Department of Plastic Surgery, Graduate School of Medicine, University of Tokyo, Japan, Hongo 7-3-1, Bunkyo-ku, Tokyo, 113-8655, Japan.
Department of Plastic Surgery, Jichi Medical University, Japan, Yakushiji 3311, Shimotsuke-City, Tochigi, 329-0498, Japan.
Sci Rep. 2017 Aug 29;7(1):9643. doi: 10.1038/s41598-017-10115-5.
Compromised circulation is a potential complication during the postoperative period following tissue transplantation. The use of a monitoring device allows physicians to detect compromised circulation immediately. Such monitoring devices need to be continuously usable, wearable, and area-detectable. However, existing devices fail to satisfy all of these requirements simultaneously. We developed a wearable, multipoint pulse wave-monitoring device. An array of reflective optical sensors implemented on a thin film substrate was used as a lightweight and flexible probe. As a model of tissue transplantation, an inguinal flap in a Wistar rat was dissected and freed from all subcutaneous tissue. By ligating the artery or vein, ischemia or congestion was induced in the tissue. In a human study, ischemia or congestion was induced in the palm by pressing the feeding artery or cutaneous vein, respectively. The amplitude of the pulse wave was evaluated using the power spectrum of Fourier transformed signals. Pulse wave amplitude significantly decreased under compromised circulation in both animal and human models. Moreover, we accomplished 1 week of continuous wireless monitoring in healthy subjects. These results demonstrated the potential utility of the developed device in postoperative blood-flow monitoring to improve the rescue rate of transplanted tissue.
循环受损是组织移植术后的一种潜在并发症。使用监测设备可以让医生立即发现循环受损。这种监测设备需要能够持续使用、可穿戴且能探测到特定区域。然而,现有的设备并不能同时满足所有这些要求。我们开发了一种可穿戴的多点脉搏波监测设备。一个由薄膜基底上的反射式光学传感器组成的阵列被用作轻便灵活的探头。作为组织移植的模型,在 Wistar 大鼠的腹股沟皮瓣中,将其从所有皮下组织中解剖出来并游离。通过结扎动脉或静脉,可以在组织中引起缺血或淤血。在人体研究中,通过按压供血动脉或皮静脉分别引起手掌的缺血或淤血。使用傅里叶变换信号的功率谱来评估脉搏波的幅度。在动物和人体模型中,循环受损时脉搏波幅度显著降低。此外,我们在健康受试者中实现了长达 1 周的连续无线监测。这些结果表明,所开发的设备在术后血流监测方面具有潜在的应用价值,有助于提高移植组织的抢救成功率。