Hage Benjamin D, Truemper Edward J, Bashford Gregory R
Department of Biological Systems Engineering, University of Nebraska-Lincoln.
Department of Biological Systems Engineering, University of Nebraska-Lincoln;
J Vis Exp. 2021 Mar 15(169). doi: 10.3791/62048.
Functional transcranial Doppler ultrasound (fTCD) is the use of transcranial Doppler ultrasound (TCD) to study neural activation occurring during stimuli such as physical movement, activation of tactile sensors in the skin, and viewing images. Neural activation is inferred from an increase in the cerebral blood flow velocity (CBFV) supplying the region of the brain involved in processing sensory input. For example, viewing bright light causes increased neural activity in the occipital lobe of the cerebral cortex, leading to increased blood flow in the posterior cerebral artery, which supplies the occipital lobe. In fTCD, changes in CBFV are used to estimate changes in cerebral blood flow (CBF). With its high temporal resolution measurement of blood flow velocities in the major cerebral arteries, fTCD complements other established functional imaging techniques. The goal of this Methods paper is to give step-by-step instructions for using fTCD to perform a functional imaging experiment. First, the basic steps for identifying the middle cerebral artery (MCA) and optimizing the signal will be described. Next, placement of a fixation device for holding the TCD probe in place during the experiment will be described. Finally, the breath-holding experiment, which is a specific example of a functional imaging experiment using fTCD, will be demonstrated.
功能性经颅多普勒超声(fTCD)是利用经颅多普勒超声(TCD)来研究在诸如身体运动、皮肤触觉传感器激活以及观看图像等刺激过程中发生的神经激活。神经激活是通过供应参与处理感觉输入的脑区的脑血流速度(CBFV)增加来推断的。例如,观看强光会导致大脑皮层枕叶的神经活动增加,从而导致供应枕叶的大脑后动脉血流增加。在fTCD中,CBFV的变化用于估计脑血流量(CBF)的变化。凭借其对大脑主要动脉血流速度的高时间分辨率测量,fTCD补充了其他已确立的功能成像技术。本方法论文的目的是给出使用fTCD进行功能成像实验的逐步指导。首先,将描述识别大脑中动脉(MCA)和优化信号的基本步骤。接下来,将描述在实验过程中用于固定TCD探头的固定装置的放置。最后,将演示屏气实验,这是使用fTCD进行功能成像实验的一个具体例子。