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Multi-Distance Frequency-Domain Optical Measurements of Coherent Cerebral Hemodynamics

机译:相干脑血流动力学的多距离频域光学测量

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We report non-invasive, bilateral optical measurements on the forehead of five healthy human subjects, of 0.1 Hz oscillatory hemodynamics elicited either by cyclic inflation of pneumatic thigh cuffs, or by paced breathing. Optical intensity and the phase of photon-density waves were collected with frequency-domain near-infrared spectroscopy at seven source-detector distances (11–40 mm). Coherent hemodynamic oscillations are represented by phasors of oxyhemoglobin ( O ) and deoxyhemoglobin ( D ) concentrations, and by the vector D / O that represents the amplitude ratio and phase difference of D and O . We found that, on an average, the amplitude ratio (| D / O |) and the phase difference (∠( D / O )) obtained with single-distance intensity at 11–40 mm increase from 0.1° and ?330° to 0.2° and ?200°, respectively. Single-distance phase and the intensity slope featured a weaker dependence on source-detector separation, and yielded | D / O | and ∠( D / O ) values of about 0.5 and ?200°, respectively, at distances greater than 20 mm. The key findings are: (1) Single-distance phase and intensity slope are sensitive to deeper tissue compared to single-distance intensity; (2) deeper tissue hemodynamic oscillations, which more closely represent the brain, feature D and O phasors that are consistent with a greater relative flow-to-volume contributions in brain tissue compared to extracerebral, superficial tissue.
机译:我们报告了五个健康人类受试者的额头上的非侵入性,双边光学测量结果,即通过充气大腿袖带的周期性充气或通过有规律的呼吸引起的0.1 Hz振荡血流动力学。光学强度和光子密度波的相位是通过频域近红外光谱法在七个源探测器距离(11–40 mm)处收集的。相干的血液动力学振荡由氧合血红蛋白(O)和脱氧血红蛋白(D)浓度的相量以及代表D和O的振幅比和相位差的矢量D / O表示。我们发现,平均而言,在11–40 mm处以单距强度获得的振幅比(| D / O |)和相位差(∠(D / O))从0.1°和?330°增大至分别为0.2°和200°。单距相位和强度斜率对源-检测器分离的依赖性较弱,并且D / O |在大于20mm的距离处的Δ(D / O)值分别约为0.5和200°。关键发现是:(1)与单距强度相比,单距相位和强度斜率对更深的组织敏感; (2)较深的组织血流动力学振荡(更紧密地代表大脑)具有D和O相量,与脑外表层组织相比,在脑组织中相对较大的流量相对体积贡献是一致的。

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