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The Neural Pathways for the Hypothetic Nociceptive-Sympathetic Coupling of NBA for Pain Sensation

机译:NBA疼痛感应的假设伤害性交感神经偶联的神经途径

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In May 2016, it was suggested by the US athletes playing games of National Basketball Association (NBA) in television that the pain sensation might result from the post-sensory nociceptive-sympathetic coupling. In this re-view, it is attempted to newly delineate the underlying neural pathways for this post-sensory nociceptive-sympathetic coupling. Based on the con-temporary feedback neural circuits of pain transmission in spinal cord, it is summarized that the Aδ- and C-fibers relay the sensory noxious signals to the laminae I, II and V of dorsal spinal horn, and in turn activate the peria-queductal grey (PAG) in midbrain, which feedbacks via raphe to inhibit the nociceptive transmission of spinal cord. Herein it is newly added that, as extension of the contemporary feedback pain circuits, the neurons in laminae I and V of dorsal spinal horn as well as those in PAG can additionally activate the sympathetic outputs, completing the post-sensory nocicep-tive-sympathetic coupling. It is emphasized that such nocicep-tive-sympathetic coupling would contribute at least partially to the pain sensation because of sympathetically maintained pain. It is also pointed out that the neurons in parabrachial area (PB) can concurrently relay the nociceptive inputs from spinal cord while regulating the respiration, coor-dinating the nociceptive and respiratory activities during pain sensation. Because both PAG and PB are below thalamus, it is speculated that these sympathetic and respiratory associations with pain are primitive and uni-versal in evolution in vertebrates. It is expected to promote this hypothesis to revise the pain mechanisms in vertebrates and the relevant investigations in the future.
机译:2016年5月,美国运动员在电视中扮演的美国运动员(NBA)的建议,疼痛感觉可能是由感官伤害的伤害性交感神经耦合引起的。在这次重新观察中,尝试新描绘潜在的伤害性伤害性交感神经耦合的底层神经途径。基于脊髓疼痛传递的截止临时反馈神经电路,总结了Aδ和C纤维将感觉有毒信号中继到背脊喇叭的薄层I,II和V,反过来激活中脑中的Peria-quefuctal灰色(PAG),通过拉皮的反馈来抑制脊髓的伤害速度。在此,新增的是,作为当代反馈疼痛电路的延伸,椎间膜I和v的椎间膜喇叭中的神经元以及PAG中的那些可以另外激活同情性输出,完成后感官的诺科皮 - 激情耦合。强调,由于同情保持疼痛,这种Nocicep-ctive-Sympath耦合将至少部分地贡献疼痛感。还指出,桥面区域(Pb)中的神经元可以同时继承脊髓的伤害性输入,同时调节呼吸,引色戒律在疼痛感应期间的伤害性和呼吸系统活性。因为PAG和PB都低于丘脑,所以推测这些同情和呼吸道学与疼痛的呼吸系统是原始的,并且在脊椎动物中的演变中是原始的和单一的。预计将促进这一假设,以修改未来脊椎动物的疼痛机制以及未来的相关调查。

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