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Electrosurgical knife equipped with diffused reflectance spectroscopy sensing for tumor margin detection during breast conserving surgery - A phantom study

机译:电外科刀具配备弥漫性反射光谱检测,用于乳房保守手术期间的肿瘤边缘检测 - 幻影研究

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Distinguishing the diseased breast tissue from the healthy tissue is a sorely challenging task for the surgeons during breast conserving surgery (BCS) as both tissues own relatively similar visual and haptic characteristics. It has been shown that diffused reflectance spectroscopy (DRS) has the potential to be used as a real-time tumor margin detection technique during BCS. In this research, an electrosurgical knife is equipped with fiber-based DRS sensing to provide the surgeon with real-time oncological guidance during BCS. To prevent overheating of the fibers, they were placed inside quartz tubes which were mounted on the electrosurgical knife. The effect of using quartz tubes and debris formation during electrosurgery on the DRS measurements on porcine tissue was investigated. Furthermore to investigate the performance of the new device, a heterogeneous breast phantom representing optical properties and anatomical shape of the real breast was developed. The new device was then used to cut through the phantom's layers to assess the performance of the new knife while cutting. Finally, a BCS was performed on the phantom using the new knife without receiving visual and haptic feedback from the tissue. The results show that both using the quartz tubes and the formed debris do not have a significant effect on the DRS output. Moreover, the DRS outputs obtained during cutting the layered phantom showed the transition between the layers clearly, demonstrating that the cutting effect on the phantom tissue does not significantly affect the measurements . The X-ray images from the phantom before and after BCS using the new device confirmed the complete resection of the tumors from the breast phantom. The results indicate that the electrosurgical knife equipped with DRS is a promising technique for simultaneously distinguishing and cutting the tissue, and assessing real-time tumor margins during BCS.
机译:将患病乳腺组织与健康组织区分开是乳房保守手术(BCS)期间外科医生的严重具有挑战性的任务,因为这两个组织都具有相对相似的视觉和触觉特征。已经表明,扩散反射率光谱(DRS)在BCS期间具有用作实时肿瘤边缘检测技术的可能性。在这项研究中,电外科刀具配备有基于纤维的DRS感测,以在BCS期间提供实时肿瘤的外科医生。为了防止纤维过热,将它们放置在石英管内,该石英管安装在电外科刀上。研究了在电气外科术期间使用石英管和碎片形成的影响猪组织的DRS测量。此外,为了研究新装置的性能,开发了代表真正乳房的光学性质和解剖形状的异质乳房幻影。然后,新设备用于切割幻影层,以在切割时评估新刀的性能。最后,使用新刀在虚线上进行虚拟机,而不从组织接收视觉和触觉反馈。结果表明,使用石英管和形成的碎片在DRS输出没有显着影响。此外,在切割分层模型期间获得的DRS输出显然显示了层之间的过渡,证明了对幻像组织的切削效应不会显着影响测量。使用新设备的BCS之前和之后的幻影从幻像中的X射线图像证实了从乳房幻影中完全切除肿瘤。结果表明,配备有DRS的电外科刀是同时区分和切割组织的有希望的技术,并在BCS期间评估实时肿瘤余量。

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