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find Keyword "saphenous vein" 25 results
  • CLINICAL APPLICATION OF THE SAPHENOUS NEURO-VENO-FASCIAL CUTANEOUS FLAP

    Objective To investigate the clinical feasibility of different types of the saphenous neuro-veno-fascial cutaneous flaps. Methods From June 1996 to October 2002, 18 cases of skin defects in the knee and the lower part of the limb were treated with proximally(4 cases) or distally(11 cases) based pedicles of saphenous neuro-venofascial cutaneous flap or crossleg flap (3 cases)according to the site of defects . The sizes of the flaps ranged from 4 cm×5 cm to 9 cm×20 cm. Results The flaps survived completely in 17 cases, distal 1/5 of the flap necrosed partially in 1 case because of vein drainage disturbance. The colour and texture of flaps were excellent, the appearance and function were satisfactory after a follow up of 6-24 months.Conclusion The saphenous neuro-veno-fascial cutaneous flap is an idea flap in repairing skin defects of the knee, the leg, the ankle and the foot because it is easy to be designed and dissected and it has reliable blood supply and preserved main artery. The relationship between the septal perforating branches of the tibial posteriorartery and survival size of flap need to be investigated further.

    Release date:2016-09-01 09:33 Export PDF Favorites Scan
  • Endoscopic Vein Harvesting: Technique, Outcomes, Concerns & Controversies

    The choice of the graft conduit for coronary artery bypass grafting (CABG) has significant implications both in the short-and long-term. The patency of a coronary conduit is closely associated with an uneventful postoperative course, better long-term patient survival and superior freedom from re-intervention. The internal mammary artery is regarded as the primary conduit for CABG patients, given its association with long-term patency and survival. However, long saphenous vein (LSV) continues to be utilized universally as patients presenting for CABG often have multiple coronary territories requiring revascularization. Traditionally, the LSV has been harvested by creating incisions from the ankle up to the groin termed open vein harvesting (OVH). However, such harvesting methods are associated with incisional pain and leg wound infections. In addition, patients find such large incisions to be cosmetically unappealing. These concerns regarding wound morbidity and patient satisfaction led to the emergence of endoscopic vein harvesting (EVH). Published experience comparing OVH with EVH suggests decreased wound related complications, improved patient satisfaction, shorter hospital stay, and reduced postoperative pain at the harvest site following EVH. Despite these reported advantages concerns regarding risk of injury at the time of harvest with its potential detrimental effect on vein graft patency and clinical outcomes have prevented universal adoption of EVH. This review article provides a detailed insight into the technical aspects, outcomes, concerns, and controversies associated with EVH.

    Release date:2016-10-02 04:56 Export PDF Favorites Scan
  • APPLIED ANATOMY STUDY AND CLINICAL APPLICATION OF GREAT SAPHENOUS VENO-SAPHENOUS NEUROCUTANEOUS VASCULAR FLAP

    Objective To provide the anatomic basis for defect repair of the knee, leg, foot and ankle with great saphenous venosaphenous neurocutaneous vascular island flaps. Methods The origin, diameter, branches, distribution and anatomoses of the saphenous artery and saphenous neurocutaneous vascular were observed on 20 sides of adult leg specimens and 4 fresh cadaver voluntary legs. Another4 fresh cadaver voluntary legs were radiogeaphed with a soft X-ray system afterthe intravenous injection of Vermilion and cross-sections under profound fascial, otherhand, micro-anatomic examination was also performed in these 4 fresh cadaver legs. The soft tissue defects in lower extremity,upper extremity, heel or Hucou in handwere repaired with the proximal or distal pedicle flaps or free flaps in 18 patients(12 males and 6 females,aging from 7 to 3 years). The defect was caused by trauma, tumour, ulcer and scar.The locations were Hucou (1 case), upper leg(3 cases), lower extremity and heal (14 cases). Of then, 7 cases were complicatedby bone exposure, 3 cases by tendon exposure and 1 case by steel expouse. the defect size were 4 cm×4 cm to 7 cm×13 cm. The flap sizes were 4 cm×6 cm to 8 cm×15 cm, which pedicle length was 8-11 cm with 2.-4.0 cm fascia and 12 cm skin at width. Results Genus descending genicular artery began from 9.33±0.81 cm away from upper the condylus medialis, it branched saphenous artery accompanying saphenous nerve descendent. And saphenous artery reached the surface of the skin 7.21±0.82 cm away from lower the condylus medialis,and anastomosed with the branches of tibialis posterior artery, like “Y” or “T” pattern. The chain linking system of arteries were found accompanying along the great saphenous vein as saphenous nerve, and then a axis blood vessel was formed. The small artery of only 00-0.10 mm in diameter, distributed around the great saphenousvein within 58 mm and arranged parallelly along the vein like water wave in soft X-ray film. All proximal flaps,distal pedicle flaps and free flaps survived well. The appearance, sensation and function were satisfactory in 14 patientsafter a follow-up of 6-12 months. Conclusion The great saphenous vein as well as saphenous neurocutaneous has a chain linking system vascular net. A flap with the vascular net can be transplanted by free, by reversed pedicle, or by direct pedicle to repair the wound of upper leg and foot. A superficial vein-superficial neurocutaneous vascular flap with abundance blood supply and without sacrificing a main artery is a favouriate method in repair of soft tissue defects in foot and lower extremity.

    Release date:2016-09-01 09:25 Export PDF Favorites Scan
  • ARTERIALIZATION OF THE GREAT SAPHENOUS VEIN FOR TREATING SEVERE ISCHEMIA OF LOWER LIMBS

    This study was to observe the result in patients suffering from severe ischemia of legs with arterialization of the great saphenous vein. Eighty nine patients suffering from the disease were treated by bridging the autogenous cephalic vein or Gore-Tex artificial vessel between the great saphenous vein and the femoral or external iliac arteries. The results showed that the blood supply of the affected legs was increased immediately after operation. The ulcers of the toes and the plantar areas were healed gradually and the pain relieved. It was concluded that this method did not interfere with the reflux of the venous blood in the diseased limbs. This method was simple, safe and effective for treating severe ischemia of the lower limbs.

    Release date:2016-09-01 11:07 Export PDF Favorites Scan
  • APPLIED ANATOMY OF SMALL SAPHENOUS VEIN AND ITS DISTALLY-BASED SURALNERVE NUTRIENT

    Objective To investigate the origin of small saphenous vein of distally-based of sural nerve nutrient vessels flap and its clinical application. Methods The origins of nutrient vessels of small saphenousvein and communicating branches of superficial-deep vein were observed on specimens of 30 adult cadaveric low limbs by perfusing red gelatin to dissect the artery. Results The nutrient vessels of small saphenous vein originated from the heel lateral artery, the terminal perforator branches of peroneal artery and intermuscular septum perforating branches of peroneal artery. There were 2 to 5 branches ofsuch distally-based perforating branches whose diameters ranged from 0.6 to 1.0 mm. Those perforating branches included fascia branches, cutaneous branches nerve and vein nutrient branches. Those nutrient vessels formed a longitudinalvessel chain of sural nerve shaft, vessel chain of vein side and vessel networkof deep superficial fascia. The small saphenous vein had 1 to 2 communicating branches of superficial-deep vein whose diameter was 1.7±0.5 mm, 3.4±0.9 cm to the level of cusp of lateral malleolus, and converged into the fibular vein. Conclusion Distally-based sural nerve, small saphenous vein, and nutrient vessles of fascia skin have the same region. The communicating branches of superficial-deep vein is 3 to 4 cm to the level of cusp lateral malleolus. These communicating branches could improve the venousdrainage of the flap.

    Release date:2016-09-01 09:29 Export PDF Favorites Scan
  • Endovenous Laser Therapy Combined with Planing Aspiration Operation for Great Saphenous Varicose (Experiences of 48 Cases)

    ObjectiveTo observe the efficiency of endovenous laser therapy combined with planning sucking operation in the treatment of great saphenous varicose veins. MethodsTotally 48 patients (60 limbs) were treated from May 2011 to May 2014 in general surgery department of our hospital. The main trunk of great saphenous vein was ablated by endovenous laser treatment; and the varicose veins in calf were resected by planning sucking operation. ResultsAll 48 patients (60 limbs) were cured without recurrent during 6-36 months followed-up. The operative time of each side was 18-43 min, the average operative time was 22.6 min; with 1-3 skin incisions. Hospital stay was 5-8 d, the average hospitalization time was 6.7 d. After operation, the varicose veins and the felling of swelling were disappeared, the pigmentation was reduced or disappeared. Local skin numbness showed in 6 cases and recovered in 3-7 months after operation. Felling of burns appeared in 2 cases, and was healed after treatment. Ankle swelling presented in 5 cases, and released in 6-13 d with related treatment. Different degree of subcutaneous bruising appeared without any hematoma, and recovered in 2-4 weeks. Two cases were lost during the followed-up. ConclusionsEndovenous laser therapy combined with planning sucking operation is safe and effective in the treatment of great saphenous varicose. It is worthy of promotion with minimum damage, less pain, fast recovery, no scars, shorter operative time, and shorter hospital stay.

    Release date:2016-10-25 06:10 Export PDF Favorites Scan
  • APPLIED ANATOMY OF THE PERFORATING BRANCHES ARTERY AND ITS DISTALLY-BASED FLAP OF SURAL NERVE NUTRIENT VESSELS

    Objective To investigate the distribution of the perforating branches artery of distally-based flap of sural nerve nutrient vessels and its clinical application. Methods The origins and distribution of perforating branchesartery of distally-based flap were observed on specimens of 30 adult cadavericlow limbs by perfusing red gelatin to dissect the artery.Among the 36 cases, there were 21 males, 15 females. Their ages ranged from 6 to 66, 35.2 in average. The defect area was 3.5 cm×2.5 cm to 17.0 cm×11.0 cm. The flap taken ranged from 4 cm×3 cm to 18 cm×12 cm. Results The perforating branches artery of distally-based flap had 2 to 5 branches and originated from the heel lateral artery, the terminal perforating branches of peroneal artery(diameters were 0.6±0.2 mm and 0.8±0.2 mm, 1.0±1.3 cm and 2.8±1.0 cm to the level of cusp lateral malleolus cusp).The intermuscular septum perforating branches of peroneal artery had 0 to 3 branches. Their rate of presence was 96.7%,66.7% and 20.0% respectively(the diameters were 0.9±0.3, 1.0±0.2 and 0.8±0.4 mm, andtheir distances to the level of cusp of lateral malleolus were 5.3±2.1, 6.8±2.8 and 7.0±4.0 cm). Those perforating branches included fascia branches, cutaneous branches, nerve and vein nutrient branches. Those nutrient vessels formed longitudinal vessel chain of sural nerve shaft, vessel chain of vein side and vessel network of deep superficial fascia. The distally-based superficial sural artery island flap was used in 18 cases, all flaps survived. Conclusion Distally-based sural nerve, small saphenous vein, and nutrient vessels of fascia skin have the same origin. Rotation point of flap is 3.0 cm to the cusp of lateral malleolus, when the distally-based flap is pedicled with the terminal branch of peroneal artery.Rotation point of flap is close to the cusp of lateral malleolus, when the distally-based flap is pedicled with the heel lateral artery.

    Release date:2016-09-01 09:29 Export PDF Favorites Scan
  • Intermediate Stage Report about Change of Deep Venous Valve Function after Superficial Vein Surgery of Lower Extremity

    Objective To evaluate improved effect for deep venous valve function after superficial vein surgery of lower extremity in the intermediate stage. Methods Totally 43 patients (55 limbs) with varicose veins of lower extremity were enrolled to accept surgical management of vein systems in our department from March 2006 to October 2006. All patients were respectively followed up after 6 months and 4 years about the changes of deep venous valve function with color Doppler ultrasonography. Results Thirty-nine patients’ deep venous valve function kept well up to now, and there was no significant difference between the two results. Four patients without proximal saphenous vein ligation recurred, and there was reflux in deep venous. Conclusion Endovenous laser treatment and ablation of varicose veins of lower extremity with deep venous insufficiency could improve deep venous valve function effectively. Proximal great saphenous vein ligation is important for successful operation.

    Release date:2016-09-08 10:54 Export PDF Favorites Scan
  • Antegrade sequential anastomosis of great saphenous veins in off-pump coronary artery bypass grafting

    Objective To summarize the treatment outcomes of antegrade sequential anastomosis of great saphenous veins in off-pump coronary artery bypass grafting for coronary atherosclerotic heart disease. Methods A total of 116 patients with coronary atherosclerotic heart diseases underwent off-pump coronary artery bypass grafting from January 2013 to June 2015 in our hospital. There were 63 males and 53 females with a mean age of 42–80 (64.26±9.67) years. Left internal mammary artery was anastomosed to left anterior descending artery. The rest of the target vessels received antegrade sequential anastomosis of great saphenous veins with the order of proximal ascending aorta, diagonal branch, circumflex branch, obtuse marginal branch, left ventricular branch and posterior descending artery. Results All patients were performed off-pump coronary artery bypass grafting successfully without death or perioperative myocardial infarction. A total of 436 grafts were adopted with 3.75±0.53 in each patient. Three patients suffered low cardiac output syndrome, and were cured after administration of vasoactive drugs combined with the intra-aortic balloon pump. One patient suffered tardive pericardial tamponade and one acute renal failure, who were cured with disappearance of angina symptoms and increase of activities without discomfort. Conclusion Antegrade sequential anastomosis, as a safe and effective method, can reduce aortic stoma, save the length of grafts, shorten operative time and quickly restorate blood supply of myocardium in off-pump coronary artery bypass grafting.

    Release date:2017-04-24 03:51 Export PDF Favorites Scan
  • ANATOMIC STUDY ON COMPOUND FLAP OF DISTALLY-BASED SAPHENOUS NERVEGREAT SAPHENOUS VEIN NUTRITIONAL VESSELS

    Objective To investigatethe anatomic structure of the compound flap of distally-based saphenous nervegreat saphenous vein nutritional vessels so as to provide anatomic basis for the clinical operation. Methods The origin, branches, anastomosis of nutritional vessels of sural nerve-great saphenous vein, and the relationof blood supply of tibia and soleus muscle were observed on 30 low limb specimens of adult cadaver, which were perfused with red gelatin to dissect from the artery. Results The nutritional vessels of sural nerve-great saphenous vein originated from: the saphenous artery 3-5 branches with a diameter of 0.7±0.4 mm;the cutaneous branches of medial inferior genicular artery, diameter of 0.7±0.2 mm;the intermuscular space perforating branches of posterior tibial artery 2-7 branches with a diameter of 1.0±0.2 mm,the internus halfside of the muscular branches nutrient soleus muscle;the perforating osteoseptocutaneous 1-2 branches with a diameter of 1.3±0.3 mm; the perforating branches of superior malleolus with a diameter of 0.6±0.2 mm; the perforating branches of medial anterior malleolus with a diameter of 0.8±0.3 mm. A vascularnetwork of 3 layers, which included periosteum, deep artery, and fascia nerve and superficial vein, was formed by those branches of deep artery, fascia branches, periosteum branches, and nerve-vein nutrition branches. Conclusion The nutritional vessels of saphenous nerve-great saphenous vein has the same origin as muscles, bones, and cutaneous nutritional vessels. It provides anatomic basis for the compound flap of distally-based saphenous nerve nutritional vessels. 

    Release date:2016-09-01 09:30 Export PDF Favorites Scan
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