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Development of a noninvasive electrical impedance probe for minimally invasive tumor localization

机译:开发用于微创肿瘤定位的无创电阻抗探针

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摘要

Compared with traditional open surgery, minimally invasive surgery (MIS) improves the accuracy and dexterity of a surgeon and minimizes trauma to the patient. However, the lack of significant haptic feedback in MIS can make tumor localization difficult. A noninvasive electrical impedance probe (NEIP), consisting mainly of two spherical electrodes and a constant force generator, has been developed to gently touch or slide over tissue surface and at the same time record impedance values without prior registration of the surface. We prove that there is a linear relationship between the surgical margin width and the recorded conductance. Ex vivo experiments in ten human kidney specimens were performed to demonstrate the feasibility of NEIP. The experimental results verify the linear relationship and indicate that NEIP can provide accurate tumor location while sliding over the tissue surface.
机译:与传统的开放式手术相比,微创手术(MIS)提高了外科医生的准确性和灵活性,并最大程度地减少了对患者的伤害。但是,MIS中缺乏明显的触觉反馈会导致肿瘤定位困难。已经开发出一种主要由两个球形电极和一个恒力发生器组成的非侵入性电阻抗探针(NEIP),可以在组织表面上轻轻触摸或滑动,同时在不事先注册表面的情况下记录阻抗值。我们证明手术切缘宽度和记录的电导之间存在线性关系。在十个人类肾脏标本中进行了离体实验,以证明NEIP的可行性。实验结果验证了线性关系,并表明NEIP可以在组织表面上滑动时提供准确的肿瘤位置。

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