Literature DB >> 23464334

Integration of cardiac and respiratory motion into MRI roadmaps fused with x-ray.

Anthony Z Faranesh1, Peter Kellman, Kanishka Ratnayaka, Robert J Lederman.   

Abstract

PURPOSE: Volumetric roadmaps overlaid on live x-ray fluoroscopy may be used to enhance image guidance during interventional procedures. These roadmaps are often static and do not reflect cardiac or respiratory motion. In this work, the authors present a method for integrating cardiac and respiratory motion into magnetic resonance imaging (MRI)-derived roadmaps to fuse with live x-ray fluoroscopy images, and this method was tested in large animals.
METHODS: Real-time MR images were used to capture cardiac and respiratory motion. Nonrigid registration was used to calculate motion fields to deform a reference end-expiration, end-diastolic image to different cardiac and respiratory phases. These motion fields were fit to separate affine motion models for the aorta and proximal right coronary artery. Under x-ray fluoroscopy, an image-based navigator and ECG signal were used as inputs to deform the roadmap for live overlay. The in vivo accuracy of motion correction was measured in four swine as the ventilator tidal volume was varied.
RESULTS: Motion correction reduced the root-mean-square error between the roadmaps and manually drawn centerlines, even under high tidal volume conditions. For the aorta, the error was reduced from 2.4 ± 1.5 mm to 2.2 ± 1.5 mm (p < 0.05). For the proximal right coronary artery, the error was reduced from 8.8 ± 16.2 mm to 4.3 ± 5.2 mm (p < 0.001). Using real-time MRI and an affine motion model it is feasible to incorporate physiological cardiac and respiratory motion into MRI-derived roadmaps to provide enhanced image guidance for interventional procedures.
CONCLUSIONS: A method has been presented for creating dynamic 3D roadmaps that incorporate cardiac and respiratory motion. These roadmaps can be overlaid on live X-ray fluoroscopy to enhance image guidance for cardiac interventions.

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Year:  2013        PMID: 23464334      PMCID: PMC3579864          DOI: 10.1118/1.4789919

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  23 in total

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Journal:  IEEE Trans Med Imaging       Date:  2005-11       Impact factor: 10.048

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7.  Displacement and velocity of the coronary arteries: cardiac and respiratory motion.

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Review 10.  Registration of 3D computed tomographic images with interventional systems: implications for catheter ablation of atrial fibrillation.

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  12 in total

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2.  Novel Three-Dimensional Image Fusion Software to Facilitate Guidance of Complex Cardiac Catheterization : 3D image fusion for interventions in CHD.

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5.  An MR-Based Model for Cardio-Respiratory Motion Compensation of Overlays in X-Ray Fluoroscopy.

Authors:  Peter Fischer; Anthony Faranesh; Thomas Pohl; Andreas Maier; Toby Rogers; Kanishka Ratnayaka; Robert Lederman; Joachim Hornegger
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7.  X-ray fused with MRI guidance of pre-selected transcatheter congenital heart disease interventions.

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8.  Real-time respiratory motion compensated roadmaps for hepatic arterial interventions.

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9.  Unsupervised Learning for Robust Respiratory Signal Estimation From X-Ray Fluoroscopy.

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10.  Roadmaps show the way: coregistration to enhance structural heart interventions.

Authors:  Anthony Z Faranesh; Robert J Lederman
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