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Rapid, B1 -insensitive, dual-band quasi-adiabatic saturation transfer with optimal control for complete quantification of myocardial ATP flux.

Jack J Miller | Ladislav Valkovič | Matthew Kerr | Kerstin N Timm | William D Watson | Justin Y C Lau | Andrew Tyler | Christopher Rodgers | Paul A Bottomley | Lisa C Heather | Damian J Tyler
Magnetic resonance in medicine | 2021

Phosphorus saturation-transfer experiments can quantify metabolic fluxes noninvasively. Typically, the forward flux through the creatine kinase reaction is investigated by observing the decrease in phosphocreatine (PCr) after saturation of γ-ATP. The quantification of total ATP utilization is currently underexplored, as it requires simultaneous saturation of inorganic phosphate ( Pi ) and PCr. This is challenging, as currently available saturation pulses reduce the already-low γ-ATP signal present.

Pubmed ID: 33538063

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Associated grants

  • Agency: British Heart Foundation, United Kingdom
    Id: FS/19/18/34252
  • Agency: British Heart Foundation, United Kingdom
    Id: RE/13/1/30181
  • Agency: British Heart Foundation, United Kingdom
    Id: FS/16/7/31843
  • Agency: Wellcome Trust, United Kingdom
  • Agency: British Heart Foundation, United Kingdom
    Id: FS/17/58/33072
  • Agency: Wellcome Trust, United Kingdom
    Id: 098436/Z/12/B
  • Agency: British Heart Foundation, United Kingdom
    Id: RG/11/9/28921
  • Agency: British Heart Foundation, United Kingdom
    Id: FS/14/17/30634
  • Agency: Department of Health, United Kingdom
  • Agency: British Heart Foundation, United Kingdom
    Id: FS/15/68/32042

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WI (tool)

RRID:RGD_13508588

Rattus norvegicus with name WI from RGD.

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