Human in vivo liver and tumor bioimpedance measured with biopsy needle

活检 体内 医学 肝活检 超声波 穿刺活检 病理 肝癌 癌症 放射科 临床意义 核医学 内科学 生物 生物技术
作者
Sanna Halonen,Ali Ovissi,Sonja Boyd,Juho Kari,Kai Kronström,Juhani Kosunen,Hanna Laurén,Kirsti Numminen,Harri Sievänen,Jari Hyttinen
出处
期刊:Physiological Measurement [IOP Publishing]
卷期号:43 (1): 015006-015006 被引量:3
标识
DOI:10.1088/1361-6579/ac4d38
摘要

Objective.Liver biopsy is an essential procedure in cancer diagnostics but targeting the biopsy to the actual tumor tissue is challenging. Aim of this study was to evaluate the clinical feasibility of a novel bioimpedance biopsy needle system in liver biopsy and simultaneously to gatherin vivobioimpedance data from human liver and tumor tissues.Approach.We measured human liver and tumor impedance datain vivofrom 26 patients who underwent diagnostic ultrasound-guided liver biopsy. Our novel 18 G core biopsy needle tip forms a bipolar electrode that was used to measure bioimpedance during the biopsy in real-time with frequencies from 1 kHz to 349 kHz. The needle tip location was determined by ultrasound. Also, the sampled tissue type was determined histologically.Main results.The bioimpedance values showed substantial variation between individual cases, and liver and tumor data overlapped each other. However, Mann-Whitney U test showed that the median bioimpedance values of liver and tumor tissue are significantly (p < 0.05) different concerning the impedance magnitude at frequencies below 25 kHz and the phase angle at frequencies below 3 kHz and above 30 kHz.Significance.This study uniquely employed a real-time bioimpedance biopsy needle in clinical liver biopsies and reported the measured humanin vivoliver and tumor impedance data. Impedance is always device-dependent and therefore not directly comparable to measurements with other devices. Although the variation in tumor types prevented coherent tumor identification, our study provides preliminary evidence that tumor tissue differs from liver tissuein vivo,and this association is frequency-dependent.
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