The significance of neural electrophysiological and functional effects of cervical spinal ganglia and sympathetic ganglia in cervical vertigo.

IF 1.5 4区 医学 Q3 CLINICAL NEUROLOGY Neurological Research Pub Date : 2025-06-01 Epub Date: 2025-04-08 DOI:10.1080/01616412.2024.2448631
Gang Chang, Jianlong Han, Jinliang Zuo, Yong Meng, Qiang Wang, Siqiang Qiu
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Abstract

This study investigates the neural electrophysiological and functional effects of cervical spinal ganglia and sympathetic ganglia in cervical vertigo. Twenty-eight rabbits were randomized into superior cervical sympathetic ganglia (SCSG) group (n = 8), inferior cervical sympathetic ganglia (ICSG) group (n = 8) and control groups for both SCSG and ICSG (n = 6 each). Calcium indicator CaMPARI2 was injected into the ganglia. Four weeks later, both SCSG and ICSG groups underwent electrical stimulation followed by UV irradiation. Control groups did not receive electrical stimulation but were also injected with the calcium indicator and irradiated by UV. Additionally, 63 rabbits were randomized into three groups: cervical spinal ganglia stimulation (n = 21), paravertebral nerve blockage (n = 21), and simultaneous blockage of paravertebral nerve and cervical spinal ganglia (n = 21), all subjected to the same electrical stimulation protocol. Results indicated that calcium concentration in the cervical sympathetic ganglia after stimulation was significantly higher compared to the control group (P < 0.05). Blood flow changes in both vertebral artery and basilar artery were significant after electrical stimulation (P < 0.05). In the paravertebral nerve blockage group, significant changes in basilar artery blood flow were observed (P < 0.05), while no significant blood flow changes were noted in the simultaneous blockage group. Cervical spinal ganglia and sympathetic ganglia in the pathogenesis of cervical vertigoThese findings underscore the importance of neural electrophysiological and functional effects of cervical spinal ganglia and sympathetic ganglia in the pathogenesis of cervical vertigo.

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颈性眩晕中颈脊髓神经节和交感神经节神经电生理及功能影响的意义。
本研究探讨颈性眩晕中颈脊髓神经节和交感神经节的神经电生理和功能作用。28只家兔随机分为颈上交感神经节组(n = 8)、颈下交感神经节组(n = 8)和颈上交感神经节组和颈下交感神经节组(n = 6)。在神经节内注射钙指示剂CaMPARI2。4周后,SCSG组和ICSG组均接受电刺激和紫外线照射。对照组不进行电刺激,同时注射钙指示剂并进行紫外线照射。将63只家兔随机分为3组:刺激颈神经节组(n = 21)、阻断椎旁神经组(n = 21)和同时阻断椎旁神经和颈神经节组(n = 21),均采用相同的电刺激方案。结果表明,刺激后颈交感神经节钙离子浓度明显高于对照组(P
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来源期刊
Neurological Research
Neurological Research 医学-临床神经学
CiteScore
3.60
自引率
0.00%
发文量
116
审稿时长
5.3 months
期刊介绍: Neurological Research is an international, peer-reviewed journal for reporting both basic and clinical research in the fields of neurosurgery, neurology, neuroengineering and neurosciences. It provides a medium for those who recognize the wider implications of their work and who wish to be informed of the relevant experience of others in related and more distant fields. The scope of the journal includes: •Stem cell applications •Molecular neuroscience •Neuropharmacology •Neuroradiology •Neurochemistry •Biomathematical models •Endovascular neurosurgery •Innovation in neurosurgery.
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