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find Keyword "Arterial occlusive disease" 3 results
  • Treatment of Peripheral Arterial Extensive Occlusive Disease by One Stage Arterialization of Posterior Tibial Vein

    Objective To investigate the effect of one stage arterialization of posterior tibial vein in treatment of peripheral arterial extensive occlusive disease. Methods Forty-six cases (56 limbs) of patients with peripheral arterial extensive occlusive disease were treated with one stage arterialization of posterior tibial vein. Results  The symptom of pain disappeared right after one stage arterialization of posterior tibial vein in all patients . Skin temperature went up. The long-term results were satisfactory during the period of 3 months to 7 years follow-up, except two limbs were amputated and two limbs were reoperated with pedicle omental transplantation. Conclusion The technique of one stage arterialization of posterior tibial vein has advantages of one-stage procedure, various indications, little influence to venous return and rapid relief of ischemic symptoms.

    Release date:2016-08-28 04:08 Export PDF Favorites Scan
  • United Treatment of Interventional Technique for Peripheral Arterial Obliterans Disease

    Objective To study the effect of the intracavity thrombolysis, aspiration of debris, percutaneous transcathete angioplasty (PTA) and percutaneous transtuminl angioplasty and stenting (PTAS) on treating peripheral arterial obliterans disease (PAOD). Methods From May 1994 to May 2008, interventional treatment was performed in 285 patients with PAOD. Intracavity thrombolysis and aspiration of debris were performed in 63 patients suffering from acute arterial occlusion. Intracavity thrombolysis and PTA were performed in 61 patients suffering from arteriostenosis combined with acute occlusion. Intracavity thrombolysis, PTA and PTAS were performed in 161 patients suffering from chronic arteriostenosis occlusion. Results Total success rate was 98.25% (280/285). The success rate in intracavity thrombolysis and aspiration of debris was 96.83% (61/63), with 88.89% (56/63) of the blood vessels restored, 7.94% (5/63) of the blood vessels partially restored, and another 3.17% (2/63) failed. The success rate in intracavity thrombolysis and PTA was 85.25% (52/61). The success rate in PTA and PTAS was 98.14% (158/161). The total complication rate was 7.02% (20/285), of them the local thrombolysis and thromboclasis accounting for 7.94% (5/63), the local thrombolysis and PTA accounting for 14.75% (9/61), the PTA and stent implantation accounting for 3.73% (6/161). Conclusion Percutaneous transluminal treatment for stenotic and occlusive lesions of peripheral artery can effectively keep the blood vessel unobstructed for a long time and raise the haemodynamics index remarkably.

    Release date:2016-09-08 10:50 Export PDF Favorites Scan
  • Observation of blood flow characteristics of collateral circulation of ipsilateral ophthalmic artery in patients with internal carotid artery occlusion

    Objective To observe the characteristics of collateral circulation blood flow of ipsilateral ophthalmic artery in patients with internal carotid artery occlusion. Methods The imaging data of 20 patients with internal carotid artery occlusion were analyzed retrospectively. There were 11 males and 9 females, aged from 30 to 65 years, with an average age of (45±3) years. All the patients underwent digital subtraction angiography and transcranial Doppler examination, and 6 patients underwent simultaneous magnetic resonance angiography. The blood supply and collateral circulation of the ipsilateral ophthalmic artery were observed . Results All the patients had unilateral internal carotid artery occlusion. The blood supply of the ipsilateral internal carotid artery and ophthalmic artery comes from the collateral circulation between the middle meningeal artery branches of the external carotid artery and the ophthalmic artery in 18 patients (90.0%); it also comes from the anterior communicating artery of the contralateral internal carotid artery in 16 patients (80.0%); and the posterior communicating artery of the contralateral internal carotid artery in 12 patients (60.0%), respectively. Conclusion The blood flow of the ipsilateral ophthalmic artery mainly comes from the middle meningeal artery branch of the ipsilateral external carotid artery, also comes from the anterior and posterior communicating arteries of the contralateral internal carotid artery.

    Release date:2017-09-19 03:09 Export PDF Favorites Scan
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