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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Continuous non-invasive optical monitoring of cerebral blood flow and oxidative metabolism after acute brain injury
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Continuous non-invasive optical monitoring of cerebral blood flow and oxidative metabolism after acute brain injury

机译:急性脑损伤后脑血流量和氧化代谢的连续无侵入光学监测

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Rapid detection of ischemic conditions at the bedside can improve treatment of acute brain injury. In this observational study of 11 critically ill brain-injured adults, we employed a monitoring approach that interleaves time-resolved near-infrared spectroscopy (TR-NIRS) measurements of cerebral oxygen saturation and oxygen extraction fraction (OEF) with diffuse correlation spectroscopy (DCS) measurement of cerebral blood flow (CBF). Using this approach, we demonstrate the clinical promise of non-invasive, continuous optical monitoring of changes in CBF and cerebral metabolic rate of oxygen (CMRO2). In addition, the optical CBF and CMRO2 measures were compared to invasive brain tissue oxygen tension (PbtO(2)), thermal diffusion flowmetry CBF, and cerebral microdialysis measures obtained concurrently. The optical CBF and CMRO2 information successfully distinguished between ischemic, hypermetabolic, and hyperemic conditions that arose spontaneously during patient care. Moreover, CBF monitoring during pressor-induced changes of mean arterial blood pressure enabled assessment of cerebral autoregulation. In total, the findings suggest that this hybrid non-invasive neurometabolic optical monitor (NNOM) can facilitate clinical detection of adverse physiological changes in brain injured patients that are otherwise difficult to measure with conventional bedside monitoring techniques.
机译:床侧缺血条件的快速检测可以改善急性脑损伤的治疗。在这项危险性脑受伤的成年人的这种观察性研究中,我们采用了一种监测方法,其与漫射相关光谱(DCS )测量脑血流(CBF)。使用这种方法,我们展示了无侵入性,连续光学监测的临床承诺,随着氧气(CMRO2)的CBF和脑代谢率的变化。另外,将光学CBF和CMO2测量与侵入性脑组织氧张力(PBTO(2)),热扩散流动性CBF和同时获得的脑微透析措施进行比较。光学CBF和CMO2的信息成功地区分了患者护理期间自发地产生的缺血性,超代谢和大性条件。此外,CBF监测在压力诱导的平均动脉血压变化过程中,能够评估脑自身调节。结果表明,该杂交无侵袭性神经素光学监测器(NNOM)可以促进脑损伤患者的临床检测,否则难以通过传统的床边监测技术衡量的患者。

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