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胆结石碎石术:相关物理原理与技术问题

Gallstone lithotripsy: relevant physical principles and technical issues.

作者信息

Davros W J, Garra B S, Zeman R K

机构信息

Department of Radiology, Georgetown University Medical Center, Washington, DC 20007-2197.

出版信息

Radiology. 1991 Feb;178(2):397-408. doi: 10.1148/radiology.178.2.1987600.

Abstract

A basic understanding of shock wave generation is essential for the radiologist who performs gallstone lithotripsy. Shock waves differ from ordinary acoustic waves in that they have a rapid rise time, a positive pressure component that gives rise to compressive forces approaching 1,000 atm, and a low-amplitude sustained negative pressure (rarefactive) component. Shock waves are created by means of three different types of shock wave generators: spark-gap, electromagnetic, and piezoelectric. The authors describe and compare these three types of shock wave generators with regard to equipment selection. Regardless of how shock waves are generated, they share common interactions with tissue. These interactions are reviewed along with the proposed mechanisms of stone fragmentation.

摘要

对于实施胆结石碎石术的放射科医生而言,对冲击波产生的基本了解至关重要。冲击波与普通声波不同,在于它们具有快速上升时间、产生接近1000个大气压压缩力的正压成分以及低振幅持续负压(稀疏)成分。冲击波通过三种不同类型的冲击波发生器产生:火花隙式、电磁式和压电式。作者就设备选择描述并比较了这三种类型的冲击波发生器。无论冲击波如何产生,它们与组织都有共同的相互作用。这些相互作用以及结石破碎的推测机制都将进行综述。

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