• 제목/요약/키워드: Perforator

검색결과 273건 처리시간 0.019초

시체 해부를 통한 다리의 얕은종아리신경 동반동맥과 앞근육사이막에 존재하는 관통가지에 관한 해부학적 연구 (Anatomical Study of Superficial Peroneal Nerve Accessory Artery and Perforators in the Anterior Intermuscular Septum of Lower Leg Using Cadaveric Dissection)

  • 김준식;신상호;최태현;이경석;김남균
    • Archives of Plastic Surgery
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    • 제33권6호
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    • pp.695-699
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    • 2006
  • Purpose: In the 1990s, skin island flap supplied by the vascular axis of the sensitive superficial nerves had been introduced. For example, neurocutaneous flaps supplied by the vascular axis of the sural nerve and saphenous nerve have been used. But the flap supplied by the vascular axis of superficial peroneal nerve has not been used commonly. Because there have been few anatomical reports about the superficial peroneal nerve accessory artery(SPNAA), we could not apply the neurocutaneous flap supplied by SPNAA. The aim of this study is to investigate the anatomy of SPNAA, number and location of its perforators, and septocutaneous perforators from the anterior tibial artery in anterior intermuscular septum. Methods: So, we dissected a total of eight cadavers. Measurements were made of the positions of the dissected arteries and perforators from the head of the fibula. Results: In all cadavers the superior lateral peroneal artery was originated from the anterior tibial artery and contributed SPNAA. Arising from the anterior tibial artery an average of 5.63 cm inferior to the fibular head, it varied from 10 cm to 16 cm in length. SPNAA gave off an average of 4.38 perforators to supply lateral aspect. In one case the inferior lateral peroneal artery was present and arose from the anterior tibial artery 18 cm inferior to the fibular head. There were an average of 3.38 direct septocutaneous perforators from the anterior tibial artery. Conclusion: Septocutaneous perforators from SPNAA mainly exist from proximal 1/6 to 3/5 of lower leg. In the distal 1/3 of lower leg where the accessory artery was disappeared, exist mainly direct septocutaneous perforators from the anterior tibial artery. Our results can be helpful to applications of the neurocutaneous flap using SPNAA or fasciocutaneous flap based on direct septocutaneous perforators.

외측대퇴 유리피판을 이용한 두경부 결손의 재건 (Reconstruction of the Head and Neck Defects Using Lateral Thigh Free Flap)

  • 이내호;양경무
    • Archives of Reconstructive Microsurgery
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    • 제7권2호
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    • pp.146-156
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    • 1998
  • 저자들은 1997년 1월부터 1998년 7월까지 두경부 악성종양 및 반안면왜소증과 같은 선천성 안면기형을 주소로 본원에 내원하였던 환자 9명을 대상으로 하여 9례의 외측대퇴 유리피판술을 시행하여 다음과 같은 결과를 얻을 수 있었다. 첫째, 두경부 재건에 있어서 외측대퇴 유리피판은 다른 유리피판술에 비해 여러 장점을 가지고 있었다. 특히, 공여부 추형이 노출되지 않는 부위이며 동시에 두팀이 수술에 참여할 수 있어서 수술시간이 단축될 수 있었다. 둘째, 술후 방사선치료를 시행하면 피판의 모발은 사라지지만 모공의 과각화증 및 색조 침착이 증가하므로, 외측대퇴부에 모발이 많은 환자는 술후 방사선치료의 여부와 관계없이 미용적인 금기사항에 해당한다. 셋째, 악성종양 절제후에 발생하는 결손의 재건시 피판의 두께가 문제시 되지 않았으며, 피판의 두께는 피판을 도안할 때의 위치, 성(sex), 피하지방층의 제거정도, 근육의 포함 정도, 술 후 피판의 위축정도에 따라 조절 가능하였다. 넷째, 모든 증례에서 정맥이식없이 혈관문합이 가능하였으므로 두경부 재건시 혈관경의 길이는 충분한 것으로 사료된다. 다섯째, 가능한 피판을 장축으로 길게 도안하여 두 번째 또는 네 번째 관통동맥을 포함시켜 수술 후 발생할지도 모르는 혈류부전에 대비하는 것도 피판의 생존률을 높이는 좋은 방법으로 사료된다.

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High-Resolution Intracranial Vessel Wall MRI Findings Among Different Middle Cerebral Artery Territory Infarction Types

  • So Yeon Won;Jihoon Cha;Hyun Seok Choi;Young Dae Kim;Hyo Suk Nam;Ji Hoe Heo;Seung-Koo Lee
    • Korean Journal of Radiology
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    • 제23권3호
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    • pp.333-342
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    • 2022
  • Objective: Intracranial atherosclerotic stroke occurs through various mechanisms, mainly by artery-to-artery embolism (AA) or branch occlusive disease (BOD). This study evaluated the spatial relationship between middle cerebral artery (MCA) plaques and perforating arteries among different MCA territory infarction types using vessel wall magnetic resonance imaging (VW-MRI). Materials and Methods: We retrospectively enrolled patients with acute MCA infarction who underwent VW-MRI. Thirty-four patients were divided into three groups according to infarction pattern: 1) BOD, 2) both BOD and AA (BOD-AA), and 3) AA. To determine the factors related to BOD, the BOD and BOD-AA groups were combined into one group (with striatocapsular infarction [BOD+]) and compared with the AA group. To determine the factors related to AA, the BOD-AA and AA groups were combined into another group (with cortical infarction [AA+]) and compared with the BOD group. Plaque morphology and the spatial relationship between the perforating artery orifice and plaque were evaluated both quantitatively and qualitatively. Results: The plaque margin in the BOD+ group was closer to the perforating artery orifice than that in the AA group (p = 0.011), with less enhancing plaque (p = 0.030). In the BOD group, plaques were mainly located on the dorsal (41.2%) and superior (41.2%) sides where the perforating arteries mainly arose. No patient in the AA group had overlapping plaques with perforating arteries at the cross-section where the perforator arose. Perforating arteries associated with culprit plaques were most frequently located in the middle two-thirds of the M1 segment (41.4%). The AA+ group had more stenosis (%) than the BOD group (39.73 ± 24.52 vs. 14.42 ± 20.96; p = 0.003). Conclusion: The spatial relationship between the perforating artery orifice and plaque varied among different types of MCA territory infarctions. In patients with BOD, the plaque margin was closer and blocked the perforating artery orifice, and stenosis degree and enhancement were less than those in patients with AA.