Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan; Center for Integration of Advanced Medicine, Life Science and Innovative Technology, Kyushu University Hospital, Fukuoka, Japan.
Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan; Center for Integration of Advanced Medicine, Life Science and Innovative Technology, Kyushu University Hospital, Fukuoka, Japan; Center of Endoscopy and Endoscopic Surgery, Medical and Dental Hospital, Fukuoka Dental College, Fukuoka, Japan.
J Surg Res. 2019 Oct;242:11-22. doi: 10.1016/j.jss.2019.04.033. Epub 2019 May 3.
Biomedical imaging devices that utilize the optical characteristics of hemoglobin (Hb) have become widespread. In the field of gastroenterology, there is a strong demand for devices that can apply this technique to surgical navigation. We aimed to introduce our novel multispectral device capable of intraoperatively performing quantitative imaging of the oxygen (O) saturation and Hb amount of tissues noninvasively and in real time, and to examine its application for deciding the appropriate anastomosis point after subtotal or total esophagectomy.
A total of 39 patients with esophageal cancer were studied. Tissue O saturation and Hb amount of the gastric tube just before esophagogastric anastomosis were evaluated using a multispectral tissue quantitative imaging device. The anastomosis point was decided depending on the quantitative values and patterns of both the tissue O saturation and Hb amount.
The device can instantaneously and noninvasively quantify and visualize the tissue O saturation and Hb amount using reflected light. The tissue Hb status could be classified into the following four types: good circulation type, congestion type, ischemia type, and mixed type of congestion and ischemia. Postoperative anastomotic failure occurred in 2 cases, and both were mixed cases.
The method of quantitatively imaging the tissue O saturation and Hb level in real time and noninvasively using a multispectral device allows instantaneous determination of the anastomosis and related organ conditions, thereby contributing to determining the appropriate treatment direction.
利用血红蛋白(Hb)光学特性的生物医学成像设备已经得到广泛应用。在胃肠病学领域,人们强烈需要能够将该技术应用于手术导航的设备。我们旨在介绍我们的新型多光谱设备,该设备能够在手术过程中无创且实时地对组织的氧(O)饱和度和 Hb 量进行定量成像,并研究其在决定次全或全食管切除术后吻合点的应用。
共有 39 例食管癌患者接受了研究。使用多光谱组织定量成像设备评估胃管在进行食管胃吻合术之前的组织 O 饱和度和 Hb 量。根据组织 O 饱和度和 Hb 量的定量值和模式来决定吻合点。
该设备可以即时、无创地定量和可视化反射光中的组织 O 饱和度和 Hb 量。组织 Hb 状态可以分为以下四种类型:循环良好型、充血型、缺血型和充血缺血混合型。术后吻合失败发生在 2 例,均为混合类型。
使用多光谱设备实时无创地定量成像组织 O 饱和度和 Hb 水平的方法可以即时确定吻合和相关器官的状况,从而有助于确定适当的治疗方向。