Levinsson A, Luo X L, Holmberg H, Schouenborg J
Department of Physiological Sciences, Section for Neurophysiology, Lund University, S-223 62 Lund, Sweden.
J Neurosci. 1999 Dec 1;19(23):10397-403. doi: 10.1523/JNEUROSCI.19-23-10397.1999.
Recent studies indicate a modular organization of the nociceptive withdrawal reflex system. Each module has a characteristic receptive field, closely matching the withdrawal movement caused by its effector muscle. In the rat, the strength of the sensory input to each module is tuned during the first postnatal weeks, i.e., erroneous spinal connections are depressed, and adequate connections are strengthened. To clarify if this tuning is dependent on supraspinal structures, the effect of a complete neonatal spinal cord transection on the postnatal tuning of withdrawal reflexes was studied. The nociceptive receptive fields of single hindlimb muscles and compound withdrawal reflexes were examined in decerebrate unanesthetized and awake rats, respectively. Noxious thermal CO(2) laser stimulation was used to evoke reflex responses. Neonatal spinal cord transection resulted in a disrupted reflex organization in the adult rat, resembling that previously found in neonatal rats. The receptive fields of single hindlimb muscles exhibited abnormal distribution of sensitivity not matching the withdrawal action of the effector muscles. Likewise, the composite nocifensive movements, as documented in the awake rat, often resulted in erroneous movements toward the stimulus. It is concluded that withdrawal reflexes do not become functionally adapted in rats spinalized at birth. These findings suggest a critical role for supraspinal systems in the postnatal tuning of spinal nociceptive systems.
最近的研究表明伤害性逃避反射系统具有模块化组织。每个模块都有一个特征性的感受野,与由其效应肌引起的逃避运动紧密匹配。在大鼠中,每个模块的感觉输入强度在出生后的头几周进行调整,即错误的脊髓连接被抑制,而适当的连接则得到加强。为了阐明这种调整是否依赖于脊髓上结构,研究了完全性新生大鼠脊髓横断对出生后逃避反射调整的影响。分别在去大脑未麻醉且清醒的大鼠中检查单个后肢肌肉的伤害性感受野和复合逃避反射。使用有害热二氧化碳激光刺激来诱发反射反应。新生大鼠脊髓横断导致成年大鼠的反射组织紊乱,类似于先前在新生大鼠中发现的情况。单个后肢肌肉的感受野表现出异常的敏感性分布,与效应肌的逃避动作不匹配。同样,如在清醒大鼠中记录的那样,复合防御性运动常常导致朝向刺激的错误运动。得出的结论是,出生时脊髓横断的大鼠的逃避反射不会在功能上适应。这些发现表明脊髓上系统在脊髓伤害性系统出生后调整中起关键作用。