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L B Davidovic

Publications and source records attributed to L B Davidovic.

7 recordsLinked to original sources

Ex vivo repair of renal artery aneurysm associated with repairing of abdominal aortic aneurysm. Case report.

A case of right renal artery distal aneurysm associated with juxtarenal abdominal aortic aneurysm in a 75-year-old male, who presented with abdominal and back pain and chronic renal failure, is reported. The abdominal aortic aneurysm was repaired with a bifurcated Dacron graft. The right kidney was simultaneously explanted, ex vivo reconstruction of the renal artery with PTFE graft was performed, followed by autotransplantation of the kidney into the right iliac fossa. In the postoperative course the renal function returned to normal.

Aged↗

Aorto-caval fistulas.

The surgical repair of 16 aorto-caval (A-C) fistulas (15 male and one female patient; average age of 61.3 years) is reviewed. Fourteen fistulas were caused by aneurysm's erosion, one by iatrogenic injury, while one followed abdominal blunt trauma. The interval from presumed occurrence to diagnosis ranged from 6 h to 2 years. The presence of an abdominal bruit (87.5%) was the most reliable physical finding. Congestive heart failure was prominent in three (18.7%) cases, while severe lower extremity edema in five (31.2%). Two patients (12.5%) had hematuria, two (12.5%) renal insufficiency, while four (25%) scrotal edema. The diagnosis was not recognized before the surgery in five (31.2%) cases. In all 16 cases after transaortic suture of the fistula, aortic reconstructions were performed. Four operative deaths (25%) occurred, in patients who were not correctly diagnosed before surgery. In one case the cause of death was massive bleeding, and in three MOFS. All other patients were followed from 1 to 17 years (mean 4 years and 2 months). All grafts are patent, and there is no lower extremity venous insufficiency or pelvic venous hypertension. Surgical repair of A-C fistulas is mandatory to prevent serious complications.

Adult↗

Femoro-popliteal reconstructions: 'in situ' versus 'reversed' technique.

This study examined 191 patients with 'reversed' and 99 patients with 'in situ' femoro-popliteal bypass technique. There were 85 diabetic patients (44.5%) in the group with 'reversed' bypass, and 43 patients (43.43%) in the 'in situ' group. There were 152 (79.68%) smokers in the 'reversed' bypass group, and 80 (80.8%) in the 'in situ' group. The graft patency was confirmed immediately after operation using CW Doppler and then followed up after 1, 6, l2 months and annually thereafter. The statistical analysis was performed using Pearsons chi-square test, Fischer's test and 'Life table' statistic methods. The patients were followed from 3 to 10 yr after surgery. 'In situ' bypass showed better patency than the 'reversed' bypass technique but only in the second and tenth follow-up year (P < 0.05). Also, 'in situ' bypass proved to be better than 'reversed' only in patients with one patent crural artery (P < 0.01). Diabetes and preoperative smoking did not significantly affect late patency regarding this technique (P > 0.05). However, continuous smoking after the operation significantly decreased late patency rate in both groups of patients (P < 0.01). There was no significant difference in the early thrombectomy rate between groups with 'reversed' and 'in situ' bypasses (P > 0.05). The early thrombectomy, however, significantly reduced late patency rate in both groups (P < 0.01). Therefore we suggest 'in situ' bypass in cases with poor run off, small-calibre vein and 'long' bypass. Also, we consider important more frequent physical and Doppler ultrasonographic control in patients who had early thrombectomy.

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Popliteal artery aneurysms.

Altogether 59 patients with 76 popliteal artery aneurysms were treated during the last 36 years. There were 50 (85%) male and 9 (15%) female patients with an average age of 61 years. Nineteen (32%) patients had bilateral aneurysms. The clinical manifestations of the aneurysms included ruptures 4 (5.3%); deep venous thrombosis 4 (5.3%); sciatic nerve compression 1 (1.3%); leg ischemia 52 (68.4%), and asymptomatic pulsatile masses 15 (19.7%). Seventy (92%) aneurysms were atherosclerotic, one (1.3%) mycotic, and four (5.3%) traumatic; one (1.3%) developed owing to fibromuscular displasia. Seven (9.2%) small, asymptomatic aneurysms were not operated on. Reconstructive procedures end-to-end anastomosis, graft interposition, bypass) after aneurysmal resection or exclusion using a medial or posterior approach were done in 59 cases. An autologous saphenous vein graft was used in 49 cases, polytetrafluoroethylene (PTFE) in 5, and heterograft in 2 cases. The in-hospital mortality rate was 2.9%, the early patency rate 93.3%, and limb salvage 95%. The long-term patency rate after a mean follow-up of 4 years was 78% and long-term limb salvage 89%. The total limb salvage was 73%, and the total amputation rate was 27%. The dangerous complications associated with popliteal artery aneurysms and the good results after elective procedures suggest that operative treatment is appropriate.

Adult↗

Aorto-caval fistulas: a review of eighteen years experience.

The operative treatment of 26 aorto-caval fistulas during the last 18 years is reviewed (24 male and two female patients; average of 65.3 year). Out of 1698 cases presenting an abdominal aortic aneurysm, 406 presented with rupture, and 26 had aorto caval fistula. In 24 cases (92.3%) it concerned an atherosclerotic aneurysm. One aneurysm with aorto-caval fistula was secondary to abdominal blunt trauma (3.8%), and one due to iatrogenic injury (3.8%). The time interval between first clinical signs of aorto-caval fistula and diagnosis, ranged from 6 hours to 2 years (average 57,3 days). Clinical presentation included congestive heart failure infive patients (11.5%), extreme leg edema in 13 (50.0%), hematuria in 2 (7.0%), renal insufficiency 2 (7.0%), and scrotal edema in six patients. Diagnosis was made by means of color duplex scan in eight patients (30.7%), CT in seven patients (27%), NMR in three patients (11.5%), and angiography in seven patients (27%). Most reliable physical sign was an abdominal bruit,present in 20 patients (77%). In ten patients (38.4%) correct diagnosis was not made prior to surgery. The operative treatment consisted of transaortic suture of the vena cava (25 pts-96.0%), and aneurysm repair. Five operative deaths occurred (19,2%), and for all of them it concerned a misdiagnosis. Cause of death was myocardial infarction (one patient-3.8%), massive bleeding (one patient-3.8%), MOF (two patients-7, 0%), and colon gangrene (one patient-3.8%). Follow-up period varied from six months to 18 years (mean 4 years and two months). Long term results showed a 96% patency rate. No postoperative lower extremity venous insufficiency nor pelvic venous hypertension was observed post-operatively.

Aged↗

[Aorto-enteric fistulas].

INTRODUCTION: The aorto-enteric fistula (AEF) is a direct communication between aorta and intestinal lumen. There are primary and secondary forms. Primary AEFs are usually due to erosion of an aortic aneurysm (AAA) into the intestine, while secondary forms are caused by reconstructive procedures on the abdominal aorta. The incidence of primary AEF ranges from 0.1 to 0.8%, and secondary from 0.4% to 2.4% [2-4]. The mortality rate after surgical treatment of secondary AEFs is from 14% to 70% [5]. Therefore, they are of great medical importance. The aim of this paper is the presentation of 9 new cases. METHODS: Over a 33-year period (1966-1999) a retrospective analysis of patients' records identified 9 patients with AEFs. All were males with average age of 66.62 (51-70) years. In Tables 1 and 2 are presented data on our cases. Of the total number of 9 patients, there were 4 primary and 5 secondary AEFs. All primary fistulas were caused by AAA rupture. Secondary AEFs developed after aortic abdominal surgery in the period between one and seven years after the operation. In 7 cases fistula involved the duodenum, in one the sigmoid and in one the transversal colon. The dominant manifestation of fistulas was gastrointestinal bleeding: melaena--8 (89%); haematemesis and melaena--2 (22%); proctorrhagia--1 (11%). In cases of primary AEFs gastrointestinal bleeding was followed by low back pain and haemorrhagic shok, while in cases of secondary AEFs by sepsis (fever, increased leucocytes count, sedimentation). In two cases the final diagnosis was established by gastrography and colonoscopy, while in two patients Duplex ultrasonographic examination suspected AEF. In all other cases the diagnosis was established intraoperatively (Figure 1). After aneurysmal resection in cases of primary AEFs, revascularization of the lower limbs was performed with extra-anatomic axillo-bifemoral bypass graft (one case) and with "in situ" graft placement (three cases) (Figure 2). The duodenal defect was closed transversally with standard two layers suture techniques in two patients without fistula excision, and in two cases after fistulas excision. In one case associated gastero-entero and entero-entero anastomosis was performed. In all cases with secondary AEFs, after removing of the previously implanted aortic graft, the aorta was closed just below the renal arteries root, and wrapped with a vascularized pedicle of omentum, to separate it from the bowel and the contained area. The duodenal defect was closed after fistulas excision using two layers transversal suture technique in two cases, and in one patient with large fistula a partial duodenectomy and Roux's procedure were necessary. In two patients in whom AEFs involved the transversal and sigmoid colon colostoma was performed. In three cases an extra-anatomic axillo-bifemoral bypass graft was performed for lower limbs revascularization, and in one patient bypass from the ascendent aorta to the femoral artery, using retroperitoneal route was carried out. In one patient the revascularization of the lower limbs was not done because of intraoperative death of the patient. RESULTS: Seven of our patients died during the first 15 postoperative days. One died during the operation after massive acute myocardial infarction. In other six cases the mortality causes were: MOFS-3 cases, and secondary enteric fistula-3 cases. Two of our patients survived. One has been followed-up for 15 years, and his axillo-bifemoral bypass is patent. The other with bypass from the ascendent aorta to the femoral artery died 7 years after the operation, also with patent graft. More details are given in Table 3. DISCUSSION: Sir Astley Cooper was the first who described primary AEFs caused by AAA rupture in 1817 [6], and Brock in 1953, first described secondary AEF developed 6 months after aortic homograft implantation [8]. In 1957, Haberer successfully treated primary AEF by suture of the duodenal defect and aneurysmorrhaphy [9]. In our country Stojanovitsh and Vujadinovitsh in 1966, first treated primary AEF [16]. Their patient died due to MOFS. However, in 1984 and 1985, Lotina successfully treated two patients with secondary AEFs [11] (Figure 3, Sheme 1). The authors also analyzed literature data on the aetiology, pathogenesis, clinical manifestations, diagnosis and treatment of AEFs. In conclusion, the authors suggest: 1. "Omega" extra-anatomic bypass from supraceliac artery trough retroperitonely to femoral arteries; 2. "In situ" replacement of the abdominal aorta using cadaveric homografts; 3. Intraoperative control of bleeding with endoluminal balloon occlusive aortic catheter.

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Intraarterial perfusion of prostaglandin E1 after lumbar sympathectomy or reconstruction on femoropopliteal segment.

Out of 100 patients treated by intraarterial perfusion of prostaglandin E1 we selected 36 cases who have been treated after a lumbar sympathectomy or reconstruction on the femoro-popliteal segment. The patients were in the III and IV stage of occlusive diseases by Fontain. All patients were divided into four groups: (a) prostaglandin E1 after a lumbar sympathectomy (20); (b) prostaglandin E1 after failed femoro-popliteal bypass (8); (c) prostaglandin E1 with patent femoro-popliteal bypass and distal progression of the occlusive disease (3); (d) prostaglandin E1 with previously femoro-popliteal reconstruction and poor run off (5). After intraoperative introduction of a catheter into the superficial femoral artery, profunda femoral artery (a, b), a patent graft (c) or just implanted graft (d), a continuous intraarterial perfusion of prostaglandin E1 was applied, in doses 10 nanograms/kg body weight/minute, in total doses 3000 nanograms. The perfusion time was 48-72 h. The patients were controlled immediately after treatment as well as 1, 3, 6 and 12 months after. Our early and late results of the intraarterial perfusion of prostaglandin E1 proved as a very successful limb salvage procedure.

Alprostadil↗