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评估针式电阻抗谱技术作为一种在部分肾切除术中确定最佳手术切缘的新工具。

Evaluation of Electrical Impedance Spectroscopy-on-a-Needle as a Novel Tool to Determine Optimal Surgical Margin in Partial Nephrectomy.

机构信息

Department of Urology, Pusan National University Hospital, Busan, 49241, South Korea.

Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, South Korea.

出版信息

Adv Healthc Mater. 2017 Sep;6(18). doi: 10.1002/adhm.201700356. Epub 2017 Jul 11.

Abstract

A hypodermic needle has been introduced incorporating an electrical impedance spectroscopy (EIS) sensor, called micro-EIS-on-a-needle for depth profiling (μEoN-DP). The μEoN-DP can locate endophytic renal tumors as well as determine tumor margins by detecting the impedance difference between normal and cancer tissues. To evaluate the μEoN-DP as a novel tool to determine the optimal surgical margin during partial nephrectomy (PN), the electrical impedance differences between renal parenchymal tissues and renal cell carcinoma (RCC) tumors are investigated with regard to the distance from the tumors. Optimal frequencies at which the discrimination extent is maximized are suggested based on the discrimination index. The resistance and capacitance of normal and cancer tissues are extracted using electrical equivalent circuit by excluding the influences of other electrical components on the sensor output. The extracted resistance and capacitance of cancer tissues are 37.8% larger and 25.7% smaller than that of normal tissues, respectively. Additionally, high sensitivity and specificity are obtained by using extracted resistance and capacitance, thus implying that the μEoN-DP shows promise as a supplementary tool for PN margin evaluation and decreasing the prevalence of positive surgical margins while maximizing parenchymal preservation.

摘要

已经引入了一种带有电阻抗谱(EIS)传感器的皮下注射针,称为用于深度剖析的微 EIS 针(μEoN-DP)。μEoN-DP 可以定位内生性肾肿瘤,并通过检测正常组织和癌症组织之间的阻抗差异来确定肿瘤边界。为了评估 μEoN-DP 作为一种在部分肾切除术中(PN)确定最佳手术边界的新工具,研究了肾实质组织与肾细胞癌(RCC)肿瘤之间的电阻抗差异与肿瘤距离的关系。基于判别指数,提出了在最大程度提高判别程度的最佳频率。通过排除传感器输出中其他电元件的影响,使用等效电路从组织中提取正常和癌症组织的电阻和电容。与正常组织相比,癌症组织的电阻和电容分别增大了 37.8%和减小了 25.7%。此外,通过使用提取的电阻和电容获得了高的灵敏度和特异性,这表明 μEoN-DP 有望成为 PN 边界评估的辅助工具,同时最大限度地保留肾实质,降低阳性手术边界的发生率。

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