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Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network.

Publication ,  Journal Article
Chen, X; Lowerison, MR; Dong, Z; Chandra Sekaran, NV; Llano, DA; Song, P
Published in: IEEE transactions on medical imaging
August 2023

Ultrasound localization microscopy is a super-resolution imaging technique that exploits the unique characteristics of contrast microbubbles to side-step the fundamental trade-off between imaging resolution and penetration depth. However, the conventional reconstruction technique is confined to low microbubble concentrations to avoid localization and tracking errors. Several research groups have introduced sparsity- and deep learning-based approaches to overcome this constraint to extract useful vascular structural information from overlapping microbubble signals, but these solutions have not been demonstrated to produce blood flow velocity maps of the microcirculation. Here, we introduce Deep-SMV, a localization free super-resolution microbubble velocimetry technique, based on a long short-term memory neural network, that provides high imaging speed and robustness to high microbubble concentrations, and directly outputs blood velocity measurements at a super-resolution. Deep-SMV is trained efficiently using microbubble flow simulation on real in vivo vascular data and demonstrates real-time velocity map reconstruction suitable for functional vascular imaging and pulsatility mapping at super-resolution. The technique is successfully applied to a wide variety of imaging scenarios, include flow channel phantoms, chicken embryo chorioallantoic membranes, and mouse brain imaging. An implementation of Deep-SMV is openly available at https://github.com/chenxiptz/SR_microvessel_velocimetry, with two pre-trained models available at https://doi.org/10.7910/DVN/SECUFD.

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Published In

IEEE transactions on medical imaging

DOI

EISSN

1558-254X

ISSN

0278-0062

Publication Date

August 2023

Volume

42

Issue

8

Start / End Page

2374 / 2385

Related Subject Headings

  • Ultrasonography
  • Tomography, X-Ray Computed
  • Nuclear Medicine & Medical Imaging
  • Neural Networks, Computer
  • Microvessels
  • Microbubbles
  • Mice
  • Memory, Short-Term
  • Chick Embryo
  • Animals
 

Citation

APA
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ICMJE
MLA
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Chen, X., Lowerison, M. R., Dong, Z., Chandra Sekaran, N. V., Llano, D. A., & Song, P. (2023). Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network. IEEE Transactions on Medical Imaging, 42(8), 2374–2385. https://doi.org/10.1109/tmi.2023.3251197
Chen, Xi, Matthew R. Lowerison, Zhijie Dong, Nathiya Vaithiyalingam Chandra Sekaran, Daniel A. Llano, and Pengfei Song. “Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network.IEEE Transactions on Medical Imaging 42, no. 8 (August 2023): 2374–85. https://doi.org/10.1109/tmi.2023.3251197.
Chen X, Lowerison MR, Dong Z, Chandra Sekaran NV, Llano DA, Song P. Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network. IEEE transactions on medical imaging. 2023 Aug;42(8):2374–85.
Chen, Xi, et al. “Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network.IEEE Transactions on Medical Imaging, vol. 42, no. 8, Aug. 2023, pp. 2374–85. Epmc, doi:10.1109/tmi.2023.3251197.
Chen X, Lowerison MR, Dong Z, Chandra Sekaran NV, Llano DA, Song P. Localization Free Super-Resolution Microbubble Velocimetry Using a Long Short-Term Memory Neural Network. IEEE transactions on medical imaging. 2023 Aug;42(8):2374–2385.

Published In

IEEE transactions on medical imaging

DOI

EISSN

1558-254X

ISSN

0278-0062

Publication Date

August 2023

Volume

42

Issue

8

Start / End Page

2374 / 2385

Related Subject Headings

  • Ultrasonography
  • Tomography, X-Ray Computed
  • Nuclear Medicine & Medical Imaging
  • Neural Networks, Computer
  • Microvessels
  • Microbubbles
  • Mice
  • Memory, Short-Term
  • Chick Embryo
  • Animals