Lo Fu-Sun, Erzurumlu Reha S
Department of Anatomy and Neurobiology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Department of Anatomy and Neurobiology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Exp Neurol. 2016 Jan;275 Pt 2(0 2):245-52. doi: 10.1016/j.expneurol.2015.04.022. Epub 2015 May 6.
Sensory deprivation studies in neonatal mammals, such as monocular eye closure, whisker trimming, and chemical blockade of the olfactory epithelium have revealed the importance of sensory inputs in brain wiring during distinct critical periods. But very few studies have paid attention to the effects of neonatal peripheral sensory nerve damage on synaptic wiring of the central nervous system (CNS) circuits. Peripheral somatosensory nerves differ from other special sensory afferents in that they are more prone to crush or severance because of their locations in the body. Unlike the visual and auditory afferents, these nerves show regenerative capabilities after damage. Uniquely, damage to a somatosensory peripheral nerve does not only block activity incoming from the sensory receptors but also mediates injury-induced neuro- and glial chemical signals to the brain through the uninjured central axons of the primary sensory neurons. These chemical signals can have both far more and longer lasting effects than sensory blockade alone. Here we review studies which focus on the consequences of neonatal peripheral sensory nerve damage in the principal sensory nucleus of the brainstem trigeminal complex.
对新生哺乳动物进行的感觉剥夺研究,如单眼闭合、修剪触须以及对嗅觉上皮进行化学阻断,已经揭示了在不同关键期感觉输入对大脑布线的重要性。但是很少有研究关注新生期外周感觉神经损伤对中枢神经系统(CNS)回路突触布线的影响。外周躯体感觉神经与其他特殊感觉传入神经不同,由于它们在体内的位置,它们更容易受到挤压或切断。与视觉和听觉传入神经不同,这些神经在损伤后具有再生能力。独特的是,躯体感觉外周神经损伤不仅会阻断来自感觉受体的传入活动,还会通过初级感觉神经元未受损的中枢轴突将损伤诱导的神经和胶质化学信号传递到大脑。这些化学信号可能比单纯的感觉阻断具有更多、更持久的影响。在这里,我们综述了关注新生期外周感觉神经损伤对脑干三叉神经复合体主要感觉核影响的研究。