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Ultrasound is a well-established imaging modality that currently accounts for about 1/3 of all diagnostic imaging procedures and is a cornerstone in medical disciplines such as cardiology, radiology, and obstetrics. Conventional medical diagnostic imaging methods provide resolution on the order of 0.5–1 mm and penetration greater than 100 mm. Dr. Foster's lab has extended the powerful B-mode backscatter methods developed for clinical imaging in the 3–10 MHz frequency range to much higher frequencies (20–200 MHz), thereby enabling tissue micro-imaging. This technique, called micro-ultrasound (microUS), enables biological structures to be imaged with resolutions ranging from 15 to 100 micrometres over fields of view ranging from 2–15 mm.
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Carlos-Felipe Roa,Emmanuel Chérin, Nidhi Singh,Jianhua Yin,Aaron Boyes,F Stuart Foster, Christine E M Demore
Sensors (Basel, Switzerland)no. 6 (2024): 1847
Nidhi Singh,Emmanuel Chérin,Carlos-Felipe Roa,Yohannes Soenjaya, Brian Wodlinger,Gang Zheng,Brian C. Wilson,F. Stuart Foster, Christine E.M. Demore
Ultrasound in medicine & biologyno. 4 (2024): 457-466
crossref(2023)
Marcela Franco,Shan Man, Limor Chen,Urban Emmenegger,Yuval Shaked,Alison M. Cheung, Allison S. Brown,Daniel J. Hicklin,F. Stuart Foster,Robert S. Kerbel
crossref(2023)
Giulio Francia,Yuval Shaked,Kae Hashimoto, John Sun,Melissa Yin,Carolyn Cesta, Ping Xu,Shan Man,Christina Hackl, Julie Stewart,Mark Uhlik, Anne H. Dantzig,
crossref(2023)
crossref(2023)
Giulio Francia,Yuval Shaked,Kae Hashimoto, John Sun,Melissa Yin, Carolyn E. Cesta, Ping Xu,Shan Man, Christina Hackl, Julie Stewart, Mark Uhlik, Anne H. Dantzig,
openalex(2023)
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