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D V Freeman

Publications and source records attributed to D V Freeman.

27 records · Page 2Linked to original sources

Peripheral vascular bypass in juvenile-onset diabetes mellitus: are aggressive revascularization attempts justified?

This study was performed to evaluate the results of peripheral vascular reconstruction for arterial occlusive disease in patients with juvenile-onset diabetes mellitus. The results of 67 bypass procedures performed on 60 patients with juvenile-onset diabetes mellitus between Jan. 1, 1984 and Dec. 31, 1989, were reviewed. These patients had a mean age of 44.4 years (range, 29 to 59 years), with an average age of onset of diabetes mellitus of 9.8 years (range, 1 to 19 years). These procedures comprised 5.5% (67 to 1214) of the bypasses performed on diabetic patients during the same time period at a single institution. Fifty-four of 67 (91%) procedures were performed for limb salvage. Fifty-four (81%) procedures were primary infrainguinal bypasses with saphenous vein (femoropopliteal 19, femorodistal or popliteal-distal 35). Six procedures (9%) were revision procedures, four (6%) were in-flow procedures, and three (4%) were infrainguinal procedures with polytetrafluoroethylene. Thirty-day morbidity and mortality rates were 31% and 0%, respectively. Actuarial patency and limb salvage rates of the primary vein graft group were 66.0% (+/- 10.7) and 83.4% (+/- 8.0%), respectively, at 24 months. Cumulative survival of the entire group at 2 years was 84.1%. Although follow-up in this study is relatively short (24 months), the results suggest that the outcome of vascular reconstruction in patients with juvenile-onset diabetes mellitus is acceptable when compared with procedures performed in adult-onset diabetic and nondiabetic populations. The presence of juvenile-onset diabetes mellitus should not diminish the vascular surgeon's expectations of a successful outcome when considering lower extremity revascularization in these patients.

Actuarial Analysis↗

A flexible approach to infrapopliteal vein grafts in patients with diabetes mellitus.

From October 1985 to August 1989, we performed 156 dorsalis pedis artery bypasses in 146 patients, 139 (95%) of whom had diabetes mellitus. A variety of surgical techniques were used to shorten surgery, limit incision length, and optimize size-matching between vein grafts and arteries whenever possible. Arterial inflow was from the common femoral artery in 58 cases, from the distal superficial femoral or popliteal artery in 88 cases, from a tibial artery in three cases, and from a preexisting bypass in seven cases. In situ (75 cases), ex situ reversed- or nonreversed-vein (62), composite vein (nine), and polytetrafluoroethylene (one) bypasses were constructed. Four patients (2.7%) died, and seven grafts (4.5%) failed within 30 days. Actuarial patency and limb salvage 6 to 52 months after surgery were 87.1% and 91.6%, respectively. There were no significant differences in patency between in situ and ex situ vein grafts (93.2% vs 89.7%) or between common femoral artery inflow site and distal superficial femoral/popliteal artery inflow site (89.3% vs 88%).

Actuarial Analysis↗

Angioscopy of arm vein infrainguinal bypass grafts.

Between January 1988 and December 1990, 56 patients underwent 66 arm vein infrainguinal bypass grafts for limb salvage. Thirty-nine grafts were intraoperatively monitored by the standard methods of continuous wave Doppler alone (30) and arteriography (9). Twenty-seven grafts were prepared and monitored by intraoperative angioscopy. No significant findings requiring intraoperative revision or correction were noted in the grafts monitored by the standard methods. However, in those grafts prepared and monitored by angioscopy, intraluminal abnormalities of the arm veins were detected and corrected in 20/27 (74%). None of the grafts prepared or monitored by angioscopy occluded within 30 days, whereas, in those grafts monitored by continuous wave Doppler and arteriography, 7/39 failed within 30 days, a primary patency rate of 32/39 (82%) (x2 with yates correction, p = 0.055). This study shows that angioscopic preparation and monitoring of arm vein bypass grafts allows the detection and correction of unsuspected intraluminal abnormalities, which appears to improve the early primary patency of arm vein infrainguinal bypass grafts.

Aged↗

Popliteal-to-distal bypass grafts for limb salvage in diabetics.

Between January 1984 and August 1989, 117 diabetic patients with a palpable popliteal pulse but distal limb threatening ischaemia underwent 124 popliteal artery (or below) to distal bypass grafts. All grafts were intra-operatively monitored. The operative mortality was 0.8% and the 30 day primary patency 93%. Primary patencies at 1 and 3 years were 88.6 and 85.2%, respectively. The results of using the popliteal artery as the proximal graft inflow site in diabetes are comparable to other patient groups and to alternative more proximal inflow sites, but require a shorter length of vein graft with a shorter vein harvesting incision, avoid groin disection and result in a more peripheral operation.

Adult↗

Continued experience with intraoperative angioscopy for monitoring infrainguinal bypass grafting.

Intraoperative angioscopy provides direct, in vivo, three-dimensional visualization of the interior of the blood vessels and grafts. We have shown previously that with the application of the basic principles of irrigation and with a dedicated irrigation pump that routine intraoperative angioscopy can be performed with consistent high quality results during lower extremity revascularization. In our total experience with angioscopy as a monitoring procedure during infrainguinal bypass grafting, 259 intraoperative angioscopies, during 63 femoropopliteal and 196 distal bypass grafts, were performed from May 1, 1987, to October 31, 1989. Mean total irrigation fluid used in the study was 448 ml (range, 0 to 1400 ml) with good visual quality in more than 80% of the studies. The overall failure rate was 1.5%. No complications were directly attributable to the insertion of the angioscope or the use of the pump. Based on the angioscopic findings, 124 clinical or surgical decisions were made in 259 of the angioscopies. The incidence of graft failure in this study was 8.1% (less than 30 days) and 4.8% (greater than 30 days) with a mean follow-up of 272 days. Direct inspection of the interior of the graft and native vessels at the time of surgery has resulted in the recognition of previously unsuspected vein-graft pathology. Angioscopy as the sole monitoring procedure for infrainguinal bypass grafting is safe, effective, and reliable and may not only improve the durability of these grafts but may improve our understanding of the pathogenesis of graft failure and of the progression of the underlying atherosclerotic disease.

Adult↗

Angioscopically directed valvulotomy: a new valvulotome and technique.

Despite a large experience with "blind" retrograde valvulotomy in in situ vein bypass grafting, the incidence of residual competent valves remains high, and valvulotome-induced injury is common. In this study we describe a new valvulotome and technique of angioscopically directed valvulotomy and review the video tape recordings of 85 completion angioscopies of in situ femorodistal bypasses. Fifty-three vein grafts were prepared with the blind retrograde valvulotomy technique and 32 vein grafts with the new valvulotome and angioscopy. The use of the new valvulotome and technique is compared with that of the standard blind retrograde valvulotomy technique, and the normal endoluminal anatomy and incidence of primary disease in saphenous vein grafts was noted. The incidence of valvulotome-induced injury was 5/32 (15.6%) and 45/53 (85%) in vein grafts prepared with angioscopically directed valvulotomy and blind retrograde valvulotomy, respectively. Residual competent valves were found in 10/53 (18.9%) in blind retrograde valvulotomy and 0/25 of angioscopically directed valvulotomy vein grafts (p = 0.0114). In 22/53 vein grafts unsuspected primary disease was detected. Angioscopically directed valvulotomy with the new valvulotome and technique is feasible, reliable, and safe. It avoids residual competent valves, minimizes valvulotome-induced injury, and allows the detection and correction of unappreciated primary vein graft abnormalities. The new valvulotome and technique is a first step in the complete endoluminal preparation of the in situ vein graft.

Aged↗

New angioscopic findings in graft failure after infrainguinal bypass.

We have previously shown that intraoperative angioscopy is a safe, useful, and effective method for monitoring infrainguinal bypass grafts. The videotaped recordings of the intraoperative angioscopy studies of 25 failed infrainguinal bypass grafts inserted between May 1987 and July 1989 and 3 failing grafts that were angioscoped during the subsequent graft salvage procedure were reviewed in a systematic fashion according to a fixed protocol, to identify any endovascular findings either initially missed or in which the relevance to graft failure had been unappreciated at the time of bypass grafting. We were able to identify new venous pathologic characteristics and highlight endoluminal features, of both a technical and nontechnical nature, which have a probable causal relationship to graft failure. However, the significance of some of the endovascular findings that were seen during infrainguinal bypass grafting has yet to be fully defined.

Adult↗

Efficacy of the dorsal pedal bypass for limb salvage in diabetic patients: short-term observations.

Limbs of diabetic patients with distal tibial disease are frequently considered unreconstructible; however, when studied with intraarterial digital subtraction angiography, the dorsal pedal artery is frequently found to be patent. We have reviewed our recent experience with 96 patients, 94% of whom had diabetes and had 97 bypasses placed to the dorsal pedal artery. All procedures were for limb salvage. Superimposed infection was present in 42.3%. In 92 instances where intraarterial digital subtraction angiography successfully visualized the dorsal pedal artery, 91 bypasses were placed. In 12 other cases where the dorsal pedal artery was not visualized by intraarterial digital subtraction angiography but audible with the continuous-wave Doppler, bypasses were completed successfully in six. All procedures were performed with vein. Inflow was taken from the femoral artery in 48, popliteal artery in 45, tibial artery in 2, and from a femoral tibial graft in 2. Perioperative mortality was 1.92%. Actuarial graft patency, limb salvage, and patient survival were 82%, 87%, and 80%, respectively at 18 months. We conclude that bypass grafting to the dorsal pedal artery can be reliably performed with acceptable short-term results. An attempt should always be made to visualize the foot vessels angiographically, especially in diabetic patients, so that this valuable option in arterial reconstruction will not be overlooked.

Arterial Occlusive Diseases↗

Routine intraoperative angioscopy in lower extremity revascularization.

The inability to see through blood remains the main obstacle to the widespread and routine use of angioscopy. Local irrigation with a balanced salt solution is presently the most widely used method to clear the blood. By applying basic principles of irrigation and using a unique, dedicated, irrigation pump, we found that routine angioscopy during lower extremity revascularization that yields consistent high-quality studies is feasible, clinically useful, and safe. Between May 1, 1987, and July 31, 1988, 136 intraoperative angioscopies were performed during 112 peripheral bypass procedures, 15 thrombectomies, 2 embolectomies, and 7 miscellaneous revascularization procedures. Mean total irrigation fluid used in the peripheral bypasses was 398 mL (range, 0 to 1400 mL). Good visual quality was obtained in more than 80% of angioscopies and the failure rate was only 1.8%. On the basis of the findings in 71 of the 136 angioscopies, 78 clinical or surgical decisions were made. No complications were directly attributable to the insertion of the angioscope or use of the pump.

Angiography↗