Clinical Trials Logo

Dissection clinical trials

View clinical trials related to Dissection.

Filter by:
  • None
  • Page 1

NCT ID: NCT05361967 Recruiting - Clinical trials for Peripheral Arterial Disease

Tack Optimized Balloon Angioplasty Post-Market Study

TOBA PMS
Start date: March 30, 2023
Phase:
Study type: Observational

The objective of this study is to obtain outcomes following dissection repair with the Tack Endovascular System in a broad population of patients undergoing endovascular treatment of lesions within the superficial femoral, popliteal, peroneal, and/or tibial arteries.

NCT ID: NCT04545502 Recruiting - Aneurysm Clinical Trials

PANTHER Study of Terumo Aortic Knitted and Woven Grafts, and Cardiovascular Patches

PANTHER
Start date: February 17, 2021
Phase:
Study type: Observational [Patient Registry]

The purpose of this registry is to collect safety and performance data on all commercially available Terumo Aortic knitted and woven grafts, and cardiovascular patches in standard clinical practice. Data will be collected both retrospectively and prospectively.

NCT ID: NCT03213470 Completed - Dissection Clinical Trials

Prospective Observation for Serial Changes in Acute Intracranial Artery Dissection Using HR-MRI

Start date: January 2016
Phase: N/A
Study type: Interventional

Intracranial artery disease has been more detected with development of HR-MR. HR-MR can depict vascular wall directly and give us more information beyond the pre-existing imaging modalities such as digital subtraction angiography, magnetic resonance angiography, computed tomography angiography. Hence, HR-MR is considered to become promising imaging modality for intracranial artery disease and many studies have been published recently. However, there was not enough to differentiate various intracranial artery disease such as atherosclerosis, dissection, moyamoya disease, vasculitis, reversible vasoconstriction syndrome. In real clinical arena, intracranial artery disease is too difficult to diagnose and distinguish among the disease. Of the disease, usefulness of HR-MR has been consistently published in the detection and diagnosis of intracranial artery dissection recently. HR-MR seems to be the most important and reliable imaging method in intracranial artery dissection as of now. Therefore, intracranial artery dissection is necessary to study using HR-MR. Intracranial artery dissection is dynamic vascular pathology. The geometric change is the most common among intracranial artery disease. However, there was no report about the geometric change in HR-MR. The investigators acquired retrospective data about the natural course of intracranial artery dissection in HR-MR and are preparing for publishing an article. However, the data is not prospective and not intraindividual comparison. Therefore, reliability is not enough to convince the natural course. If the investigators got prospective and intraindividual data, definite natural course of intracranial artery dissection could be acquired and would be helpful to diagnose the dissection and differentiate from other vascular pathologies. The longitudinal information from this study could guide us as the important map on the confusing HR-MR findings. In addition, the previous retrospective study can be a stepping-stone to perform a prospective study, which can increase the success rate of the prospective study. The protocols for imaging follow-up are as followed: initial (optional), 1 month, 3 month, 6 month (optional), 12 month