Tufts University , Department of Biomedical Engineering, 4 Colby Street, Medford, Massachusetts 02155, United States.
Tufts University School of Medicine , Department of Neurology, Division of Neurocritical Care, 800 Washington Street, Box #314, Boston, Massachusetts 02111, United States.
Neurophotonics. 2016 Jul;3(3):031411. doi: 10.1117/1.NPh.3.3.031411. Epub 2016 Jun 21.
Cerebral blood flow (CBF) and cerebral autoregulation (CA) are critically important to maintain proper brain perfusion and supply the brain with the necessary oxygen and energy substrates. Adequate brain perfusion is required to support normal brain function, to achieve successful aging, and to navigate acute and chronic medical conditions. We review the general principles of CBF measurements and the current techniques to measure CBF based on direct intravascular measurements, nuclear medicine, X-ray imaging, magnetic resonance imaging, ultrasound techniques, thermal diffusion, and optical methods. We also review techniques for arterial blood pressure measurements as well as theoretical and experimental methods for the assessment of CA, including recent approaches based on optical techniques. The assessment of cerebral perfusion in the clinical practice is also presented. The comprehensive description of principles, methods, and clinical requirements of CBF and CA measurements highlights the potentially important role that noninvasive optical methods can play in the assessment of neurovascular health. In fact, optical techniques have the ability to provide a noninvasive, quantitative, and continuous monitor of CBF and autoregulation.
脑血流 (CBF) 和脑自动调节 (CA) 对于维持适当的脑灌注和为大脑提供必要的氧气和能量底物至关重要。足够的脑灌注对于支持正常的脑功能、实现成功的衰老以及应对急性和慢性疾病状况都是必需的。我们回顾了 CBF 测量的一般原则以及基于直接血管内测量、核医学、X 射线成像、磁共振成像、超声技术、热扩散和光学方法来测量 CBF 的当前技术。我们还回顾了动脉血压测量技术以及 CA 的理论和实验评估方法,包括基于光学技术的最新方法。还介绍了在临床实践中评估脑灌注的方法。对 CBF 和 CA 测量的原则、方法和临床要求的全面描述强调了非侵入性光学方法在评估神经血管健康方面可能发挥的重要作用。事实上,光学技术有能力提供 CBF 和自动调节的非侵入性、定量和连续监测。