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Real‐time flow with fast GPU reconstruction for continuous assessment of cardiac output
Authors:Grzegorz Tomasz Kowalik MSc  Jennifer Anne Steeden PhD  Bejal Pandya MBBS  Freddy Odille PhD  David Atkinson PhD  Andrew Taylor MD  Vivek Muthurangu MD
Affiliation:1. UCL Institute of Cardiovascular Science, Centre for Cardiovascular Imaging, London, United Kingdom;2. INSERM U947, Nancy University, Nancy, France;3. Centre for Medical Imaging, UCL Division of Medicine, London, United Kingdom
Abstract:

Purpose:

To demonstrate the feasibility of real‐time phase contrast magnetic resonance (PCMR) assessment of continuous cardiac output with a heterogeneous (CPU/GPU) system for online image reconstruction.

Materials and Methods:

Twenty healthy volunteers underwent aortic flow examination during exercise using a real‐time spiral PCMR sequence. Acquired data were reconstructed in online fashion using an iterative sensitivity encoding (SENSE) algorithm implemented on an external computer equipped with a GPU card. Importantly, data were sent back to the scanner console for viewing. A multithreaded CPU implementation of the real‐time PCMR reconstruction was used as a reference point for the online GPU reconstruction assessment and validation. A semiautomated segmentation and registration algorithm was applied for flow data analysis.

Results:

There was good agreement between the GPU and CPU reconstruction (?0.4 ± 0.8 mL). There was a significant speed‐up compared to the CPU reconstruction (15×). This translated into the flow data being available on the scanner console ≈9 seconds after acquisition finished. This compares to an estimated time using the CPU implementation of 83 minutes.

Conclusion:

Our heterogeneous image reconstruction system provides a base for translation of complex MRI algorithms into clinical workflow. We demonstrated its feasibility using real‐time PCMR assessment of continuous cardiac output as an example. J. Magn. Reson. Imaging 2012; 36:1477–1482. © 2012 Wiley Periodicals, Inc.
Keywords:continuous flow assessment  heterogeneous systems  GPU  real‐time PCMR
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