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- W4387095699 abstract "Magnetic stimulation can non-invasively 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 post-injury.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." @default.
- W4387095699 created "2023-09-28" @default.
- W4387095699 creator A5011201539 @default.
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- W4387095699 date "2023-09-01" @default.
- W4387095699 modified "2023-10-14" @default.
- W4387095699 title "Modulatory effect of trans-spinal magnetic intermittent theta burst stimulation on diaphragmatic activity following cervical spinal cord contusion in the rat" @default.
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- W4387095699 doi "https://doi.org/10.1016/j.spinee.2023.09.013" @default.
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