静息人脑的前额叶皮层连接和次低振荡耦合:一项双通道宽带近红外光谱研究。

Cerebral cortex communications Pub Date : 2022-08-04 eCollection Date: 2022-01-01 DOI:10.1093/texcom/tgac033
Sadra Shahdadian, Xinlong Wang, Shu Kang, Caroline Carter, Akhil Chaudhari, Hanli Liu
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引用次数: 0

摘要

大脑皮层的静息状态下低频振荡(ISO)反映了人脑的神经生理状态。ISO 来自不同的血管运动,有内源性(E)、神经源性(N)和肌源性(M)频带。对静息状态下人脑皮层血液动力学和新陈代谢中的前额叶 ISO 进行定量分析,有助于识别某些脑部疾病的客观特征。本研究的目的是探索和量化皮层氧合血红蛋白(Δ[HbO])和氧化还原态细胞色素 c 氧化酶(Δ[CCO])浓度变化的前额叶 ISO,作为所有 3 个 E/N/M 波段的血液动力学和代谢活动指标。通过双通道宽带近红外光谱仪(2-bbNIRS),可以对 26 名健康的年轻参与者在静息状态下的前额进行测量,每周一次,持续 5 周。在对每个 E/N/M 波段的 ISO 光谱振幅(SA)和相干性进行量化后,获得了几个关键的、统计上可靠的指标作为特征:(i) 所有 E/N/M 波段的 Δ[HbO]的 SA,(ii) M 波段的 Δ[CCO]的 SA,(iii) E 和 N 波段的血液动力学和新陈代谢的双侧连接,以及 (iv) E 和 M 波段的单侧血液动力学-新陈代谢耦合。这些特征有望在未来开发成临床应用的客观生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Prefrontal cortical connectivity and coupling of infraslow oscillation in the resting human brain: a 2-channel broadband NIRS study.

Prefrontal cortical connectivity and coupling of infraslow oscillation in the resting human brain: a 2-channel broadband NIRS study.

Prefrontal cortical connectivity and coupling of infraslow oscillation in the resting human brain: a 2-channel broadband NIRS study.

Prefrontal cortical connectivity and coupling of infraslow oscillation in the resting human brain: a 2-channel broadband NIRS study.

The resting-state infraslow oscillation (ISO) of the cerebral cortex reflects the neurophysiological state of the human brain. ISO results from distinct vasomotion with endogenic (E), neurogenic (N), and myogenic (M) frequency bands. Quantification of prefrontal ISO in cortical hemodynamics and metabolism in the resting human brain may facilitate the identification of objective features that are characteristic of certain brain disorders. The goal of this study was to explore and quantify the prefrontal ISO of the cortical concentration changes of oxygenated hemoglobin (Δ[HbO]) and redox-state cytochrome c oxidase (Δ[CCO]) as hemodynamic and metabolic activity metrics in all 3 E/N/M bands. Two-channel broadband near-infrared spectroscopy (2-bbNIRS) enabled measurements of the forehead of 26 healthy young participants in a resting state once a week for 5 weeks. After quantifying the ISO spectral amplitude (SA) and coherence at each E/N/M band, several key and statistically reliable metrics were obtained as features: (i) SA of Δ[HbO] at all E/N/M bands, (ii) SA of Δ[CCO] in the M band, (iii) bilateral connectivity of hemodynamics and metabolism across the E and N bands, and (iv) unilateral hemodynamic-metabolic coupling in each of the E and M bands. These features have promising potential to be developed as objective biomarkers for clinical applications in the future.

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