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Mapping the Microscale Origins of MRI Contrast with Subcellular NV Diamond Magnetometry

Medical Physics 2018-01-10 v1 Biological Physics Quantum Physics

Abstract

Magnetic resonance imaging (MRI) is a widely used biomedical imaging modality that derives much of its contrast from microscale magnetic field gradients in biological tissues. However, the connection between these sub-voxel field patterns and MRI contrast has not been studied experimentally. Here, we describe a new method to map subcellular magnetic fields in mammalian cells and tissues using nitrogen vacancy diamond magnetometry and connect these maps to voxel-scale MRI contrast, providing insights for in vivo imaging and contrast agent design.

Keywords

Cite

@article{arxiv.1610.01924,
  title  = {Mapping the Microscale Origins of MRI Contrast with Subcellular NV Diamond Magnetometry},
  author = {Hunter C. Davis and Pradeep Ramesh and Aadyot Bhatnagar and Audrey Lee-Gosselin and John F. Barry and David R. Glenn and Ronald L. Walsworth and Mikhail G. Shapiro},
  journal= {arXiv preprint arXiv:1610.01924},
  year   = {2018}
}