Shah Kevin A, Sonti Anup N, Wu Yi-Chen, Powell Keren, Doobay Mohini, Narayan Raj K, Li Chunyan
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:5208-5211. doi: 10.1109/EMBC44109.2020.9176845.
The "diving reflex" (DR) is a very powerful autonomic reflex that facilitates survival in hypoxic/anoxic conditions and could trigger multifaceted physiologic effects for the treatment of various diseases by modulating the cardiovascular, respiratory, and nervous systems. The DR can be induced by cold water or noxious gases applied to the anterior nasal mucosa and paranasal regions, which can stimulate trigeminal thermo- or chemo-receptors to send afferent signals to medullary nuclei which mediate the sympathetic and parasympathetic nervous systems. Although promising, these approaches have yet to be adopted in routine clinical practice due to the inability to precisely control exposure-response relationships, lack of reproducibility, and difficulty implementing in a clinical setting. In this study, we present the ability of electrical Trigeminal (Infraorbital) Nerve Stimulation (eTINS) to induce the DR in a dose-controllable manner. We found that eTINS not only triggered specific physiological changes compatible with the pattern of "classic" DR observed in animals/humans, but also controlled the induced-DR at varying levels. This study demonstrates, for the first time, that the intensity of the DR is controllable by dose and opens possibility to investigate its protective mechanism against various pathologies in well-controlled research settings.
“潜水反射”(DR)是一种非常强大的自主反射,有助于在缺氧/无氧条件下生存,并可通过调节心血管、呼吸和神经系统触发多方面的生理效应,用于治疗各种疾病。冷水或有害气体作用于鼻前黏膜和鼻旁区域可诱发DR,这会刺激三叉神经的热感受器或化学感受器,将传入信号发送至介导交感和副交感神经系统的髓核。尽管前景广阔,但由于无法精确控制暴露-反应关系、缺乏可重复性以及在临床环境中难以实施,这些方法尚未应用于常规临床实践。在本研究中,我们展示了经皮三叉神经(眶下神经)电刺激(eTINS)以剂量可控的方式诱发DR的能力。我们发现,eTINS不仅引发了与在动物/人类中观察到的“经典”DR模式相符的特定生理变化,还能在不同水平上控制诱发的DR。本研究首次证明,DR的强度可通过剂量控制,这为在严格控制的研究环境中研究其针对各种病症的保护机制开辟了可能性。