51cg

Dr Mathieu Sarracanie

Dr Mathieu Sarracanie
Dr Mathieu Sarracanie
Dr Mathieu Sarracanie

Senior Lecturer

51cg
Email Address
mathieu.sarracanie@abdn.ac.uk
Office Address
Medical Physics Building
Foresterhill Campus
Foresterhill
AB25 2ZD

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School/Department
School of Medicine, Medical Sciences and Nutrition


Biography

As an MR physicist, my research focuses on methodological developments for low-field MRI that include fast-imaging techniques, multi-parametric imaging, and instrumentation for RF detection (custom low-frequency RF detectors and preamplifiers).

I was trained as a biomedical engineer (Université Toulouse III - Paul Sabatier/Université de Technologie de Compiègne, France) before I completed a Ph.D. in Physics in 2011 (Université Paris-Sud, France). I then worked as a post-doctoral researcher at Harvard University (Dept. of Physics) and MGH/HST Athinoula A. Martinos Center for Biomedical Imaging from 2011 to 2016, developing fast Overhauser-enhanced MRI and ultra-low magnetic field imaging.

In 2014 I co-founded , a company that launched the first FDA-cleared portable MRI for point-of-care neuroimaging, stemming from my in Boston at ultra-low magnetic field.

In 2017, I co-founded the Center for Adaptable MRI Technology () together with my partner Dr. Najat Salameh at the University of Basel, in Switzerland. Equipped with 3 low-field systems able to scan human extremities, the whole body, or small phantom and samples, we created this platform from the ground up firmly believing in the development of accessible MRI technology. Together with Dr. Salameh, we have raised more than £3.5M (4M CHF) competitive money by means of 2 professorial fellowships from the Swiss National Science Foundation, to develop our vision and allow our respective groups to gently grow.

In April 2023 the AMT Center has relocated to the 51cg - Institute of Medical Sciences and Nutrition, looking to become an international leader in low-field MRI research and expanding its research portfolio with the addition of field cycling imaging (FCI) currently led by Dr. Lionel Broche.

External Memberships

Member of the Annual Meeting Program Committee (2022-2024).

Vice-chair,

Publications

Page 1 of 3 Results 1 to 10 of 24

  • Fast zero-shot deep learning-based denoising method for low-field MR images

    Ayde, R., Zihlmann, G., Salameh, N., Sarracanie, M.
    Magnetic Resonance Materials in Physics, Biology and Medicine, vol. 39, no. 4, pp. 531-544
    Contributions to Journals: Articles
  • Feasibility of self-navigated motion resolved 3D lung MRI on a non-commercial 100 mT system

    Senn, N., Zihlmann, G., Sarracanie, M., Salameh, N.
    ESMRMB 2025 41st Annual Scientific Meeting, pp. S724-S725
    Contributions to Journals: Abstracts
  • Dynamic behavior of the nucleus pulposus within the intervertebral disc loading: a systematic review and meta-analysis exploring the concept of dynamic disc model

    Deneuville, J. P., Billot, M., Cervantes, A., Peterlongo, S., Meyer, M., Kolder, M., Escande, M., Bourgeois, M., Pallot, A., David, R., Roulaud, M., Ounajim, A., Laslett, M., Sarracanie, M., Salameh, N., Germaneau, A., Rigoard, P.
    Frontiers in Bioengineering and Biotechnology, vol. 13, 1582438
    Contributions to Journals: Review articles
  • MRI at low-field:: a review of software solutions for improving SNR

    Ayde, R., Vornehm, M., Zhao, Y., Knoll, F., Wu, E. X., Sarracanie, M.
    NMR in Biomedicine, vol. 38, no. 1, e5268
    Contributions to Journals: Articles
  • Biplanar quadrature coil for versatile low-field extremity MRI

    Yushchenko, M., Choquet, P., Salameh, N., Sarracanie, M.
    Frontiers in Physics, vol. 11, no. 2023, 987197
    Contributions to Journals: Articles
  • Fast, interleaved, Look‐Locker–based T1 mapping with a variable averaging approach: Towards temperature mapping at low magnetic field

    Fiorito, M., Yushchenko, M., Cicolari, D., Sarracanie, M., Salameh, N.
    NMR in Biomedicine, vol. 36, no. 1, e4826
    Contributions to Journals: Articles
  • Editorial: Innovations in MR Hardware from Ultra-Low to Ultra-High Field

    Frass-Kriegl, R., Broche, L., Ginefri, J., Ladd, M. E., Roat, S., Sarracanie, M., Winkler, S. A. S., Laistler, E.
    Frontiers in Physics, vol. 10, 1015289
    Contributions to Journals: Articles
  • Fast acquisition of propagating waves in humans with low-field MRI: Toward accessible MR elastography

    Yushchenko, M., Sarracanie, M., Salameh, N.
    Science Advances, vol. 8, no. 36, eabo5739
    Contributions to Journals: Articles
  • Deep learning for fast low-field MRI acquisitions

    Ayde, R., Senft, T., Salameh, N., Sarracanie, M.
    Scientific Reports, vol. 12, 11394
    Contributions to Journals: Articles
  • Fast Quantitative Low-Field Magnetic Resonance Imaging with OPTIMUM: Optimized Magnetic Resonance Fingerprinting Using a Stationary Steady-State Cartesian Approach and Accelerated Acquisition Schedules

    Sarracanie, M.
    Investigative Radiology, vol. 57, no. 4, pp. 263-271
    Contributions to Journals: Articles
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