View clinical trials related to Arterial Occlusive Diseases.
Filter by:Clinical trial for the comparison of long-term patency of heparin-bonded Dacron and human umbilical vein vascular prostheses in above-knee femoro-popliteal bypass surgery.
Injections of concentrated bone marrow mononuclear cells into ischemic tissues will result in vasculogenesis
The DEScover Registry is designed to observe the results of using Drug Eluting Stents (DES) in patients in a real-world setting. The stents being observed are not investigational, that is, they have been approved for use in the general population.
In 5 Belgian hospitals, the data of 100 CLI-patients receiving the cryoplasty technique to treat their infrapopliteal arterial lesions will be collected. The treatment occurs strictly according the "Instructions For Use" of the CE-approved device (PolarCath Peripheral Dilatation System, Boston Scientific) and only data are collected that have been made available conform the Standard the Standards of Care for these patients.
This is a clinical study of gadoteric acid in non-coronary MR angiography.
Critical limb ischemia is a condition where the blood circulation in the limbs, in most cases the legs, is decreased so that pain and non healing wounds ensue. Mostly, this is a sequel of arteriosclerosis and/or diabetes. If surgical and other methods for the improvement of blood supply for the leg have failed or are not possible, most of these patients will proceed to amputation of the leg. Bone marrow contains cells which can induce and augment the growth of new, small arteries called collateral arteries. It has been shown in animals and in some case series that the transplantation of a concentrate of the patient's own bone marrow with stem cells into the ischemic limb can improve the blood circulation via the induction of collateral growth. However, it is not known if this bone-marrow stem cell induced collateral growth is sufficient to avoid otherwise necessary amputations. Therefore, we conduct a study to compare the efficiency of concentrated bone marrow cells injected into the critically ischemic limb compared to a placebo procedure where only saline is injected. We think that the transplantation of autologous bone marrow will reduce the number of necessary leg amputations, reduce pain and induce wound healing. In this investigation, patients with limb threatening ischemia are randomly allocated either to the bone marrow group or to the placebo group. Patients in the bone marrow group will have their bone marrow harvested under sedation, and the bone marrow cells are concentrated. The cell concentrate will then be injected directly into the muscle of the diseased leg. Patients in the placebo group will undergo sedation as well but no bone marrow harvest is done, and saline is injected into the ischemic leg. The procedure will require about 1.5-2 hours, and the subjects will be admitted to a participating vascular Centre. Monthly examinations up to three months after the bone-marrow or placebo procedure are done. After the follow-up of three months, the rate of death and amputations and the wound healing process are compared between groups. Adverse and serious adverse events will be recorded during this time period. Diagnostic studies will be obtained to measure blood flow in the treated leg during the follow up period and include skin oxygen measurements, pressure recordings in the leg and arteriography. Also, quality of life, pain and wound healing will be assessed. After completion of the three months study participation, subjects who have been treated with placebo will be able to receive open-label bone marrow transplantation therapy.
The purpose of this study is to evaluate the safety of increasing doses of intra-thrombus Plasmin (Human) in acute peripheral arterial occlusion (aPAO). The ability of these Plasmin doses to dissolve the clots will be estimated by arteriography.
The rise of minimal access surgery has heralded the approval of a number of endovascular devices with similar indications. This is particularly true for the treatment of lower extremity ischemia. Comparable devices are selected for patient use somewhat arbitrarily, often dependent on industry influence. An unmet need is NON-industry sponsored prospective trials COMPARING devices head-to-head so that endovascular surgeons can even contemplate evidence-based device selection. At present, we seek to compare two new high-technology devices that are indicated to treat lower extremity arterial stenoses associated with claudication.
The hypothesis behind the trial is the concept that Pregabalin is effective in reducing pain at rest in lower limb ischemia, and the study evaluates active treatment or placebo added to the regular pain regimens for these patients.
This study will treat patients with such severe lower leg ischemia or vascular compromise that they have pain at rest. The goal is to compare treatment of the patient's painful disorder by injecting cells into the calf of the leg and testing for circulatory improvement. A treatment will given at random to two groups and will be injection into the calf muscle with ALD-301 (specially processed stem and progenitor cells) from the patient's own bone marrow, or with cells processed by more routine that minimally purifies the cells. The study goal is to see if the ALD-301 cells are more effective in generating new small blood vessels to improve the circulation to the affected leg.