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Proof of principle in vitro study of a prototype ultrasound technology to size stone fragments during ureteroscopy.

机译:原型超声技术在输尿管镜检查过程中确定结石大小的体外原理研究的证明。

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PURPOSE: Proof-of-principle in vitro experiments evaluated a prototype ultrasound technology to size kidney stone fragments. MATERIALS AND METHODS: Nineteen human stones were measured using manual calipers. A 10-MHz, 1/8'' (10F) ultrasound transducer probe pinged each stone on a kidney tissue phantom submerged in water using two methods. In Method 1, the instrument was aligned such that the ultrasound pulse traveled through the stone. In Method 2, the instrument was aligned partially over the stone such that the ultrasound pulse traveled through water. RESULTS: For Method 1, the correlation between caliper- and ultrasound-determined stone size was r(2) = 0.71 (P < 0.0001). All but two stone measurements were accurate and precise to within 1 mm. For Method 2, the correlation was r(2) = 0.99 (P < 0.0001), and measurements were accurate and precise to within 0.25 mm. CONCLUSIONS: The prototype technology and either method measured stone size with good accuracy and precision. This technology may be possible to incorporate into ureteroscopy.
机译:目的:原理验证的体外实验评估了原型超声技术来确定肾结石碎片的大小。材料与方法:使用手动卡尺测量了19块人类结石。一个10 MHz,1/8英寸(10F)的超声换能器探头使用两种方法对浸没在水中的肾脏组织模型上的每个石头进行ping操作。在方法1中,将仪器对齐,以使超声波脉冲穿过宝石。在方法2中,将仪器部分对准石头,以使​​超声波脉冲穿过水。结果:对于方法1,卡尺和超声确定的石材尺寸之间的相关性为r(2)= 0.71(P <0.0001)。除了两次石材测量外,其他所有测量结果均精确到1 mm以内。对于方法2,相关性为r(2)= 0.99(P <0.0001),并且测量精确到0.25 mm以内。结论:原型技术和任一种方法都可以准确,准确地测量石材尺寸。这项技术可能会并入输尿管镜检查。

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