ArXiv Pub Date : 2025-02-11
Chaebeom Yeo, Xuhui Liu, Mehrana Mohtasebi, Faezeh Akbari, Faraneh Fathi, Guoqiang Yu
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摘要

意义重大:测量脑血流(CBF)对诊断各种脑部疾病至关重要。目前已开发出一种经济实惠、可穿戴、无光纤的连续波斑点对比血流测量(CW-DSCF)技术,用于连续监测 CBF 的变化。目的:开发一种创新的脉冲模式 DSCF(PM-DSCF)系统,用于连续监测成人的 CBF 变化:方法:PM-DSCF 利用 808 nm 激光二极管和小型 NanEye 相机捕捉大脑中红细胞运动引起的弥散激光斑点波动(即 CBF)。该系统在短脉冲模式下工作(占空比小于 5%),最大限度地提高了峰值脉冲光功率,以实现更深的组织穿透,同时确保平均功率密度保持在 ANSI 皮肤暴露安全标准范围内。对 PM-DSCF 进行了组织模拟模型和成人人体评估:结果:最大有效源-探测器距离从 15 毫米(CW-DSCF)增加到 35 毫米(PM-DSCF)。PM-DSCF 成功检测到成人大脑在抬头倾斜实验中的 CBF 变化,这与生理预期一致:结论:从 CW 模式转换到 PM 模式可显著增加最大组织穿透深度,从 ~7.5 mm(CW-DSCF)增加到 ~17.5 mm(PM-DSCF),从而成功测量成人大脑的 CBF。
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An affordable, wearable, fiber-free pulsed-mode diffuse speckle contrast flowmetry (PM-DSCF) sensor for noninvasive measurements of deep cerebral blood flow.

Significance: Measuring cerebral blood flow (CBF) is crucial for diagnosing various cerebral diseases. An affordable, wearable, and fiber-free continuous-wave speckle contrast flowmetry (CW-DSCF) technique has been developed for continuous monitoring of CBF variations. However, its application in adult humans is limited by shallow tissue penetration.

Aim: To develop an innovative pulse-mode DSCF (PM-DSCF) system for continuous monitoring of CBF variations in adult humans.

Approach: The PM-DSCF utilizes an 808 nm laser diode and a small NanEye camera to capture diffuse laser speckle fluctuations caused by red blood cell movement in the brain (i.e., CBF). Operating in short-pulse mode (duty cycle < 5%), the system maximizes peak pulse light power for deeper tissue penetration, while ensuring that the average power density remains within ANSI safety standards for skin exposure. The PM-DSCF was evaluated on tissue-simulating phantoms and in adult humans.

Results: The maximum effective source-detector distance increased from 15 mm (CW-DSCF) to 35 mm (PM-DSCF). The PM-DSCF successfully detected CBF variations in adult brains during head-up-tilting experiments, consistent with physiological expectations.

Conclusions: Switching from CW mode to PM mode significantly increases the maximum tissue penetration depth from ~7.5 mm (CW-DSCF) to ~17.5 mm (PM-DSCF), enabling successful CBF measurements in adult humans.

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