伏隔核
上瘾
内囊
神经科学
电生理学
微电极
医学
心理学
中枢神经系统
化学
放射科
电极
磁共振成像
物理化学
白质
作者
Li Wan,Nan Li,Xin Wang,Lei Chen,Mingming Su,Zhaohui Zheng,Jiaming Li,Xin Wang,Da Jing,Xuelian Wang,Shun-Nan Ge
标识
DOI:10.1016/j.neulet.2024.137884
摘要
The nucleus accumbens (NAc) and the anterior limb of internal capsule (ALIC) are effective targets for treating addiction using deep brain stimulation (DBS). However, there have been no reports on the electrophysiological characteristics of addiction nuclei at the single-cell level in humans. This study aimed to investigate the electrical activity characteristics of neurons in the NAc and ALIC using microelectrode recording (MER) during DBS surgery in patients with addiction, and six patients with addiction were included (five with heroin addiction and one with alcohol addiction). The microelectrode recording trajectories were reconstructed and recording sites at different depths were determined by merging the pre- and post-operative images in the FrameLink system. The results showed that among the 256 neurons, 204 (80 %) were burst neurons. NAc neurons accounted for the majority (57 %), and the mean firing rate (MFR) was the highest (1.94 Hz). ALIC neurons accounted for the least (14 %), and MFR was the lowest (0.44 Hz). MFR increased after entering the NAc and decreased after entering the ALIC. In the patients with addiction treated using DBS, the single-cell level electrophysiological characteristics of the different nuclei were found to be distinct along the surgical trajectory.
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