Lai Marco, van der Stel Stefan D, Groen Harald C, van Gastel Mark, Kuhlmann Koert F D, Ruers Theo J M, Hendriks Benno H W
IGT & US Devices & Systems, Philips Research, High Tech, Campus 34, 5656 AE Eindhoven, The Netherlands.
Department of Electrical Engineering, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.
J Imaging. 2022 Mar 31;8(4):94. doi: 10.3390/jimaging8040094.
Surgical excision is the golden standard for treatment of intestinal tumors. In this surgical procedure, inadequate perfusion of the anastomosis can lead to postoperative complications, such as anastomotic leakages. Imaging photoplethysmography (iPPG) can potentially provide objective and real-time feedback of the perfusion status of tissues. This feasibility study aims to evaluate an iPPG acquisition system during intestinal surgeries to detect the perfusion levels of the microvasculature tissue bed in different perfusion conditions. This feasibility study assesses three patients that underwent resection of a portion of the small intestine. Data was acquired from fully perfused, non-perfused and anastomosis parts of the intestine during different phases of the surgical procedure. Strategies for limiting motion and noise during acquisition were implemented. iPPG perfusion maps were successfully extracted from the intestine microvasculature, demonstrating that iPPG can be successfully used for detecting perturbations and perfusion changes in intestinal tissues during surgery. This study provides proof of concept for iPPG to detect changes in organ perfusion levels.
手术切除是肠道肿瘤治疗的金标准。在该手术过程中,吻合口灌注不足会导致术后并发症,如吻合口漏。成像光电容积描记法(iPPG)有可能提供组织灌注状态的客观实时反馈。这项可行性研究旨在评估肠道手术期间的iPPG采集系统,以检测不同灌注条件下微血管组织床的灌注水平。该可行性研究评估了3例接受部分小肠切除术的患者。在手术过程的不同阶段,从肠道的完全灌注、未灌注和吻合部位采集数据。实施了采集过程中限制运动和噪声的策略。成功从肠道微血管中提取了iPPG灌注图,表明iPPG可成功用于检测手术期间肠道组织的扰动和灌注变化。本研究为iPPG检测器官灌注水平变化提供了概念验证。