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Fast and sensitive diffuse correlation spectroscopy with highly parallelized single photon detection

delete2021-02-12
delete47
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OA
AI
W
Wenhui Liu
R
Ruobing Qian
S
Shiqi Xu
P
Pavan Chandra Konda
J
Joakim Jönsson
M
Mark Harfouche
D
Dawid Borycki
C
Colin Cooke
E
Edouard Berrocal
戴琼海 (Qionghai Dai)
H
Haoqian Wang
R
Roarke Horstmeyer *
DOI:10.1063/5.0031225delete
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Abstract

Abstract

En 中文
Diffuse correlation spectroscopy (DCS) is a well-established method that measures rapid changes in scattered coherent light to identify blood flow and functional dynamics within a tissue. While its sensitivity to minute scatterer displacements leads to a number of unique advantages, conventional DCS systems become photon-limited when attempting to probe deep into the tissue, which leads to long measurement windows (?1 sec). Here, we present a high-sensitivity DCS system with 1024 parallel detection channels integrated within a single-photon avalanche diode array and demonstrate the ability to detect mm-scale perturbations up to 1 cm deep within a tissue-like phantom at up to a 33 Hz sampling rate. We also show that this highly parallelized strategy can measure the human pulse at high fidelity and detect behaviorally induced physiological variations from above the human prefrontal cortex. By greatly improving the detection sensitivity and speed, highly parallelized DCS opens up new experiments for high-speed biological signal measurement.
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Journal

APL Photonics cover
APL Photonics
IF:
5.3
Papers:
1.5K
Citations:
5.5K

Organization

P
Polish Academy of Sciences
Scholars:
3.0W
Papers: 3.1W
Citations: 3.1W
D
Duke University
Scholars:
6.3W
Papers: 5.7W
Citations: 6.5W
T
tsinghua university
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11.8W
Papers: 10.0W
Citations: 137
L
lund university
Scholars:
4.1W
Papers: 3.9W
Citations: 54
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