。为了更充分地利用图像数据,需要用于图像采集、存储、定量分析和显示的计算机方法。我们已经开发了一个计算机程序系统来执行这些任务,该系统具有以下特点:1)使用交互式图形对单张图像进行编辑和分析;2)一种自动图像对齐算法,该算法仅利用图像自身的数学特性就能使图像相互对齐;3)从不同实验系列图像集中的等效图像计算平均图像;4)计算差异图像(例如,实验减去对照),并可选择仅显示估计具有统计学显著性的差异;5)使用高速计算机图形系统显示三维重建的系列图像代谢图谱。

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