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放射性血管耗竭颈部一期显微重建中常见的颈总动脉-颈内静脉动静脉环。

Common Carotid-to-Internal Jugular Arteriovenous Loop for Single-Stage Microsurgical Reconstruction in the Radiated Vessel-Depleted Neck.

机构信息

Division of Plastic Surgery, Wright State University Boonshoft School of Medicine, Dayton.

Department of Otolaryngology, Kettering Medical Center, Kettering.

出版信息

J Craniofac Surg. 2021;32(2):711-715. doi: 10.1097/SCS.0000000000006953.

Abstract

Management of head and neck defects in a radiated field can be quite challenging owing to the dearth of vasculature and significant degree of post-radiation fibrosis. In this setting, arteriovenous (AV) loop vascular grafts can bypass nonviable local vessels to provide viable and reliable inflow and outflow vessels for free tissue transfer in an otherwise hostile environment. Prior reports of the Corlett loop utilizing a cephalic vein transposition has been described however a common carotid-to-internal jugular AV loop has not been recently reported. Three patients underwent carotid artery to internal jugular vein AV loop creation to facilitate free-flap reconstruction secondary to radiation-induced vessel depletion. The specific technique described utilizes the saphenous vein as a donor and spares the cephalic vein for the possibility of flap complication. All three cases resulted in successful reconstruction, maintaining healthy tissue, vascular flow, and flap viability at all follow-up intervals. In our experience, vascular augmentation via AV loop formation provides reliable vascular inflow and outflow in the vessel-depleted neck to facilitate microvascular reconstruction. Sparing the cephalic vein yields an additional salvage mechanism in the event of venous congestion.

摘要

由于辐射区域内血管稀少和严重的放射性纤维化,头颈部缺陷的管理极具挑战性。在这种情况下,动静脉(AV)环血管移植物可以绕过无活力的局部血管,为游离组织转移提供有活力和可靠的流入和流出血管,即使在恶劣的环境中也是如此。先前已经描述了使用头静脉转位的 Corlett 环的报告,但是最近没有报道过颈总动脉到颈内静脉的 AV 环。三例患者因放射性血管耗竭而行颈总动脉到颈内静脉 AV 环形成以促进游离皮瓣重建。所描述的具体技术利用隐静脉作为供体,并为皮瓣并发症保留头静脉。所有三种情况均成功重建,在所有随访间隔内保持健康组织、血管流量和皮瓣活力。根据我们的经验,通过 AV 环形成进行血管增强可在血管耗竭的颈部提供可靠的血管流入和流出,以促进微血管重建。保留头静脉在发生静脉充血时提供了另一种挽救机制。

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