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find Author "周建东" 5 results
  • 多束法缝合结合术后早期半弧主动屈伸治疗手指Ⅱ区屈肌腱损伤

    目的总结多束法缝合结合术后早期半弧主动屈伸治疗手指Ⅱ区屈肌腱损伤的临床疗效。 方法2008年3月-2014年9月,对87例(189指)手指Ⅱ区屈肌腱损伤患者采用多束法缝合修复屈肌腱,术后早期行半弧主动屈伸练习。其中男58例,女29例;年龄21~69岁,平均43岁。致伤原因:锐器切割伤34例,电锯伤47例,机器挤压伤6例。损伤指别:示指64指,中指75指,环指45指,小指5指。受伤至手术时间1~6 h,平均4.5 h。使用Strickland-Glogovac标准评价术后手指功能恢复。 结果术后患者伤口均Ⅰ期愈合,无感染发生。87例均获随访,随访时间6~14个月,平均9个月。末次随访时功能评价获优143指,良29指,可15指,差2指,优良率91%。1例出现屈肌腱再断裂。 结论多束法缝合肌腱结合术后早期半弧主动屈伸是一种治疗手指Ⅱ区屈肌腱损伤安全且有效的方法。

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  • 外增压膝内侧-小腿内侧上部逆行岛状皮瓣修复小腿中下段软组织缺损

    目的 总结外增压膝内侧-小腿内侧上部逆行岛状皮瓣修复小腿中下段软组织缺损的疗效。 方法 2009 年1月-2011年12月,收治7例小腿中下段软组织缺损患者。男6例,女1例;年龄50~64岁,平均57岁。其中外伤致软组织缺损6例,伤后至入院时间2 h~3周;1例为外伤后广泛贴骨瘢痕形成、局部溃疡1年余,经久不愈。创面范围20 cm × 5 cm~30 cm × 7 cm。采用大小为18 cm × 6 cm~30 cm × 8 cm的外增压膝内侧-小腿内侧上部逆行岛状皮瓣修复创面,供区游离植皮修复。 结果术后皮瓣及供区植皮均成活,创面Ⅰ期愈合。4例患者获随访,随访时间4~ 6个月,平均5个月。皮瓣外观满意,膝关节功能活动良好。术前慢性溃疡患者随访期间无复发。 结论外增压膝内侧-小腿内侧上部逆行岛状皮瓣具有皮瓣切取面积大、手术操作简便等优点,是修复小腿中下段软组织缺损的较好方法。

    Release date:2016-08-31 05:39 Export PDF Favorites Scan
  • 钩掌关节骨折脱位的损伤特点及治疗方法

    目的总结钩掌关节骨折脱位的损伤特点和治疗方法。 方法2010年12月-2013年8月收治钩掌关节骨折脱位10例。男9例,女1例;年龄17~51岁,平均28.1岁。致伤原因:拳击伤8例,重物击伤1例,交通事故伤1例。9例新鲜损伤根据Cain等分型标准,ⅠA型1例,ⅠB型1例,Ⅱ型3例,Ⅲ型4例;均行切开复位内固定。1例钩掌关节骨折脱位畸形愈合,伤后2年6个月行钩掌关节融合术。 结果术后患者切口均Ⅰ期愈合。10例均获随访,随访时间8~24个月,平均10.4个月。术后无环、小指麻木及手内在肌萎缩,无再骨折或脱位发生。9例新鲜骨折均于术后3个月内获得愈合,钩掌关节均恢复正常解剖关系;末次随访时握力达32.8~42.5 kg,平均36.5 kg;Cooney腕关节评分85~100分,平均92.5分;疼痛视觉模拟评分(VAS)均为0分。另1例钩掌关节融合术后10周植骨融合,术后12个月握力12 kg,Cooney腕关节评分70分,VAS评分0分。 结论钩掌关节骨折脱位多为拳击伤,损伤程度与掌骨纵向撞击和屈曲角度有关;正侧位X线片不能很好显露钩掌关节,旋前斜位X线片和CT可评估损伤类型;通过切开复位内固定获得正常解剖关系可取得良好效果。

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  • A prospective study of super-thin anterolateral thigh flap harvesting assisted by high-frequency color Doppler ultrasound in detecting perforators in deep adipose layers

    Objective To investigate the clinical application of high-frequency color Doppler ultrasound (HFCDU) in detecting perforators in the deep adipose layers for harvesting super-thin anterolateral thigh flap (ALTF). Methods Between August 2019 and January 2023, 45 patients (46 sides) with skin and soft tissue defects in the foot and ankle were treated, including 29 males and 16 females, aged from 22 to 62 years, with an average of 46.7 years. The body mass index ranged from 19.6 to 36.2 kg/m2, with an average of 23.62 kg/m2. The causes of injury included traffic accident injury in 15 cases, heavy object crush injury in 20 cases, mechanical injury in 8 cases, heat crush injury in 1 case, and chronic infection in 1 case. There were 20 cases on the left side, 24 cases on the right side, and 1 case on both sides. After thorough debridement, the wound size ranged from 5 cm×4 cm to 17 cm×11 cm. All patients underwent free super-thin ALTF transplantation repair. HFCDU was used to detect the location of the perforators piercing the deep and superficial fascia, as well as the direction and branches of the perforators within the deep adipose layers before operation. According to the preoperative HFCDU findings, the dimensions of the super-thin ALTF ranged from 6 cm×4 cm to 18 cm×12 cm. The donor sites of the flaps were directly sutured. Results A total of 55 perforators were detected by HFCDU before operation, but 1 was not found during operation. During operation, a total of 56 perforators were found, and 2 perforators were not detected by HFCDU. The positive predictive value of HFCDU for identifying perforator vessels was 98.2%, and the sensitivity was 96.4%. Among the 54 perforators accurately located by HFCDU, the orientation of the perforators in the deep adipose layers was confirmed during operation. There were 21 perforators (38.9%) traveled laterally and inferiorly, 12 (22.2%) traveled medially and inferiorly, 14 (25.9%) traveled laterally and superiorly, 5 (9.3%) traveled medially and superiorly, and 2 (3.7%) ran almost vertically to the body surface. Among the 54 perforators accurately located by HFCDU, 35 were identified as type 1 perforators and 12 as type 2 perforators (HFCDU misidentified 7 type 2 perforators as type 1 perforators). The sensitivity of HFCDU in identifying type 1 perforators was 100%, with a positive predictive value of 83.3%. For type 2 perforators, the sensitivity was 63.2%, and the positive predictive value was 100%. The surgeries were successfully completed. The super-thin ALTF had a thickness ranging from 2 to 6 mm, with an average of 3.56 mm. All super-thin ALTF survived, however, 1 flap experienced a venous crisis at 1 day after operation, but it survived after emergency exploration and re-anastomosis of the veins; 1 flap developed venous crisis at 3 days after operation but survived after bleeding with several small incisions; 3 flaps had necrosis at the distal edge of the epidermis, which healed after undergoing dressing changes. All 45 patients were followed up 6-18 months (mean, 13.6 months). Three flaps required secondary defatting procedures, while the rest had the appropriate thickness, and the overall appearance was satisfactory. Conclusion Preoperative application of HFCDU to detect the perforator in the deep adipose layers can improve the success and safety of the procedure by facilitating the harvest of super-thin ALTF.

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  • Application of three-dimensional ultrasound technique in repairing dorsal foot wounds with medial sural artery perforator flaps

    Objective To investigate the accuracy of positioning perforator of medial sural artery with three-dimensional ultrasound technique guided by a wide band linear matrix array volume transducer probe before operation, and the effectiveness of the flap design based on this in repairing the dorsal foot wounds. Methods Between January 2019 and December 2022, 30 patients with skin and soft tissue defects of the dorsal foot were treated. There were 19 males and 11 females, with an average age of 43.9 years (range, 22-63 years). There were 12 cases of traffic accident injury, 15 cases of heavy crushing injury, and 3 cases of machine injury. The time from injury to hospitalization was 1-8 hours (mean, 3.5 hours). The wounds in size of 5 cm×3 cm to 17 cm×5 cm were thorough debrided and covered with vacuum sealing drainage dressing. Then the wounds were repaired with the medial sural artery perforator flaps after no obvious infection observed. To obtain the complete three-dimensional image, the number and position of the medial sural artery perforator branches and the position of the main blood vessels in the muscle were detected and recorded by wide band linear matrix array volume transducer probe before operation. Suitable perforating branches were selected to design the flap and guide the flap incision on this basis. The size of the perforating flap ranged from 6 cm×4 cm to 18 cm×6 cm. The sensitivity and positive predictive value were calculated by comparing preoperative exploration with intraoperative observation of perforating branches, so as to evaluate the positioning accuracy of three-dimensional ultrasound technique. The donor sites were sutured directly in 25 cases and repaired with free skin grafting in 5 cases. Results The 60 perforating branches of medial sural artery were found before operation and 58 during operation in 30 patients. Among them, pre- and intra-operative perforations were consistent with 56. The sensitivity was 93.3% and positive predictive value was 96.6%. The intramuscular position and route of the main blood vessels were basically consistent with the pre- and intra-operative observation. All flaps survived and wounds healed by first intention. All incisions at the donor sites healed by first intention, and all skin grafts survived. All patients were follow up 9-24 months (mean, 14.7 months). The appearance, color, and texture of the flaps were good, and no obvious effect on wearing shoes and walking. At last follow-up, the American Orthopaedic Foot and Ankle Society (AOFAS) ankle-hind score ranged from 80 to 92, with an average of 87.5. The patient satisfaction was excellent in 29 cases and good in 1 case. Conclusion The three-dimensional ultrasound technique guided by the wide band linear matrix array volume transducer probe can accurately locate the perforating branch of the medial sural artery, and the three-dimensional imaging is more intuitive, which can be used to guide the design and incision of the medial sural artery perforator flap.

    Release date:2024-05-13 02:30 Export PDF Favorites Scan
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