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Non-invasive ultrasonic neuromodulation of neuronal excitability for treatment of epilepsy

机译:非侵袭性超声癫痫癫痫治疗神经元兴奋性

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Non-invasive low-intensity pulsed ultrasound has been employed for direct neuro-modulation. However, its range and effectiveness for different neurological disorders have not been fully elucidated. Methods: We used multiple approaches of electrophysiology, immunohistochemistry, and behavioral tests as potential epilepsy treatments in non-human primate model of epilepsy and human epileptic tissues. Low-intensity pulsed ultrasound with a frequency of 750 kHz and acoustic pressure of 0.35 MPa (the spatial peak pulse average intensity, I SPPA = 2.02 W/cm 2 ) were delivered to the epileptogenic foci in five penicillin-induced epileptic monkey models. An ultrasound neuro-modulation system with a frequency of 28 MHz and acoustic pressure of 0.13 MPa (I SPPA = 465 mW/cm 2 ) compatible with patch-clamp systems was used to stimulate the brain slices prepared from fifteen patients with epilepsy. Results: After 30 min of low-intensity pulsed ultrasound treatment, total seizure count for 16 hours (sham group: 107.7 ± 1.2, ultrasound group: 66.0 ± 7.9, P 0.01) and seizure frequency per hour (sham group: 15.6 ± 1.2, ultrasound group: 9.6 ± 1.5, P 0.05) were significantly reduced. The therapeutic efficacy and underlying potential mechanism of low-intensity pulsed ultrasound treatment were studied in biopsy specimens from epileptic patients in vitro. Ultrasound stimulation could inhibit epileptiform activities with an efficiency exceeding 65%, potentially due to adjusting the balance of excitatory-inhibitory (E/I) synaptic inputs by the increased activity of local inhibitory neurons. Conclusion: Herein, we demonstrated for the first time that low-intensity pulsed ultrasound improves electrophysiological activities and behavioral outcomes in a non-human primate model of epilepsy and suppresses epileptiform activities of neurons from human epileptic slices. The study provides evidence for the potential clinical use of non-invasive low-intensity pulsed ultrasound stimulation for epilepsy treatment.? The author(s).
机译:非侵入性低强度脉冲超声已经用于直接神经调制。然而,其对不同的神经系统疾病的范围和有效性尚未完全阐明。方法:我们使用电生理,免疫组织化学的多种方法和行为测试为癫痫和癫痫的人组织的非人类灵长类动物模型的潜在癫痫的治疗方法。低强度脉冲超声与750千赫的频率,并且声压0.35兆帕(空间峰值脉冲平均强度,I SPPA = 2.02 W / cm 2)的在五个青霉素诱导的癫痫模型猴被交付给致痫灶。用28兆赫的频率和0.13兆帕的声压的超声神经调制系统(I SPPA = 465毫瓦/厘米2)与膜片钳系统兼容用于刺激从15名癫痫患者制备的脑切片。结果:经低强度的30分钟脉冲超声治疗,总发作次数为16小时(Sham组为107.7±1.2,超声组:66.0±7.9,P <0.01)每小时和癫痫发作频率(Sham组为15.6±1.2 ,超声组:9.6±1.5,P <0.05)均显著减少。的治疗功效和低强度脉冲超声治疗的潜在可能的机制在从癫痫患者体外活检标本进行了研究。超声刺激能抑制癫痫样活动与效率超过65%,可能是由于由当地抑制性神经元的增加的活性调节的兴奋性抑制(E / I)的突触输入的平衡。结论:在此,我们证明了第一次低强度脉冲超声波改进的电活动和行为结果在癫痫的非人灵长类动物模型;它压迫癫痫人类癫痫切片神经元的活动。这项研究提供了证据的潜在临床使用非侵入性低强度脉冲超声波刺激对癫痫病的治疗?作者。

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