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体外冲击波碎石术(ESWL)诱导的空化气泡内爆的重要性。

Importance of the implosion of ESWL-induced cavitation bubbles.

作者信息

Delacrétaz G, Rink K, Pittomvils G, Lafaut J P, Vandeursen H, Boving R

机构信息

Laboratoire d'Optique Appliquée, Ecole Polytechnique Fédérale de Lausanne, Switzerland.

出版信息

Ultrasound Med Biol. 1995;21(1):97-103. doi: 10.1016/0301-5629(94)00091-3.

Abstract

The damage induced by an extracorporeal shock wave lithotripter is observed with a fiber optic stress sensing technique. When a stone is placed in the focus, besides the expected stress induced by the incoming shock wave emitted by the ESWL apparatus, a second delayed stress is observed some hundreds of microseconds later. The second stress is induced by a shock wave generated at the collapse of a cavitation bubble. Partial reflection of the incoming shock wave at the stone boundary is at the origin of the large cavitation bubble formation. Sensing fiber fracture results always from the second shock wave due to the collapse of the cavitation bubble. Thus the largest stress is generated at the collapse. When no target is placed in the focus of the lithotripter, no large cavitation bubble is formed and no delayed shock wave is observed. Our results demonstrate unambiguously the decisive role of cavitation in ESWL procedures.

摘要

采用光纤应力传感技术观察体外冲击波碎石机所产生的损伤。当结石置于焦点处时,除了体外冲击波碎石术(ESWL)设备发出的入射冲击波所产生的预期应力外,在数百微秒后还观察到第二个延迟应力。第二个应力是由空化气泡坍塌时产生的冲击波引起的。入射冲击波在结石边界处的部分反射是形成大空化气泡的原因。传感光纤断裂总是由空化气泡坍塌产生的第二个冲击波导致的。因此,最大应力产生于坍塌时。当在碎石机焦点处未放置目标时,不会形成大空化气泡,也不会观察到延迟冲击波。我们的结果明确证明了空化在ESWL治疗过程中的决定性作用。

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