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Lightweight sCMOS-based high-density diffuse optical tomography

delete2018-08-17
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OA
AI
K
Karla M. Bergonzi
T
Tracy M. Burns‐Yocum
J
Jonathan Bumstead
E
Elise M Buckley
P
Patrick Mannion
C
Christopher Tracy
E
Eli Mennerick
S
Silvina L. Ferradal
H
Hamid Dehghani
A
Adam T. Eggebrecht
J
Joseph P. Culver *
DOI:10.1117/1.NPh.5.3.035006delete
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摘要

摘要

En 中文
Though optical imaging of human brain function is gaining momentum, widespread adoption is restricted in part by a tradeoff among cap wearability, field of view, and resolution. To increase coverage while maintaining functional magnetic resonance imaging (fMRI)-comparable image quality, optical systems require more fibers. However, these modifications drastically reduce the wearability of the imaging cap. The primary obstacle to optimizing wearability is cap weight, which is largely determined by fiber diameter. Smaller fibers collect less light and lead to challenges in obtaining adequate signal-to-noise ratio. Here, we report on a design that leverages the exquisite sensitivity of scientific CMOS cameras to use fibers with similar to 30x smaller cross-sectional area than current high-density diffuse optical tomography (HD-DOT) systems. This superpixel sCMOS DOT (SP-DOT) system uses 200-mu m-diameter fibers that facilitate a lightweight, wearable cap. We developed a superpixel algorithm with pixel binning and electronic noise subtraction to provide high dynamic range (>105), high frame rate (>6 Hz), and a low effective detectivity threshold (similar to 200 fW/Hz1/2-mm(2)), each comparable with previous HD-DOT systems. To assess system performance, we present retinotopic mapping of the visual cortex (n = 5 subjects). SP-DOT offers a practical solution to providing a wearable, large field-of-view, and high-resolution optical neuroimaging system. (c) The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its
Keyword:
diffuse optical tomography
functional neuroimaging
image reconstruction
visual stimulus
fiber optics
CMOS
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期刊

Neurophotonics 封面图
Neurophotonics
IF:
3.8
论文数:
722
被引数:
2.4K

机构

H
Harvard University
学者数:
26.5W
论文数: 22.0W
被引数: 28.7W
W
washington university (wustl)
学者数:
5.5W
论文数: 4.5W
被引数: 70
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