Clinical Trials Logo

Clinical Trial Summary

A novel, image-based model for estimation of the pressure gradient across stenosed aortic valves is compared against invasively measured pressure gradients from clinical routine.


Clinical Trial Description

Using temporally resolved computed tomography images, the patient-specific geometry of the stenosed aortic valve during peak systole is reconstructed. Using this geometry, the projected area of the aortic valve's orifice (AVA) is calculated. Additionally, the left ventricular geometry is reconstructed for the complete heart cycle. Using the information of the left ventricular volume change, the patient-specific flow profile and peak-systolic flow (Q)is calculated. Using this information, the pressure gradient is calculated using a power law estimation of the form PG = a * AVA^b * Q^c. The model generation and parameter fit is described in [1]. To validate this model, retrospective data of patients receiving a catheter-based replacement of the aortic valve (TAVI) is collected. For those patients, CT images are already acquired for treatment planning and the invasive pressure measurements are performed during replacement of the aortic valve. Therefore, no additionally steps are required. Using the CT images the patient-specific aortic valve area ad flow rate are calculated. This information is then used for estimation of the pressure gradient using the power law model. The catheter-based pressure gradient is calculated as the difference between the peak-systolic pressure in the left ventricle and the ascending aorta before implantation of the prosthesis. [1] Franke et al.; Towards improving the accuracy of aortic transvalvular pressure gradients: rethinking Bernoulli; Medical & Biological Engineering & Computing (2020); https://doi.org/10.1007/s11517-020-02186-w ;


Study Design


Related Conditions & MeSH terms


NCT number NCT04600739
Study type Observational
Source German Heart Institute
Contact Titus Kühne, Prof. Dr.
Phone +49 30 4593 2078
Email titus.kuehne@dhzb.de
Status Recruiting
Phase
Start date October 28, 2019
Completion date June 30, 2021

See also
  Status Clinical Trial Phase
Completed NCT03186339 - Validation of the "TASQ" in Patients Undergoing SAVR or TF-TAVI
Recruiting NCT03549559 - Imaging Histone Deacetylase in the Heart N/A
Terminated NCT02854319 - REpositionable Percutaneous Replacement of NatIve StEnotic Aortic Valve Through Implantation of LOTUS EDGE Valve System N/A
Recruiting NCT05601453 - The ReTAVI Prospective Observational Registry
Withdrawn NCT05481814 - CPX in Paradoxical Low Flow Aortic Stenosis
Completed NCT02241109 - Predicting Aortic Stenosis Progression by Measuring Serum Calcification Propensity N/A
Completed NCT01700439 - Surgical Treatment of Aortic Stenosis With a Next Generation, Rapid Deployment Surgical Aortic Valve N/A
Recruiting NCT04429035 - SLOW-Slower Progress of caLcificatiOn With Vitamin K2 N/A
Completed NCT04103931 - Impact of a Patient Decision Aid for Treatment of Aortic Stenosis N/A
Completed NCT03950440 - Assessing the Incidence of Postoperative Delirium Following Aortic Valve Replacement
Active, not recruiting NCT02661451 - Transcatheter Aortic Valve Replacement to UNload the Left Ventricle in Patients With ADvanced Heart Failure (TAVR UNLOAD) N/A
Completed NCT02847546 - Evaluation of the BARD® True™ Flow Valvuloplasty Perfusion Catheter for Aortic Valve Dilatation N/A
Completed NCT02758964 - Evaluation of Cerebral Thrombembolism After TAVR
Completed NCT02792452 - Clinical Value of Stress Echocardiography in Moderate Aortic Stenosis
Not yet recruiting NCT02536703 - Safety and Efficacy of Lotus Valve For TAVI In Patients With Severe Aortic Stenosis In Chinese Population Phase 3
Not yet recruiting NCT02541877 - Sizing-sTrategy of Bicuspid AoRtic Valve Stenosis With Transcatheter Self-expandable Valve Phase 3
Not yet recruiting NCT02221921 - Safety and Efficacy Study of MicroPort's Transcatheter Aortic Valve and Delivery System for TAVI N/A
Completed NCT02249000 - BIOVALVE - I / II Clincial Investigation N/A
Active, not recruiting NCT02080299 - Protection by Remote Ischemic Preconditioning During Transcatheter Aortic Valve Implantation Phase 2
Terminated NCT01939678 - Characterization and Role of Mutations in Sodium-phosphate Cotransporters in Patients With Calcific Aortic Valve Disease