• Title/Summary/Keyword: Microvascular flap

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Microvascular Reconstruction of the Cranial Base Defects (두개저 결손의 미세수술적 재건술)

  • Minn, Kyung-Won;Kim, In-Chul;Lee, Min-Goo
    • Archives of Reconstructive Microsurgery
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    • v.8 no.1
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    • pp.71-76
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    • 1999
  • Until recently, the cranial base tumors were deemed unresectable due to the inability to diagnose the extent of the involvement accurately and to approach and excise the tumor safely. With refinements in CT and NMR scanning and development of craniofacial techniques, reconstruction becomes absolutely crucial in allowing successful resection of these tumors. Resection of these tumors may sometimes result in massive and complex extirpation defects that are not amendable to local tissue closure. In such cases, the free tissue transfer was a useful alternative because it can provide large amount of well-vascularized tissues and reliable separation of intracranial space from bacterial flora of the upper airway. The microvascular free tissue transfer was used in 9 patients at our center to reconstruct the cranial base defects. Of these, 8 were free rectus muscle flaps, and 1 was free latissimua dorsi muscle flap. There were 1 case of partial flap loss and 1 case of postoperative wound infection. The large, complex defects were successfully reconstructed by one stage operation and the functional and aesthetic results were satisfactory with acceptable complication rates.

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Scalp injury management by a maxillofacial surgeon in a low-resource hospital

  • Frimpong, Paul;Nguyen, Truc Thi Hoang;Nimatu, Edinam Salia;Amponsah, Emmanuel Kofi;Kim, Soung Min
    • Maxillofacial Plastic and Reconstructive Surgery
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    • v.42
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    • pp.39.1-39.5
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    • 2020
  • Background: Head or scalp injury is a life-threatening and typically accidental human injury. Most medical departments require immediate medical treatment and proper treatment with specialized medical personnel and facilities. However, in low-resource environments, such as the rural region of West Africa, the authors have treated emergency trauma patients and provided immediate treatment despite lack of resources. Case presentation: We reviewed three cases of scalp injury patients, with representative clinical information, and used these cases to outline feedback on scalp trauma treatment based on the specialty knowledge of general and emergency surgeon. Conclusions: Oral and maxillofacial surgeons are medical specialists that can immediately diagnose and treat these scalp injuries based on their medical knowledge and experience with the maxillofacial region.

Vascular Remodeling with a Microvascular Anastomotic Coupler System: A Case Report

  • Hong, Changbae;Yeo, Hyeonjung;Son, Daegu
    • Archives of Reconstructive Microsurgery
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    • v.24 no.1
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    • pp.20-23
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    • 2015
  • Despite increased utilization of microvascular anastomotic coupler (MAC) devices, the consequences have yet to be fully explored in terms of vascular regeneration. Removal of an exposed venous coupler is described herein, documenting normal circulatory flow through the remodeled site of application. A 25-year-old man who underwent open reduction and rigid fixation elsewhere for traumatic calcaneal fracture ultimately presented with a necrotic postoperative wound. The debrided defect was treated by free thigh perforator flap, incorporating a MAC device. Three months later, the flap remained viable, but the MAC itself was exposed. Structural integrity of the vessel and blood flow were sustained as the device was carefully removed, confirming true vascular remodeling in this example of MAC usage.

Reconstruction of the Finger Defect with Free Vascularized Reversed Radial Forearm Flap (유리 반전 전완피판술을 이용한 수지부 결손의 치료)

  • Chung, Duke-Whan
    • Archives of Reconstructive Microsurgery
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    • v.7 no.2
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    • pp.122-128
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    • 1998
  • Radial forearm flap is one of the most useful skin flap in hand reconstructuion with distally based reverse pedicled or free vascularized fashion. Athors modified that flap into reverse pedicled and free vascularized flap which has advantages of both methods. The modification composed with harvesting flap on recipient side distal forearm just as free flap, than apply it as reverse distal pedicled flap fashion with microvascular anastomosis with distal vascular stump of donor radial vessels. We underwent this method in 5 cases in finger reconstruction from 1996, all of the cases had sucessful results. The advantages of this method are: 1. Thin flap which is compatible to finger skin can harvest from distal forearm with very long vascular pedicle that can be passed under the subcutaneous tunnel which avoid additional skin incisions on the hand. 2. The vessels of donor site and recipient site are same vessel in effected side of forearm, which can preserve contralateral side forearm and hand keep intact. 3. The flap can cover the defects on distal portion of the fingers which is difficult in conventional reversed radial forearm pedicled flap because of limited mobilization of flap due to limitation of pedicle length reach to tip of the fingers.

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FREE VASCULARIZED SCAPULAR FLAP FOR MANDIBULAR RECONSTRUCTION (유리 혈관화 견갑골피판을 이용한 하악골 복합결손 재건)

  • Park, Kwang
    • Maxillofacial Plastic and Reconstructive Surgery
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    • v.18 no.3
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    • pp.339-347
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    • 1996
  • Prior to the advent of microvascular surgery, conventional prosthetic rehabilitation offered limited success to re-establish the physiological function in oromaxillofacial reconstruction. Microvascular surgery provided a new frontier and there are multitude of flaps. Each flap has the benefits and limitation for the application to various defects. Advantage of the scapular flaps over other reconstructive methods include the ability to design multiple cutaneous panels on a separate vascular pedicle allowing improvement in three-dimensional relationship and osseointegrated implants can be palced to restore occlusal and masticatory function. Here I present the detailed description of the important surgical anatomy as well as graft dissection and clinical application of free vascularized scapular flap.

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Salvage of Esophageal Reconstruction with Colon Free Flap (대장유리피판(Colon Free Flap)을 이용한 식도재건의 구제술)

  • Lee, Sang Woo;Min, Kyung Won
    • Archives of Plastic Surgery
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    • v.33 no.2
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    • pp.245-248
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    • 2006
  • Besides gastric pull-up or colonic interposition, microvascular technique in esophageal reconstruction has been approved reliable methods. When free intestinal transfer is considered, jejunal free flap is commonly used. We treated the patient who had undergone reconstruction with a right colon interposition and suffered from inability of swallowing because of stricture and necrosis of the interposed flap. Although we have planned jejunal free transfer, we couldn't use jejunum due to adhesion by previous gastrojejunostomy and colon interposition. Salvage procedure with microvascualr free left colon flap was executed successfully. After 9 month follow-up, the patient was able to consume a normal diet.

Breast Reconstruction with Microvascular MS-TRAM and DIEP Flaps

  • Chang, David W.
    • Archives of Plastic Surgery
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    • v.39 no.1
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    • pp.3-10
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    • 2012
  • The free muscle-sparing transverse rectus abdominis myocutaneous (MS-TRAM) and deep inferior epigastric perforator (DIEP) flaps involve transferring skin and subcutaneous tissue from the lower abdominal area and have many features that make them well suited for breast reconstruction. The robust blood supply of the free flap reduces the risk of fat necrosis and also enables aggressive shaping of the flap for breast reconstruction to optimize the aesthetic outcome. In addition, the free MS-TRAM flap and DIEP flap require minimal donor-site sacrifice in most cases. With proper patient selection and safe surgical technique, the free MS-TRAM flap and DIEP flap can transfer the lower abdominal skin and subcutaneous tissue to provide an aesthetically pleasing breast reconstruction with minimal donor-site morbidity.

The Combined Scapular and Latissimus Dorsi Free Flap (견갑피판과 광배근피판의 이중유리피판이식술)

  • Chung, Duke-Whan;Han, Chung-Soo;Kwon, Young-Ho
    • Archives of Reconstructive Microsurgery
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    • v.7 no.1
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    • pp.41-46
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    • 1998
  • Microvascular free tissue transfer technique is widely accepted for reconstruction of extensive soft tissue defects on the extremities. The system of flap based on the subscapular artery and vein provides the widest ways of composite free flaps. The possible flaps that can be harvested based on this single vascular pedicle include the scapular and parascapular skin flaps, the serratus anterior and latissimus dorsi muscular flaps, the lateral scapular bone flap, the latissimus dorsi-rib flap, and the serratus anterior-rib flap. This combined flap is available to mutiple tissue defects or complex defects because it can incorporated with skin, muscle and bone flaps. A strikig advantage is the independent vascular pedicles of each components, which allow freedom in orientation of each components. So, it can be freely applied to any forms of three demensional defects on the upper and lower extremities. The combination of scapular cutaneous flap and latissimus dorsi musculocutaneous flap can be resurfaced for massive cutaneous defects on the extremities. We report the use of the combined scapular and latissimus dorsi free flap in seven patients to reconstruct massive deefcts on the extremities. There was no flap failure and little complications and disadvantages. The anatomy of this flap is reviewed and the indication and advantages are discussed.

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Anterograde Intra-Arterial Urokinase Injection for Salvaging Fibular Free Flap

  • Lee, Dae-Sung;Jung, Sun-Il;Kim, Deok-Woo;Dhong, Eun-Sang
    • Archives of Plastic Surgery
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    • v.40 no.3
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    • pp.251-255
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    • 2013
  • We present a case of a 57-year-old male patient who presented with squamous cell carcinoma on his mouth floor with cervical and mandibular metastases. Wide glossectomy with intergonial mandibular ostectomy, and sequential reconstruction using fibular osteomyocutaneous free flap were planned. When the anastomosis between the peroneal artery of the fibular free flap and the right lingual artery was performed, no venous flow was observed at the vena comitans. Then re-anastomosis followed by topical application of papaverine and lidocaine was attempted. However, the blood supply was not recovered. Warm saline irrigation over 30 minutes was also useless. Microvascular thromboses of donor vessels were clinically suspected, so a solution of 100,000 units of urokinase was infused once through a 26-gauge angiocatheter inserted into the recipient artery just at the arterial anastomotic site, until the solution gushed out through the flap vena comitans. Immediately after the application of urokinase, arterial flow and venous return were restored. There were no complications during the follow-up period of 11 months. We believe that vibrating injuries from the reciprocating saw during osteotomies and flap insetting might be the cause of microvascular thromboses. The use of urokinase may provide a viable option for the treatment of suspicious intraoperative arterial thrombosis.

ULTRASTRUCTURAL STUDY FOR VEIN REGENERATION AFTER MICROVASCULAR ANASTOMOSIS IN RABBIT FEMORAL VEIN (가토 대퇴정맥 미세정맥문합술 후 정맥 문합부 재생에 관한 미세조직학적 연구)

  • Rho, Hong-Seop;Kim, Chul-Hwan;Kim, Kyung-Wook
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.33 no.4
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    • pp.340-349
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    • 2007
  • Free flap transplantation with microvascular anastomosis has been successfully performed by development of surgical technique, materials and postoperative monitoring equipments of flap. But success rate of microvascular anastomosis is influenced by various factors, and failure rate is about 5-10%. The most influential factor for success rate is surgical technique and other factors that influence failure of microvascular anastomosis are ischemic time of free flap, thrombus formation of anastomosis region and vascular spasm. In this study, vascular patency and thrombus formation in experimental micro-venous anastomosis, and endothelial repair were observed with histologic analysis, scanning electron microscopy, transmission electron microscopic examination. The results were obtained as follows: 1. In vascular patency test in 30 minute and 7 days after micro-venous anastomosis with heparin irrigation, all of 12 anastomosis site were good vascular patency. 2. In thrombus formation in 2 weeks group(Experimental I), 2 site of 6 cases were observed thrombus, and in 4 weeks group(Experimental II), 1 site of 6 cases were observed thrombus. 3. In histologic examination, normal vein(Control Group) showed continued internal elastic lamina, well formed thick smooth muscle layer and connective tissue. The group of 2 weeks after microvenous anastomosis(Experimental I) showd locally recovered internal lamina, discontinued internal lamina, disorganized smooth muscle cells and granulation tissue around suture silk. In the group of 4 weeks after micro-venous anastomosis(Experimental II), anastomosis site showed almostly continued internal lamina, disorganized smooth muscle cells and cicartrized tissue around suture silk. 4. In scanning electron microscope examination in 2 weeks(Experimental I) after micro-venous anastomosis, mesh fibrin formation showed near to endothelial cells, and in 4 weeks after micro-venous anastomosis(EXperimental II), numerous blood cells and fibrin mesh formation was seen associated with irregular endothelial cell arrangement. 5. In transmission electron microscope examination in 2 weeks after micro-venous anastomosis(Experimental I), irregular arrangement of smooth muscle cells was seen adjacent to collagenized tissue around suture silk. In 4 weeks after micro-venous anastomosis(Experimental II), denuded venous wall composed of relatively well arranged smooth muscle cells was covered by endothelial cells, but fibroblast cells and foreign body giant cells near to suture silk was remained. From the results obtained in this study, results of good vascular patiency and anti-thrombotic effect of heparin were obtained as a local irrigation solution, and repair of venous endothelial cell was observed in 2 weeks after micro-venous anastomosis.