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Sinusoidal stimulation on afferent fibers can selectively activate different types of neurons in rat hippocampus

机译:传入纤维上的正弦刺激可以选择性激活大鼠海马中不同类型的神经元

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Deep brain stimulation (DBS) is a promising therapy for treating various brain disorders. Although narrow electrical pulses have been commonly used by DBS, sinusoidal waveforms have also been investigated to improve the effects of DBS therapy and to save electrical energy. However, the effect of sinusoidal stimulation on neurons is unclear yet. To investigate the modulation of sinusoidal stimulation on different types of neurons in networks, sinusoidal stimulations (50 Hz) with lower-intensity and higher-intensity were applied to the afferent axons (Schaffer collaterals) in rat hippocampal CA1 region. The firing of inhibitory interneurons and excitatory pyramidal cells (the principal neurons of CA1) during the stimulations were detected and were compared with their baseline firing before stimulations. Results showed that sinusoidal stimulation with a lower-intensity (~30 μA) can selectively activate the interneurons thereby suppressing the firing of pyramidal cells in the downstream post-synaptic region. However, sinusoidal stimulation with a higher-intensity (~60 μA) can increase the firing of both types of neurons significantly. Presumably, the two different effects of inhibition and excitation on the principal neurons by different stimulation intensities could be caused by the fact that the firing threshold of interneurons is lower than that of pyramidal cells. The results provide important clues for selective modulation of neuronal activity by brain stimulations thereby developing different stimulation paradigms to treat various brain disorders.
机译:深部脑刺激(DBS)是一种治疗各种脑部疾病的有前途的疗法。尽管DBS通常使用窄电脉冲,但也已研究了正弦波形以改善DBS治疗的效果并节省电能。然而,正弦刺激对神经元的影响尚不清楚。为了研究正弦刺激对网络中不同类型神经元的调制,将低强度和高强度的正弦刺激(50 Hz)应用于大鼠海马CA1区的传入轴突(Schaffer侧支)。在刺激过程中检测抑制性中间神经元和兴奋性锥体细胞(CA1的主要神经元)的放电,并将其与刺激前的基线放电进行比较。结果表明,较低强度(〜30μA)的正弦刺激可以选择性激活中间神经元,从而抑制突触后下游区域锥体细胞的发射。但是,较高强度(约60μA)的正弦刺激可以显着增加两种神经元的放电。据推测,中间神经元的放电阈值低于锥体细胞,这是由于不同的刺激强度对主要神经元的抑制和激发两种不同的作用所致。该结果为通过脑刺激选择性调节神经元活动提供了重要线索,从而发展出不同的刺激范例来治疗各种脑部疾病。

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