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使用动态仪器触诊对离体的整个前列腺进行定量力学评估。

Quantitative mechanical assessment of the whole prostate gland ex vivo using dynamic instrumented palpation.

作者信息

Hammer Steven J, Good Daniel W, Scanlan Paul, Palacio-Torralba Javier, Phipps Simon, Stewart Grant D, Shu Will, Chen Yuhang, McNeill S Alan, Reuben Robert L

机构信息

1 Institute of Mechanical, Process and Energy Engineering, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, UK.

2 Department of Urology, Western General Hospital, Edinburgh, UK.

出版信息

Proc Inst Mech Eng H. 2017 Dec;231(12):1081-1100. doi: 10.1177/0954411917734257. Epub 2017 Sep 30.

Abstract

An instrumented palpation sensor, designed for measuring the dynamic modulus of tissue in vivo, has been developed and trialled on ex vivo whole prostate glands. The sensor consists of a flexible membrane sensor/actuator with an embedded strain gauge and is actuated using a dynamically varying airflow at frequencies of 1 and 5 Hz. The device was calibrated using an indentation stiffness measurement rig and gelatine samples with a range of static modulus similar to that reported in the literature for prostate tissue. The glands were removed from patients with diagnosed prostate cancer scheduled for radical prostatectomy, and the stiffness was measured within 30 min of surgical removal. Each prostate was later examined histologically in a column immediately below each indentation point and graded into one of the four groups; normal, benign prostatic hyperplasia, cancerous and mixed cancer and benign prostatic hyperplasia. In total, 11 prostates were assessed using multiple point probing, and the complex modulus at 1 and 5 Hz was calculated on a point-by-point basis. The device yielded values of quasi-static modulus of 15 ± 0.5 kPa and dynamic modulus of 20 ± 0.5 kPa for whole prostates, and a sensitivity of up to 80% with slightly lower specificity was achieved on diagnosis of prostate cancer using a combination of mechanical measures. This assessment did not take into account some obvious factors such as edge effects, overlap and clinical significance of the cancer, all of which would improve performance. The device, as currently configured, is immediately deployable in vivo. A number of improvements are also identified which could improve the sensitivity and specificity in future embodiments of the probe.

摘要

一种用于在体内测量组织动态模量的仪器化触诊传感器已被开发出来,并在离体的整个前列腺上进行了试验。该传感器由一个带有嵌入式应变计的柔性膜传感器/致动器组成,并使用频率为1和5Hz的动态变化气流进行驱动。该设备使用压痕刚度测量装置和明胶样品进行校准,明胶样品的静态模量范围与文献中报道的前列腺组织的模量相似。从计划进行根治性前列腺切除术的前列腺癌患者身上取出前列腺,并在手术切除后30分钟内测量其硬度。随后对每个前列腺在每个压痕点正下方的一列中进行组织学检查,并分为四组之一:正常、良性前列腺增生、癌性以及癌性与良性前列腺增生混合。总共使用多点探测评估了11个前列腺,并逐点计算了1和5Hz时的复模量。对于整个前列腺,该设备得出的准静态模量值为15±0.5kPa,动态模量值为20±0.5kPa,并且通过结合机械测量方法诊断前列腺癌时,灵敏度高达80%,特异性略低。该评估没有考虑一些明显的因素,如边缘效应、重叠以及癌症的临床意义,所有这些因素都将提高性能。按照当前配置,该设备可立即用于体内。还确定了一些改进措施,这些措施可以在探头的未来实施方案中提高灵敏度和特异性。

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