Assessing Sensitivity of Brain-to-Scalp Blood Flows in Laser Speckle Imaging by Occluding the Superficial Temporal Artery

Fuente: arXiv
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Auteurs principaux: Huang, Yu Xi, Mahler, Simon, Dickson, Maya, Abedi, Aidin, Lo, Yu Tung, Lyden, Patrick D., Russin, Jonathan, Liu, Charles, Yang, Changhuei
Format: Preprint
Publié: 2025
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author Huang, Yu Xi
Mahler, Simon
Dickson, Maya
Abedi, Aidin
Lo, Yu Tung
Lyden, Patrick D.
Russin, Jonathan
Liu, Charles
Yang, Changhuei
author_facet Huang, Yu Xi
Mahler, Simon
Dickson, Maya
Abedi, Aidin
Lo, Yu Tung
Lyden, Patrick D.
Russin, Jonathan
Liu, Charles
Yang, Changhuei
contents Cerebral blood flow is a critical metric for cerebrovascular monitoring, with applications in stroke detection, brain injury evaluation, aging, and neurological disorders. Non-invasively measuring cerebral blood dynamics is challenging due to the scalp and skull, which obstruct direct brain access and contain their own blood dynamics that must be isolated. We developed an aggregated seven-channel speckle contrast optical spectroscopy system to measure blood flow and blood volume non-invasively. Each channel, with distinct source-to-detector distance, targeted different depths to detect scalp and brain blood dynamics separately. By briefly occluding the superficial temporal artery, which supplies blood only to the scalp, we isolated surface blood dynamics from brain signals. Results on 20 subjects show that scalp-sensitive channels experienced significant reductions in blood dynamics during occlusion, while brain-sensitive channels experienced minimal changes. This provides experimental evidence of brain-to-scalp sensitivity in optical measurements, highlighting optimal configuration for preferentially probing brain signals non-invasively.
format Preprint
id arxiv_https___arxiv_org_abs_2501_19005
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Assessing Sensitivity of Brain-to-Scalp Blood Flows in Laser Speckle Imaging by Occluding the Superficial Temporal Artery
Huang, Yu Xi
Mahler, Simon
Dickson, Maya
Abedi, Aidin
Lo, Yu Tung
Lyden, Patrick D.
Russin, Jonathan
Liu, Charles
Yang, Changhuei
Optics
Instrumentation and Detectors
Medical Physics
Cerebral blood flow is a critical metric for cerebrovascular monitoring, with applications in stroke detection, brain injury evaluation, aging, and neurological disorders. Non-invasively measuring cerebral blood dynamics is challenging due to the scalp and skull, which obstruct direct brain access and contain their own blood dynamics that must be isolated. We developed an aggregated seven-channel speckle contrast optical spectroscopy system to measure blood flow and blood volume non-invasively. Each channel, with distinct source-to-detector distance, targeted different depths to detect scalp and brain blood dynamics separately. By briefly occluding the superficial temporal artery, which supplies blood only to the scalp, we isolated surface blood dynamics from brain signals. Results on 20 subjects show that scalp-sensitive channels experienced significant reductions in blood dynamics during occlusion, while brain-sensitive channels experienced minimal changes. This provides experimental evidence of brain-to-scalp sensitivity in optical measurements, highlighting optimal configuration for preferentially probing brain signals non-invasively.
title Assessing Sensitivity of Brain-to-Scalp Blood Flows in Laser Speckle Imaging by Occluding the Superficial Temporal Artery
topic Optics
Instrumentation and Detectors
Medical Physics
url https://arxiv.org/abs/2501.19005