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find Keyword "额部皮瓣" 4 results
  • IMAGING STUDY ON SUPRATROCHLEAR ARTERY AND ITS APPLICATION IN NASAL RECONSTRUCTION

    【Abstract】 Objective To study the image of the muscular and cutaneous branches of supratrochlear artery by internal and external carotid angiography and to design the frontal flap for nasal reconstruction. Methods The muscular and cutaneous branches of supratrochlear artery of 30 adults were investigated through internal and external carotid angiography and three-dimensional reconstruction of vessels to explore the courses of branches of supratrochlear artery and their communication with supraorbital artery. According to image observation, the frontal flap was designed and used to perform nasal reconstruction in 11 cases of nasal defects, including 7 males and 4 females with an average age of 23 years (range, 15-48 years). The nasal defect ranged from 3.0 cm × 2.5 cm to 5.0 cm × 3.5 cm. Results Internal carotid angiography and three-dimensional imaging of the vessels showed that supratrochlear artery was found in 30 patients, with a diameter of (0.9 ± 0.6) mm. The superficial cutaneous branch appeared constantly with a diameter of (0.7 ± 0.3) mm. Deep muscular branch traveled among frontal muscle, with a diameter of (0.5 ± 0.5) mm and a length of (32.0 ± 6.2) mm, and it was missing in 4 patients, the branches communicated with each other and with supraorbital artery. All flaps survived with good appearance and without cartilage exposure. After 4 months to 3 years of follow-up, the postoperative aesthetic appearance and function of nasal tip, alar, and columella were satisfactory; the height and slope length of the external nose were moderate; and the reconstructed nose had good texture and normal ventilation function without constriction of naris. Conclusion Imaging studies support the fact that supratrochlear artery has constant cutaneous branch. The application of frontal flap pedicled with cutaneous branch can improve the effectiveness of nasal reconstruction.

    Release date:2016-08-31 04:21 Export PDF Favorites Scan
  • APPLIED ANATOMY STUDY OF SUPRATROCHLEAR VEIN IN RECONSTRUCTION OF NASAL DEFECT

    Objective To investigate the variation of supratrochlear vein and its relationship with supratrochlear artery and to provide anatomical basis for the reduction of congestive necrosis of paramedian forehead flap in the reconstruction of nasal defect. Methods Twenty sides of 10 antiseptic head specimens were anatomized macroscopically and microscopically. Using the horizontal and anterior median l ine of supraorbital rim as X and Y axis to locate supratrochlear vein and artery, the angles between the supratrochlear artery and vein and the supraorbital rim were detected, and the distances from the supratrochlear artery and vein to the anterior median l ine on the horizontal l ine of supraorbital rim were measured. Results The distance from the supratrochlear artery and supratrochlear vein to the anterior median l ine on thehorizontal l ine of the supraorbital rim was (16.2 ± 2.1) mm and (9.7 ± 3.1) mm, respectively, indicating there was a significant difference (P lt; 0.05). The angle between the supratrochlear vein and artery and the supraorbital rim was (83.3 ± 6.4)° and (80.5 ± 4.2)°, respectively, indicating there was no significant difference (P gt; 0.05). Two asymmetric supratrochlear veins were observed around the area of anterior median l ine in every specimen, one was far from the anterior median l ine (group A) and the other was close to or even on the l ine (group B). The distance from the supratrochlear veins to the anterior median l ine on the horizontal l ine of the supraorbital rim was (11.0 ± 1.9) mm in group A and (7.9 ± 3.2) mm in group B, showing there was a significant difference between two groups (P lt; 0.05). For all the specimens, the supratrochlear vein ran laterally along the medial anterior median l ine of the supratrochlear artery (one side was just on the anterior median l ine). The distance from the supratrochlear veins to the supratrochlear arteries on the horizontal l ine of the supraorbital rim was (6.6 ± 3.2) mm, (5.5 ± 2.0) mm in group A and (7.9 ± 3.9) mm in group B, indicating the difference between two groups was significant (P lt; 0.05). Conclusion The pedicle of the paramedian forehead flap should be wide enough (1.5-2.0 cm), the lateral boundary of the pedicle should be the supratrochlear artery while the medial boundary should be the supratrochlear vein.

    Release date:2016-09-01 09:05 Export PDF Favorites Scan
  • 额部皮瓣移位联合耳软骨移植的下眼睑一期再造

    【摘 要】 目的 总结下眼睑全层缺损的修复再造经验。 方法 1994 年7 月- 2005 年6 月,收治25 例下眼睑缺损患者。男11 例,女14 例;年龄48 ~ 83 岁。下眼睑缺损原因:基底细胞癌9 例,鳞状细胞癌11 例,皮脂腺癌5 例。肿瘤切除后下眼睑缺损范围达50% ~ 100%。病程3 个月~ 5 年,术前活检确诊为恶性肿瘤。手术采用长20 mm、宽5 ~ 6 mm 自体耳软骨游离移植作为眼睑内层,切取30 mm × 12 mm ~ 50 mm × 20 mm 的额部皮瓣作为眼睑外层再造眼睑。 结果 术后患者皮瓣均成活,创面Ⅰ期愈合。供区均未形成继发性缺损,创面Ⅰ期愈合。8 例术后4 ~ 5 d 出现浅层点状角膜炎,经滴抗生素眼药水后治愈。25 例均获随访6 个月~ 5 年。2 例皮脂腺癌浸及泪小点,连同部分泪小管被切除致溢泪;2 例下眼睑轻度外翻致轻度闭合不全。再造眼睑外形美观,色泽、质地与周围皮肤匹配良好。随访期恶性肿瘤均无复发。 结论 额部皮瓣移位联合耳软骨移植是修复下眼睑全层缺损的一种较好方法。

    Release date:2016-09-01 09:12 Export PDF Favorites Scan
  • Application of indocyanine green angiography in repair of facial soft tissue defect using superficial temporal artery based forehead flap

    ObjectiveTo explore the feasibility of using indocyanine green angiography in mapping the superficial temporal vessels and assisting design and harvesting of the superficial temporal artery based forehead flap. Methods A clinical data of 14 patients with facial soft tissue defects repaired with superficial temporal artery based forehead flaps between October 2015 and November 2022 was retrospectively analyzed. There were 9 males and 5 females with a median age of 9.5 years (range, 3-38 years). The forehead flaps were used to reconstruct facial soft tissue defects following excision of facial scar (8 cases) or congenital melanocyte nevus (6 cases). The size of defects ranged from 3 cm×2 cm to 24 cm×9 cm. Before operation, the indocyanine green angiography was used to map the superficial temporal artery and vein, and to analyze the relationship of the arteries and veins. The forehead flaps with unilateral superficial temporal fascia as the pedicle was transferred to repair the small facial defect in 2 cases. The facial pedicle contained the frontal branch of the superficial temporal artery and 2 cm of the superficial temporal fascia around the vessel, and the tiny accompanying vein of the frontal branch of the superficial temporal artery was used as the outflow of the flap. The forehead flaps with the skin pedicle including bilateral or unilateral superficial temporal fascia and the overlying skin was pre-expanded and transferred to repair the large facial defect in 12 cases. The skin pedicle contained the frontal branch of superficial temporal artery and one of main branches of superficial temporal vein. Among the 12 cases, the frontal branch of superficial temporal vein was used as the outflow in 4 cases, and the parietal branch was used as the outflow in 8 cases. The size of the flaps ranged from 3 cm×2 cm to 30 cm×13 cm. The skin pedicles were divided at 3 weeks after the flap transfer. ResultsIndocyanine green angiography could clearly showed the course and branching of the superficial temporal artery and vein. Individual differences existed in the location where the frontal branch of the superficial temporal artery entered the forehead. The superficial temporal vein had great variability and did not follow the artery. One patient had expander-related complication, which resulted in 3-cm flap necrosis. The necrotic tissue was debrided and repaired with skin grafting. The other flaps totally survived and the incisions healed by first intention. All patients were followed up 2-24 months, with a median of 11.5 months. The color, texture, and thickness of the flaps matched well with those of recipient sites. Hypertrophic scar was not observed in recipient or donor site. All patients were satisfied with the reconstructive outcomes. ConclusionIndocyanine green angiography can clearly visualize the course and the branches of the superficial temporal arteries and veins, which can help surgeons understand the position, distribution, and concomitant relationship of the superficial temporal vessels, and make a rational surgical plan of the forehead flap.

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