肌肉骨骼磁共振成像。

Magnetic resonance annual Pub Date : 1986-01-01
W A Murphy, W G Totty
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引用次数: 0

摘要

在MRI出现的短时间内,很明显,它在非神经系统方面的重要应用之一是对肌肉骨骼系统的成像。MRI在为各种骨髓疾病、软组织肿块、骨性肿瘤和肌肉疾病提供高对比度和可接受空间分辨率的图像方面是有效的。该方法的多平面方面是一个巨大的优势,并且有望成为许多检查选择MRI而不是CT的主要原因。目前,MRI似乎是检测股骨头缺血性坏死、确定软组织肿块和骨肿瘤范围的主要方法。表面线圈技术有望更好地解决小部件,如手腕和颞下颌关节。磷光谱学应该对我们了解正常和改变的肌肉能量代谢的基本知识做出重要贡献,并提供一种安全的方法来跟踪肌肉疾病的过程和治疗。预计MRI将在各种肌肉骨骼疾病的影像学检查中占有重要地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Musculoskeletal magnetic resonance imaging.

In the short time that MRI has been available, it has become apparent that one of the more important nonneurologic applications is in imaging the musculoskeletal system. MRI is effective at providing high-contrast images with acceptable spatial resolution for a variety of bone marrow disorders, soft tissue masses, osseous tumors, and muscle diseases. The multiplanar aspect of the method is a great advantage and promises to be a major reason why MRI will be selected instead of CT for many examinations. Currently, it appears that MRI is a leading method of detecting ischemic necrosis of the femoral head and determining the extent of soft tissue masses and bone tumors. Surface coil technology promises better resolution of small parts such as the wrist and temporomandibular joint. Phosphorous spectroscopy should make important contributions to our basic understanding of normal and altered muscle energy metabolism as well as providing a safe method of following the course and therapy of muscle diseases. It is anticipated that MRI will have an important position among the variety of imaging tests for musculoskeletal diseases.

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