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Near-infrared spectroscopy measurement of the pulsatile component of cerebral blood flow and volume from arterial oscillations

机译:近红外光谱法测量动脉振荡引起的脑血流和血流的搏动成分

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摘要

We describe a near-infrared spectroscopy (NIRS) method to noninvasively measure relative changes in the pulsate components of cerebral blood flow (pCBF) and volume (pCBV) from the shape of heartbeat oscillations. We present a model that is used and data to show the feasibility of the method. We use a continuous-wave NIRS system to measure the arterial oscillations originating in the brains of piglets. Changes in the animals' CBF are induced by adding CO2 to the breathing gas. To study the influence of scalp on our measurements, comparative, invasive measurements are performed on one side of the head simultaneously with noninvasive measurements on the other side. We also did comparative measurements of CBF using a laser Doppler system to validate the results of our method. The results indicate that for sufficient source-detector separation, the signal contribution of the scalp is minimal and the measurements are representative of the cerebral hemodynamics. Moreover, good correlation between the results of the laser Doppler system and the NIRS system indicate that the presented method is capable of measuring relative changes in CBF. Preliminary results show the potential of this NIRS method to measure pCBF and pCBV relative changes in neonatal pigs.
机译:我们描述了一种近红外光谱(NIRS)方法,以无创方式从心跳振荡的形状测量脑血流量(pCBF)和体积(pCBV)的脉动成分的相对变化。我们提出了一个使用的模型和数据来证明该方法的可行性。我们使用连续波NIRS系统来测量源自仔猪大脑的动脉振荡。通过向呼吸气体中添加CO2来诱导动物CBF的变化。为了研究头皮对我们测量的影响,在头部的一侧同时进行了比较性的侵入性测量,而在另一侧同时进行了非侵入性测量。我们还使用激光多普勒系统对CBF进行了比较测量,以验证我们方法的结果。结果表明,对于足够的源-检测器分离,头皮的信号贡献最小,并且测量值代表脑血流动力学。此外,激光多普勒系统和NIRS系统的结果之间的良好相关性表明,所提出的方法能够测量CBF的相对变化。初步结果表明,该NIRS方法具有测量新生猪中pCBF和pCBV相对变化的潜力。

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