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新生儿损伤的长期后果。

Long-Term Consequences of Neonatal Injury.

作者信息

Beggs Simon

机构信息

Research Associate, Program in Neurosciences & Mental Health, Hospital for Sick Children, Toronto, Ontario; Assistant Professor, Faculty of Dentistry, University of Toronto, Toronto, Ontario.

出版信息

Can J Psychiatry. 2015 Apr;60(4):176-80. doi: 10.1177/070674371506000404.

Abstract

The maturation of the central nervous system's (CNS's) sensory connectivity is driven by modality-specific sensory input in early life. For the somatosensory system, this input is the physical, tactile interaction with the environment. Nociceptive circuitry is functioning at the time of birth; however, there is still considerable organization and refinement of this circuitry that occurs postnatally, before full discrimination of tactile and noxious input is possible. This fine-tuning involves separation of tactile and nociceptive afferent input to the spinal cord's dorsal horn and the maturation of local and descending inhibitory circuitry. Disruption of that input in early postnatal life (for example, by tissue injury or other noxious stimulus), can have a profound influence on subsequent development, and consequently the mature functioning of pain systems. In this review, the impact of neonatal surgical incision on nociceptive circuitry is discussed in terms of the underlying developmental neurobiology. The changes are complex, occurring at multiple anatomical sites within the CNS, and including both neuronal and glial cell populations. The altered sensory input from neonatal injury selectively modulates neuronal excitability within the spinal cord, disrupts inhibitory control, and primes the immune system, all of which contribute to the adverse long-term consequences of early pain exposure.

摘要

中枢神经系统(CNS)感觉连接的成熟是由生命早期特定模态的感觉输入驱动的。对于体感系统而言,这种输入是与环境的物理触觉交互。伤害性感受回路在出生时就已发挥作用;然而,在出生后仍会对该回路进行相当多的组织和细化,直到能够完全区分触觉和有害输入。这种微调涉及到脊髓背角触觉和伤害性传入输入的分离以及局部和下行抑制回路的成熟。出生后早期(例如,通过组织损伤或其他有害刺激)中断该输入,会对后续发育产生深远影响,进而影响疼痛系统的成熟功能。在本综述中,将从潜在的发育神经生物学角度讨论新生儿手术切口对伤害性感受回路的影响。这些变化很复杂,发生在中枢神经系统内的多个解剖部位,涉及神经元和胶质细胞群体。新生儿损伤改变的感觉输入选择性地调节脊髓内神经元的兴奋性,破坏抑制控制,并启动免疫系统,所有这些都导致早期疼痛暴露产生不良的长期后果。

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