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使用光声成像测量淋巴管深度。

Measurement of lymphatic vessel depth using photoacoustic imaging.

作者信息

Suzuki Yushi, Kajita Hiroki, Urano Moemi, Watanabe Shiho, Otaki Marika, Takatsume Yoshifumi, Sakuma Hisashi, Imanishi Nobuaki, Kishi Kazuo

机构信息

Department of Plastic and Reconstructive Surgery, Keio University School of Medicine, Tokyo, Japan.

Department of Radiology, Keio University School of Medicine, Tokyo, Japan.

出版信息

Lasers Surg Med. 2023 Feb;55(2):164-168. doi: 10.1002/lsm.23629. Epub 2022 Dec 30.

Abstract

OBJECTIVES

Information regarding the depth of lymphatic vessel is important for lymphatic surgeons because rapid identification of functional lymphatic vessels and veins is necessary to perform good lymphaticovenular anastomosis, which is a surgical procedure for lymphedema cases. Photoacoustic lymphangiography (PAL) may be useful for such identification because it allows the assessment of the depth of lymphatic vessels. Thus, we aimed to measure the lymphatic vessel depth using images obtained by PAL.

METHODS

This study included healthy individuals and patients with lymphedema. In all participants, indocyanine green dissolved in dextrose was injected subcutaneously into the first and fourth webs of the foot and the lateral malleolus, and PAL was performed on the medial side of the lower leg. The lymphatic vessel depth was measured from the ankle joint, 10 cm above the medial malleolus, and 20 cm above the medial malleolus on PAL in the cross-sectional view and was compared between the participant groups.

RESULTS

The healthy group (mean age, 43.3 ± 12.9 years) included 21 limbs of 4 male and 16 female healthy individuals (bilateral limbs of 1 patient were considered). The lymphedema group (mean age, 62.0 ± 11.7 years) included 17 limbs of 3 male and 14 female patients with lymphedema. The average lymphatic vessel depths from the ankle joint, 10 cm above the medial malleolus, and 20 cm above the medial malleolus were 2.6, 4.7, and 5.6 mm in the healthy group and 3.6, 7.3, and 7.4 mm in the lymphedema group, respectively. Lymphatic vessels were significantly deeper in the lymphedema group than in the healthy group at all measurement locations.

CONCLUSIONS

Using PAL, we determined the lymphatic vessel depth in living bodies. By searching for the lymphatic vessels based on our findings, even surgeons who are relatively inexperienced with lymphatic surgery may be able to identify functional lymphatic vessels more efficiently.

摘要

目的

对于淋巴外科医生而言,有关淋巴管深度的信息至关重要,因为要进行良好的淋巴管静脉吻合术(这是一种针对淋巴水肿病例的外科手术),快速识别功能性淋巴管和静脉是必要的。光声淋巴管造影术(PAL)可能有助于这种识别,因为它能够评估淋巴管的深度。因此,我们旨在利用PAL获得的图像测量淋巴管深度。

方法

本研究纳入了健康个体和淋巴水肿患者。在所有参与者中,将溶解于葡萄糖的吲哚菁绿皮下注射到足部的第一和第四蹼以及外踝处,并在小腿内侧进行PAL检查。在PAL的横断面视图中,从踝关节、内踝上方10厘米处以及内踝上方20厘米处测量淋巴管深度,并在参与者组之间进行比较。

结果

健康组(平均年龄,43.3±12.9岁)包括4名男性和16名女性健康个体的21条肢体(1例患者的双侧肢体被纳入考虑)。淋巴水肿组(平均年龄,62.0±11.7岁)包括3名男性和14名女性淋巴水肿患者的17条肢体。在健康组中,从踝关节、内踝上方10厘米处以及内踝上方20厘米处测量的平均淋巴管深度分别为2.6毫米、4.7毫米和5.6毫米,在淋巴水肿组中分别为3.6毫米、7.3毫米和7.4毫米。在所有测量位置,淋巴水肿组的淋巴管均明显比健康组更深。

结论

通过PAL,我们确定了活体中的淋巴管深度。根据我们的研究结果寻找淋巴管,即使是在淋巴外科手术方面相对缺乏经验的外科医生也可能能够更有效地识别功能性淋巴管。

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