IEEE Trans Biomed Eng. 2021 May;68(5):1619-1626. doi: 10.1109/TBME.2021.3050797. Epub 2021 Apr 21.
Low-intensity transcranial ultrasound stimulation (TUS) can induce motor responses, neural oscillation and hemodynamic responses. Early studies demonstrated that the motor responses evoked by TUS critically depend on anesthesia levels and ultrasound intensity. However, the neural mechanism of how anesthesia levels and ultrasound intensity influence on brain responses during TUS has never been explored yet. To investigate this question, we applied different anesthesia levels and ultrasound intensities on the visual cortex of mouse and observed neural oscillation change and hemodynamic responses during TUS.
low-intensity ultrasound was delivered to mouse visual cortex under different anesthesia levels, and simultaneous recordings for local field potentials (LFPs) and hemodynamic responses were carried out to measure and analyze the changes quantitatively.
(i) The change of mean amplitude and mean relative power of sharp wave-ripple (SPW-R) in LFPs induced by TUS decreased as the anesthesia level increased (from awake to 1.5% isoflurane). (ii) The hemodynamic response level induced by TUS decreased as the anesthesia level increased (from awake to1.5% isoflurane). (iii) The coupling strength between neural activities and hemodynamic responses was dependent on anesthesia level. (iv) The neural activities and hemodynamic responses increase as a function of ultrasound intensity.
These results support that the neural activities and hemodynamic response of the mouse visual cortex induced by TUS are related to the anesthesia level and ultrasound intensity.
This finding suggests that careful maintenance of anesthesia level and ultrasound intensity is required to acquire accurate LFP and hemodynamic data from samples with TUS.
低强度经颅超声刺激(TUS)可引起运动反应、神经振荡和血液动力学反应。早期研究表明,TUS 诱发的运动反应严重依赖于麻醉水平和超声强度。然而,麻醉水平和超声强度如何影响 TUS 期间大脑反应的神经机制尚未被探索。为了研究这个问题,我们在小鼠视皮层应用不同的麻醉水平和超声强度,观察 TUS 期间神经振荡变化和血液动力学反应。
在不同的麻醉水平下将低强度超声传递到小鼠视皮层,并进行局部场电位(LFPs)和血液动力学反应的同步记录,以定量测量和分析变化。
(i)TUS 诱导的 LFPs 中尖波-涟漪(SPW-R)的平均幅度和平均相对功率的变化随着麻醉水平的增加而减小(从清醒到 1.5%异氟烷)。(ii)TUS 诱导的血液动力学反应水平随着麻醉水平的增加而降低(从清醒到 1.5%异氟烷)。(iii)神经活动与血液动力学反应之间的耦合强度依赖于麻醉水平。(iv)神经活动和血液动力学反应随超声强度增加而增加。
这些结果支持 TUS 诱导的小鼠视皮层的神经活动和血液动力学反应与麻醉水平和超声强度有关。
这一发现表明,在使用 TUS 从样本中获取准确的 LFPs 和血液动力学数据时,需要仔细维持麻醉水平和超声强度。