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移动器官的动态容积成像。

Dynamic volume imaging of moving organs.

作者信息

Robb R A, Sinak L J, Hoffman E A, Kinsey J H, Harris L D, Ritman E L

出版信息

J Med Syst. 1982 Dec;6(6):539-54. doi: 10.1007/BF00995505.

Abstract

The Dynamic Spatial Reconstructor system has been developed to dynamically (up to 60/sec) image the entire 3-D volume (up to 240 adjacent 1-mm-thick transverse sections) encompassing moving organs of the body, particularly the heart and lungs, or the circulation in any organ. This capability permits accurate regional and global measurements to be made of the important relationships between structure and function within and among these organs, which in turn facilitates achievement of new insights into the basic physiological processes of these organs, and promises increased sensitivity and specificity in the diagnosis of pathology that affects normal organ function. This article explains the biomedical and technological rationale for development of the DSR, describes the design concepts and practical operation of the system, and presents preliminary results obtained with the system, including initial data from one of the first patient studies.

摘要

动态空间重建仪系统已被开发出来,用于对包含身体移动器官(特别是心脏和肺部)或任何器官循环的整个三维体积(多达240个相邻的1毫米厚横向切片)进行动态成像(每秒高达60次)。这种能力允许对这些器官内部和之间结构与功能的重要关系进行精确的局部和整体测量,这反过来有助于对这些器官的基本生理过程获得新的见解,并有望提高影响正常器官功能的病理学诊断的敏感性和特异性。本文解释了动态空间重建仪开发的生物医学和技术原理,描述了该系统的设计概念和实际操作,并展示了用该系统获得的初步结果,包括首批患者研究之一的初始数据。

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