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Popliteal Stenosis clinical trials

View clinical trials related to Popliteal Stenosis.

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NCT ID: NCT04343196 Completed - Clinical trials for Peripheral Arterial Disease

Digital Variance Angiography in Diagnostic Angiographies for Effective Radiation Dose Reduction

Start date: April 21, 2020
Phase: N/A
Study type: Interventional

Digital Variance Angiography (DVA) is a new tool in medical imaging with proven image quality reserve. The previously observed quality reserve of Digital Variance Angiography (DVA) in lower extremity angiographies, allowed to lower radiation exposure by 70 % during DSA in lower extremity diagnostic angiographies with non-inferior image quality. The aim of this study is to apply this non-inferior image quality and use it for radiation exposure reduction in diagnostic lower limb angiography. The project would prospectively block-randomise (50:50) patients, who undergo elective diagnostic angiography into two groups: a comparator group examined by means of conventional DSA using a standard care protocol (Siemens Artis Zee, Extremities Care setting, 1.2 µGy/frame) (Group B) and a study group examined by means of DVA using a low-dose protocol (0.36 µGy/frame corresponding to 70% decrease of radiation dose) (Group A). During each procedure the investigators record radiation exposure (cumulative dosage, dose area product) and contrast media usage and procedural time then compare the results of the groups. Qualitative image review is done to compare conventional DSA and reduced radiation exposure DVA images after image acquisition. Our hypothesis is that with the previously proven non-inferior image quality, the investigators will be able to reduce radiation exposure of the participants and also staff members in everyday clinical practice.

NCT ID: NCT03739580 Recruiting - Diabetes Clinical Trials

DCB Compared Stenting in Popliteal Lesions

Start date: October 1, 2016
Phase: N/A
Study type: Interventional

This is a randomized prospective study aiming to compare drug-coated balloons and stent deployment in Popliteal atherosclerotic occlusive lesions.