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Focused ultrasound brain stimulation to anesthetized rats induces long-term changes in somatosensory evoked potentials

机译:对麻醉大鼠的聚焦超声脑刺激可引起体感诱发电位的长期变化

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Low-intensity transcranial focused ultrasound (FUS) has emerged as a noninvasive brain stimulation modality that can reach deep brain areas with high spatial specificity. Previous studies have identified transient effects of FUS on the brain excitability and accompanying physiological responses. Yet the presence of long-lasting effects of FUS, which extend on the order of half an hour or more, has not been probed. We transcranially applied FUS to the somatosensory areas of the anesthetized rats for 10 min at a low duty cycle (5%) and intensity, far below the level that could alter the tissue temperature. Concurrently, we measured electroencephalographic somatosensory evoked potentials (SEP) induced by the unilateral electrical stimulation of the hind limb before and after the sonication. Compared with the control sham condition that did not involve sonication, differential SEP features were evident and persisted beyond 35 min after the administration of FUS. The presence of this nontransient neuromodulatory effect may provide early evidence that FUS-mediated brain stimulation has the potential to induce neuroplasticity.
机译:低强度经颅聚焦超声(FUS)已经成为一种非侵入性的脑刺激方式,可以以高空间特异性到达深部大脑区域。先前的研究已经确定了FUS对大脑兴奋性和伴随的生理反应的短暂影响。然而,尚未探究存在FUS持续时间长达半小时或更长时间的效果。我们以低占空比(5%)和强度将FUS经颅神经系统应用到麻醉大鼠的体感区域,持续10分钟,远低于可能改变组织温度的水平。同时,我们测量了超声处理前后对后肢进行单侧电刺激所诱发的脑电图体感诱发电位(SEP)。与不进行超声处理的假手术对照组相比,SUS的特征明显,并且在FUS给药后35分钟后仍持续存在。这种非暂时性神经调节作用的存在可能提供早期证据,表明FUS介导的脑刺激具有诱导神经可塑性的潜力。

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