Department of Biological Sciences, National Sun Yat-sen University, #70 Lien-Hai Rd, Kaohsiung, 804 Taiwan; Department of Biomedical Science and Environmental Biology, Kaohsiung Medical University, 9F, First Teaching Building, 100, Shih-Chuan 1st Road, Kaohsiung, 807, Taiwan.
END-ICAP, UVSQ, Inserm, Université Paris-Saclay, Versailles 78000, France.
Spine J. 2024 Feb;24(2):352-372. doi: 10.1016/j.spinee.2023.09.013. Epub 2023 Sep 27.
Magnetic stimulation can noninvasively modulate the neuronal excitability through different stimulatory patterns.
The present study hypothesized that trans-spinal magnetic stimulation with intermittent theta burst stimulatory pattern can modulate respiratory motor outputs in a pre-clinical rat model of cervical spinal cord injury.
In vivo animal study.
The effect of trans-spinal magnetic intermittent theta burst stimulation on diaphragmatic activity was assessed in adult rats with unilateral cervical spinal cord contusion at 2 weeks postinjury.
The results demonstrated that unilateral cervical spinal cord contusion significantly attenuated the inspiratory activity and motor evoked potential of the diaphragm. Trans-spinal magnetic intermittent theta burst stimulation significantly increased the inspiratory activity of the diaphragm in cervical spinal cord contused rats. Inspiratory bursting was also recruited by trans-spinal magnetic intermittent theta burst stimulation in the rats without diaphragmatic activity after cervical spinal cord injury. In addition, trans-spinal magnetic intermittent theta burst stimulation is associated with increases in oxygen consumption and carbon dioxide production.
These results suggest that trans-spinal magnetic intermittent theta burst stimulation can induce respiratory neuroplasticity.
We propose that trans-spinal theta burst magnetic stimulation may be considered a potential rehabilitative strategy for improving the respiratory activity after cervical spinal cord injury. This will require future clinical study.
磁刺激可以通过不同的刺激模式非侵入性地调节神经元兴奋性。
本研究假设经颅磁刺激采用间断 theta 爆发刺激模式可以在颈脊髓损伤的临床前大鼠模型中调节呼吸运动输出。
体内动物研究。
在损伤后 2 周的单侧颈脊髓挫伤成年大鼠中评估经颅磁间断 theta 爆发刺激对膈神经活动的影响。
结果表明,单侧颈脊髓挫伤显著减弱了吸气肌的吸气活动和运动诱发电位。经颅磁间断 theta 爆发刺激显著增加了颈脊髓挫伤大鼠的膈神经吸气活动。经颅磁间断 theta 爆发刺激也可在颈脊髓损伤后无膈神经活动的大鼠中募集吸气爆发。此外,经颅磁间断 theta 爆发刺激与耗氧量和二氧化碳产生的增加有关。
这些结果表明,经颅磁间断 theta 爆发刺激可以诱导呼吸神经可塑性。
我们提出,经颅 theta 爆发磁刺激可能被认为是改善颈脊髓损伤后呼吸活动的一种潜在康复策略。这需要进一步的临床研究。