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医学成像的最新进展:解剖学与临床应用

Recent advances in medical imaging: anatomical and clinical applications.

作者信息

Grignon Bruno, Mainard Laurence, Delion Matthieu, Hodez Claude, Oldrini Guillaume

机构信息

Département d'Anatomie, Faculté de Médecine de Nancy, Université de Lorraine, Nancy Cedex, France.

出版信息

Surg Radiol Anat. 2012 Oct;34(8):675-86. doi: 10.1007/s00276-012-0985-0. Epub 2012 May 29.

DOI:10.1007/s00276-012-0985-0
PMID:22644780
Abstract

The aim of this paper was to present an overview of the most important recent advances in medical imaging and their potential clinical and anatomical applications. Dramatic changes have been particularly observed in the field of computed tomography (CT) and magnetic resonance imaging (MRI). Computed tomography (CT) has been completely overturned by the successive development of helical acquisition, multidetector and large area-detector acquisition. Visualising brain function has become a new challenge for MRI, which is called functional MRI, currently based principally on blood oxygenation level-dependent sequences, which could be completed or replaced by other techniques such as diffusion MRI (DWI). Based on molecular diffusion due to the thermal energy of free water, DWI offers a spectrum of anatomical and clinical applications, ranging from brain ischemia to visualisation of large fibrous structures of the human body such as the anatomical bundles of white matter with diffusion tensor imaging and tractography. In the field of X-ray projection imaging, a new low-dose device called EOS has been developed through new highly sensitive detectors of X-rays, allowing for acquiring frontal and lateral images simultaneously. Other improvements have been briefly mentioned. Technical principles have been considered in order to understand what is most useful in clinical practice as well as in the field of anatomical applications. Nuclear medicine has not been included.

摘要

本文旨在概述医学成像领域最近最重要的进展及其潜在的临床和解剖学应用。在计算机断层扫描(CT)和磁共振成像(MRI)领域尤其观察到了巨大的变化。螺旋采集、多探测器和大面积探测器采集的相继发展彻底改变了计算机断层扫描(CT)。对MRI来说,可视化脑功能已成为一项新挑战,即所谓的功能MRI,目前主要基于血氧水平依赖序列,这可能会被其他技术如扩散MRI(DWI)完善或取代。基于自由水热能引起的分子扩散,DWI提供了一系列解剖学和临床应用,从脑缺血到利用扩散张量成像和纤维束成像可视化人体大的纤维结构,如白质的解剖束。在X射线投影成像领域,一种名为EOS的新型低剂量设备已通过新型高灵敏度X射线探测器开发出来,可同时获取正位和侧位图像。还简要提及了其他改进。为了理解在临床实践以及解剖学应用领域中最有用的是什么,对技术原理进行了考量。核医学未被纳入。

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