脊髓
抑制性突触后电位
电生理学
刺激
兴奋性突触后电位
感觉系统
神经科学
医学
伤害
强度(物理)
生物
内科学
物理
量子力学
受体
作者
Kwan Yeop Lee,Chilman Bae,Dongchul Lee,Zachary Kagan,Kerry Bradley,Jin Mo Chung,Jun‐Ho La
出处
期刊:Neuroscience
[Elsevier]
日期:2020-01-01
卷期号:428: 132-139
被引量:67
标识
DOI:10.1016/j.neuroscience.2019.12.031
摘要
Since 1967, spinal cord stimulation (SCS) has been used to manage chronic intractable pain of the trunk and limbs. Compared to traditional high-intensity, low-frequency (<100 Hz) SCS that is thought to produce paresthesia and pain relief by stimulating large myelinated fibers in the dorsal column (DC), low-intensity, high-frequency (10 kHz) SCS has demonstrated long-term pain relief without generation of paresthesia. To understand this paresthesia-free analgesic mechanism of 10 kHz SCS, we examined whether 10 kHz SCS at intensities below sensory thresholds would modulate spinal dorsal horn (DH) neuronal function in a neuron type-dependent manner. By using in vivo and ex vivo electrophysiological approaches, we found that low-intensity (sub-sensory threshold) 10 kHz SCS, but not 1 kHz or 5 kHz SCS, selectively activates inhibitory interneurons in the spinal DH. This study suggests that low-intensity 10 kHz SCS may inhibit pain sensory processing in the spinal DH by activating inhibitory interneurons without activating DC fibers, resulting in paresthesia-free pain relief.
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