Literature DB >> 22014498

Clinical cardiac magnetic resonance spectroscopy.

Cameron J Holloway1, Joseph Suttie, Sairia Dass, Stefan Neubauer.   

Abstract

Cardiac magnetic resonance spectroscopy (MRS) is a noninvasive tool for the assessment of myocardial metabolism, without the use of radiation or intravenous contrast agents. Using the intrinsic magnetic resonance signals from nuclei, including (31)Phosphorus, (1)Hydrogen, (23)Sodium, and (13)Carbon and, more recently, hyperpolarization techniques, MRS provides a comprehensive metabolic assessment of cardiac muscle. This highly versatile technique has provided insights into the pathophysiology of cardiac metabolism in a wide range of conditions, including ischemic heart disease, heart failure, genetic cardiomyopathies, heart transplantation, hypertensive heart disease, valvular heart disease, and diabetes. In addition, MRS has value in the assessment of prognosis and for monitoring therapeutic strategies in heart failure. However, because of the low temporal and spatial resolution of the technique, MRS has so far been limited to research applications. With higher field strength magnets and novel hyperpolarization techniques, the promise of using MRS for clinical applications may eventually be fulfilled.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 22014498     DOI: 10.1016/j.pcad.2011.08.002

Source DB:  PubMed          Journal:  Prog Cardiovasc Dis        ISSN: 0033-0620            Impact factor:   8.194


  15 in total

Review 1.  Assessing tissue metabolism by phosphorous-31 magnetic resonance spectroscopy and imaging: a methodology review.

Authors:  Yuchi Liu; Yuning Gu; Xin Yu
Journal:  Quant Imaging Med Surg       Date:  2017-12

Review 2.  PET/MRI: current state of the art and future potential for cardiovascular applications.

Authors:  Nebiyu Adenaw; Michael Salerno
Journal:  J Nucl Cardiol       Date:  2013-12       Impact factor: 5.952

Review 3.  Recent advances in metabolic imaging.

Authors:  Robert J Gropler
Journal:  J Nucl Cardiol       Date:  2013-12       Impact factor: 5.952

4.  1H- and 31P-myocardial magnetic resonance spectroscopy in non-obstructive hypertrophic cardiomyopathy patients and competitive athletes.

Authors:  Francesco Secchi; Giovanni Di Leo; Marcello Petrini; Riccardo Spairani; Marco Alì; Marco Guazzi; Francesco Sardanelli
Journal:  Radiol Med       Date:  2017-01-09       Impact factor: 3.469

Review 5.  Advances in MRI Applications to Diagnose and Manage Cardiomyopathies.

Authors:  Ramya Vajapey; Brendan Eck; Wilson Tang; Deborah H Kwon
Journal:  Curr Treat Options Cardiovasc Med       Date:  2019-11-27

6.  Cardiac MRI for Patients with Increased Cardiometabolic Risk.

Authors:  Cynthia Philip; Rebecca Seifried; P Gabriel Peterson; Robert Liotta; Kevin Steel; Marcio S Bittencourt; Edward A Hulten
Journal:  Radiol Cardiothorac Imaging       Date:  2021-04-01

Review 7.  Imaging of early modification in cardiomyopathy: the doxorubicin-induced model.

Authors:  Mohamed Aissiou; Delphine Périé; Farida Cheriet; Nagib S Dahdah; Caroline Laverdière; Daniel Curnier
Journal:  Int J Cardiovasc Imaging       Date:  2013-06-07       Impact factor: 2.357

Review 8.  Non-invasive investigation of myocardial energetics in cardiac disease using 31P magnetic resonance spectroscopy.

Authors:  Mark A Peterzan; Andrew J M Lewis; Stefan Neubauer; Oliver J Rider
Journal:  Cardiovasc Diagn Ther       Date:  2020-06

Review 9.  Use of cardiac magnetic resonance to detect changes in metabolism in heart failure.

Authors:  William D Watson; Jack J J Miller; Andrew Lewis; Stefan Neubauer; Damian Tyler; Oliver J Rider; Ladislav Valkovič
Journal:  Cardiovasc Diagn Ther       Date:  2020-06

Review 10.  Diagnostic and prognostic value of cardiovascular magnetic resonance in non-ischaemic cardiomyopathies.

Authors:  Chirine Parsai; Rory O'Hanlon; Sanjay K Prasad; Raad H Mohiaddin
Journal:  J Cardiovasc Magn Reson       Date:  2012-08-02       Impact factor: 5.364

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