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3D Microendoscopic Electrical Impedance Tomography for Margin Assessment During Robot-Assisted Laparoscopic Prostatectomy

机译:用于机器人辅助腹腔镜前列腺切除术的边缘评估的3D微内镜电阻抗层析成像

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摘要

Radially configured microendoscopic electrical impedance probes intended for intraoperative surgical margin assessment during robot-assisted laparoscopic prostatectomy (RALP) were examined through simulation, bench-top experimentation, and ex vivo tissue studies. Three probe designs with 8, 9, and 17 electrodes, respectively, were analyzed through finite element method based simulations. One mm diameter spherical inclusions () are positioned at various locations within a hemispherical background () of radius 5 mm. An 8-electrode configuration is not able to localize the inclusion at these positions while 9 and 17-electrode configurations are able to accurately reconstruct the inclusion at maximum depth of 1 mm and 3 mm, respectively. All three probe designs were constructed and evaluated using saline phantoms and ex vivo porcine and human prostate tissues. The 17-electrode probe performed best in saline phantom studies, accurately reconstructing high contrast, 1-mm-diameter metal cylindrical inclusions in a saline bath () with a position and area error of 0.46 mm and 0.84 , respectively. Additionally, the 17-electrode probe was able to adequately distinguish cancerous from benign tissues in three ex vivo human prostates. Simulations, bench-top saline experiments, and ex vivo tissue sampling suggest that for intraoperative surgical margin assessment during RALP, the 17-electrode probe (as compared to an 8 and 9 electrode probe) will be necessary to provide sufficient accuracy and sensitivity.
机译:通过模拟,台式实验和离体组织研究检查了用于机器人辅助腹腔镜前列腺切除术(RALP)期间术中手术切缘评估的放射状微内窥镜电阻抗探针。通过基于有限元方法的仿真分析了分别具有8个,9个和17个电极的三种探头设计。直径为1毫米的球形夹杂物()位于半径为5毫米的半球形背景()中的各个位置。 8电极配置不能将夹杂物定位在这些位置,而9电极和17电极配置则可以分别在1 mm和3 mm的最大深度处准确地重建夹杂物。使用盐水模型和离体猪和人前列腺组织构建和评估所有三个探针设计。 17电极探针在盐水体模研究中表现最佳,可在盐水浴()中准确重建高对比度,直径为1毫米的金属圆柱形夹杂物,位置和面积误差分别为0.46毫米和0.84。此外,该17电极探针能够充分区分三个离体人体前列腺中的癌性组织和良性组织。模拟,台式盐水实验和离体组织采样表明,在RALP期间进行术中手术切缘评估时,必须使用17电极探针(与8和9电极探针相比),以提供足够的准确性和灵敏度。

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