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体外冲击波碎石术治疗泌尿系统结石:设备、技术及概述

Urinary extracorporeal shock wave lithotripsy: equipment, techniques, and overview.

作者信息

Pfister R C, Papanicolaou N, Yoder I C

机构信息

Department of Radiology, Massachusetts General Hospital, Boston 02114.

出版信息

Urol Radiol. 1988;10(1):39-45. doi: 10.1007/BF02926533.

Abstract

Second generation urinary lithotriptors are characterized by extensive technical alterations and significant equipment improvement in the functional, logistical, and medical aspects of shock wave lithotripsy (SWL). These newer devices feature a water bath-free environment, a reduced anesthesia requirement, improved imaging, functional uses in addition to lithotripsy, or combinations thereof. Shock wave generation by spark gap, electromagnetic, piezoelectric and microexplosive techniques are related to their peak energy, frequency, and total energy capabilities which impacts on both anesthesia needs and the length and number of treatment sessions required to pulverize calculi. A master table summarizes the types of SW energy, coupling, imaging systems, patient transport, functional features, cost, and treatment effectiveness of 12 worldwide lithotriptors in various stages of investigative and clinical trials as monitored by the Food and Drug Administration (FDA) of America.

摘要

第二代尿路碎石机的特点是在冲击波碎石术(SWL)的功能、后勤和医学方面有广泛的技术变革和显著的设备改进。这些更新的设备具有无水浴环境、减少麻醉需求、改进成像、除碎石术之外的功能用途或其组合。通过火花隙、电磁、压电和微爆炸技术产生冲击波与它们的峰值能量、频率和总能量能力有关,这会影响麻醉需求以及粉碎结石所需的治疗疗程的长度和次数。一张总表总结了由美国食品药品监督管理局(FDA)监测的12种全球范围内处于不同研究和临床试验阶段的碎石机的SW能量类型、耦合、成像系统、患者转运、功能特点、成本和治疗效果。

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