首页> 外文期刊>The Journal of Urology >Acoustic and mechanical properties of artificial stones in comparison to natural kidney stones (see comments)
【24h】

Acoustic and mechanical properties of artificial stones in comparison to natural kidney stones (see comments)

机译:与天然肾结石相比,人造结石的声学和机械性能(请参阅评论)

获取原文
获取原文并翻译 | 示例
       

摘要

PURPOSE: Standardized and reproducible artificial kidney stone models are important for performing comparative studies of different lithotripsy modalities. The acoustic and mechanical properties of renal calculi dictate the manner by which stones interact with the mechanical stresses produced by shock wave lithotripsy (SWL) or intracorporeal lithotripsy modalities. We have developed a novel artificial kidney stone model that is made of natural substances found in real kidney stones. These stone models appear to be much closer in physical properties to natural kidney stones than previously used stone models. MATERIALS AND METHODS: The acoustic and mechanical properties of six groups of artificial stone models were compared to corresponding natural stones of similar compositions. Moreover, three groups of artificial stone models made of plaster-of-Paris were compared to their natural counterparts. In terms of acoustic properties, stone density was measured using a pycnometer based on Archimedes' principle, whereas longitudinal and transverse (or shear) wave propagation speeds were measured using an ultrasound pulse transmission technique. These values were used to calculate wave impedance and dynamic mechanical properties (bulk modulus, Young's modulus, and shear modulus) of the stones. The microhardness of the stones was measured and the effect of composition on stone fragility was evaluated. RESULTS: Artificial stones, when compared to natural stones of similar composition, showed similar trends in longitudinal and transverse wave speeds, wave impedance, and dynamic elastic moduli. However, values for the artificial stones were uniformly low compared to those of natural stones, suggesting that these artificial stones may be more amenable to shock wave fragmentation. The results of SWL on stone fragmentation of artificial and natural stones also revealed similar trends with the exception of artificial cystine stones which were found to be the most resistant to shock wave fragmentation. CONCLUSIONS: The results indicate that the physical properties of artificial stones made of natural stone materials are comparable to renal calculi of the same chemical composition. The data suggests that these stone phantoms are suitable for performing standardized and reproducible in vitro investigations, especially with regards to fragility of kidney stones of different chemical compositions during SWL.
机译:目的:标准化和可复制的人造肾结石模型对于进行不同碎石术形式的比较研究很重要。肾结石的声学和机械特性决定了结石与冲击波碎石术(SWL)或体内碎石术形式产生的机械应力相互作用的方式。我们已经开发了一种新型的人造肾结石模型,该模型由在真实肾结石中发现的天然物质制成。这些石头模型在物理性质上似乎比以前使用的石头模型更接近天然肾结石。材料与方法:将六组人造石模型的声学和力学性能与相似组成的相应天然石进行了比较。此外,将三组由巴黎石膏制成的人造石模型与天然模型进行了比较。在声学特性方面,使用基于阿基米德原理的比重瓶测量石材密度,而使用超声波脉冲传输技术测量纵向和横向(或剪切)波的传播速度。这些值用于计算宝石的波阻抗和动态机械性能(体模,杨氏模量和剪切模量)。测量了石头的显微硬度,并评估了组成对石头脆性的影响。结果:人造石与组成相似的天然石相比,在纵向和横向波速,波阻抗和动态弹性模量方面显示出相似的趋势。但是,人造石的值与天然石相比始终较低,这表明这些人造石可能更容易受到冲击波破碎的影响。 SWL在人造石和天然石碎裂方面的结果也显示了类似的趋势,但人工胱氨酸结石除外,后者对冲击波碎裂的抵抗力最大。结论:结果表明,由天然石材制成的人造石的物理性能与相同化学成分的肾结石相当。数据表明,这些石模体适用于进行标准化且可重现的体外研究,尤其是在SWL期间不同化学成分的肾结石的脆性方面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号