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Elastography: modality-specific approaches, clinical applications, and research horizons

机译:弹性成像:特定于方式的方法,临床应用和研究范围

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摘要

Manual palpation has been used for centuries to provide a relative indication of tissue health and disease. Engineers have sought to make these assessments increasingly quantitative and accessible within daily clinical practice. Since many of the developed techniques involve image-based quantification of tissue deformation in response to an applied force (i.e., "elastography"), such approaches fall squarely within the domain of the radiologist. While commercial elastography analysis software is becoming increasingly available for clinical use, the internal workings of these packages often remain a "black box," with limited guidance on how to usefully apply the methods toward a meaningful diagnosis. The purpose of the present review article is to introduce some important approaches to elastography that have been developed for the most widely used clinical imaging modalities (e.g., ultrasound, MRI), to provide a basic sense of the underlying physical principles, and to discuss both current and potential (musculoskeletal) applications. The article also seeks to provide a perspective on emerging approaches that are rapidly developing in the research laboratory (e.g., optical coherence tomography, fibered confocal microscopy), and which may eventually gain a clinical foothold.
机译:人工触诊已经使用了多个世纪,以提供组织健康和疾病的相对指示。工程师们试图使这些评估在日常临床实践中越来越量化和易于使用。由于许多已开发的技术涉及基于图像的组织变形响应于施加的力的量化(即“弹性成像”),因此这些方法完全落入放射科医生的领域。尽管商业弹性成像分析软件越来越多地可用于临床,但这些软件包的内部工作通常仍然是“黑匣子”,在如何有效地将方法用于有意义的诊断方面的指导有限。本文的目的是介绍一些针对弹性成像的重要方法,这些方法是针对最广泛使用的临床成像方式(例如超声,MRI)开发的,旨在提供基本的物理原理的基本知识,并讨论两者当前和潜在的(肌肉骨骼)应用。本文还试图为研究实验室中正在迅速发展的新兴方法(例如光学相干断层扫描,纤维共聚焦显微镜)提供一个观点,并最终可能在临床上站稳脚跟。

著录项

  • 作者

    Li, Y; Snedeker, J G;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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