Suzuki Yushi, Kajita Hiroki, Watanabe Shiho, Otaki Marika, Okabe Keisuke, Sakuma Hisashi, Takatsume Yoshifumi, Imanishi Nobuaki, Aiso Sadakazu, Kishi Kazuo
Department of Plastic and Reconstructive Surgery, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.
Department of Plastic and Reconstructive Surgery, Tokyo Dental College Ichikawa General Hospital, Chiba 272-8513, Japan.
J Clin Med. 2021 Dec 30;11(1):194. doi: 10.3390/jcm11010194.
Lymphaticovenular anastomosis (LVA) is a widely performed surgical procedure for the treatment of lymphedema. For good LVA outcomes, identifying lymphatic vessels and venules is crucial. Photoacoustic lymphangiography (PAL) is a new technology for visualizing lymphatic vessels. It can depict lymphatic vessels at high resolution; therefore, this study focused on how to apply PAL for lymphatic surgery. To visualize lymphatic vessels, indocyanine green was injected as a color agent. PAI-05 was used as the photoacoustic imaging device. Lymphatic vessels and veins were visualized at 797- and 835-nm wavelengths. First, it was confirmed whether the branching of the vasculature as depicted by the PAL was consistent with the actual branching of the vasculature as confirmed intraoperatively. Second, to use PAL images for surgical planning, preoperative photoacoustic images were superimposed onto the patient limb through augmented reality (AR) glasses (MOVERIO Smart Glass BT-30E). Lymphatics and venule markings drawn using AR glasses were consistent with the actual intraoperative images obtained during LVA. To anastomose multiple lymphatic vessels, a site with abundant venous branching was selected as the incision site; and selecting the incision site became easier. The anatomical morphology obtained by PAL matched the surgical field. AR-based marking could be very useful in future LVA.
淋巴管静脉吻合术(LVA)是一种广泛应用于治疗淋巴水肿的外科手术。为了获得良好的LVA手术效果,识别淋巴管和小静脉至关重要。光声淋巴管造影术(PAL)是一种可视化淋巴管的新技术。它能够以高分辨率描绘淋巴管;因此,本研究聚焦于如何将PAL应用于淋巴外科手术。为了可视化淋巴管,注射吲哚菁绿作为显色剂。使用PAI - 05作为光声成像设备。在797纳米和835纳米波长下可视化淋巴管和静脉。首先,确认PAL所描绘的脉管系统分支是否与术中确认的脉管系统实际分支一致。其次,为了将PAL图像用于手术规划,通过增强现实(AR)眼镜(MOVERIO Smart Glass BT - 30E)将术前光声图像叠加到患者肢体上。使用AR眼镜绘制的淋巴管和小静脉标记与LVA术中实际获得的图像一致。为了吻合多条淋巴管,选择静脉分支丰富的部位作为切口部位;并且选择切口部位变得更加容易。PAL获得的解剖形态与手术视野相匹配。基于AR的标记在未来的LVA手术中可能非常有用。