Pittomvils G, Vandeursen H, Hellemans J, Demeulenaere R, Matura E, Boving R, Baert L
Department of Didactical Physics, Katholieke Universiteit Leuven, Belgium.
J Endourol. 1993 Oct;7(5):357-62. doi: 10.1089/end.1993.7.357.
The in vitro fragmentation effects of electromagnetic-induced shock wave lithotripsy (Siemens Lithostar) were studied on parallel laminated schists in relation to the incoming shock wave energy and the incoming angle of the incident shock wave. Well above the threshold energy, the total amount of acoustic energy required for fragmentation remained unchanged regardless of the power setting of the high-tension supply. The amount of energy transmitted to the stone was limited by a total reflection angle, restricting the available transmission surface. These observations determine the effect of shock waves on calculi with an irregular shape such as staghorn stones. Lithotripsy-induced cavitation has been recognized, but no immediate influence on disintegration has become apparent until now.
研究了电磁诱导冲击波碎石术(西门子Lithostar)对平行层状片岩的体外破碎效果,涉及入射冲击波能量和入射冲击波的入射角。远高于阈值能量时,无论高压电源的功率设置如何,破碎所需的声能总量保持不变。传递到结石的能量量受到全反射角的限制,从而限制了可用的传输表面。这些观察结果决定了冲击波对鹿角形结石等不规则形状结石的影响。碎石诱导的空化现象已得到认可,但到目前为止,对结石崩解尚未发现直接影响。