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[基于结石岩相结构的体外碎石术压迫法]

[Compression of extracorporeal lithofragmentation based on the petrographic structure of the calculus].

作者信息

Burgos F J, Saez J C, Martínez F, Martín E

机构信息

Hospital Ramón y Cajal, Departamento de Cirugía y Ciencias Morfológicas, Madrid.

出版信息

Actas Urol Esp. 1994 Feb;18(2):94-100.

PMID:7976708
Abstract

A total of 114 calculi with 6 different compositions: whewellite (OXMH), whedellite (OXDH), struvite (FAM), carbopatite (CA) uric acid (UA) and oxolophosphate (OP) have been fragmented in vitro using 2 extracorporeal (electrohydraulic and piezoelectric) and 2 direct contact (ultrasound and laser) sources. A petrographic study of the calculi following their inclusion in acrylic thermoplastic resin allowed the definition of the different crystallographic patterns of each composition. Fragmentability and fragmentation spectra based on the particle size of each lithiasic composition are justified by the petrographic structure of the calculi. The intercrystalline cleavage charts explain fragmentability, while fracture lines in the crystal core the crushing susceptibility. The lithiasic fragility lies in the crystal's intercrystalline and intermolecular linking energies.

摘要

共有114颗结石,其成分有6种:水草酸钙(OXMH)、二水草酸钙(OXDH)、磷酸铵镁(FAM)、磷酸钙(CA)、尿酸(UA)和草酸磷酸钙(OP),已在体外使用2种体外(电液压和压电)和2种直接接触(超声和激光)源进行破碎。对结石嵌入丙烯酸热塑性树脂后的岩相学研究,明确了每种成分的不同晶体结构模式。基于每种结石成分粒径的可破碎性和破碎光谱,由结石的岩相结构证明其合理性。晶间解理图解释了可破碎性,而晶体核心的断裂线则说明了破碎敏感性。结石的易碎性在于晶体的晶间和分子间连接能量。

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