Levinsson A, Garwicz M, Schouenborg J
Department of Physiological Sciences, Section for Neurophysiology, Lund University, Sweden.
Eur J Neurosci. 1999 Dec;11(12):4327-32. doi: 10.1046/j.1460-9568.1999.00861.x.
The withdrawal reflex system of higher vertebrates has been extensively used as a model for spinal sensorimotor integration, nociceptive processing and plasticity. In the rat, the nociceptive withdrawal reflex system appears to have a modular organization. Each reflex module controls a single muscle or a few synergistic muscles, and its cutaneous receptive field corresponds to the skin area withdrawn upon contraction of the effector muscle(s) when the limb is in the standing position. This organization principle is at odds with the 'flexion reflex' concept postulated from cat studies. To assess the generality of the modular organization principle we have therefore re-examined the cutaneous input to the withdrawal reflex system of the cat. The cutaneous receptive fields of hindlimb and forelimb muscles were mapped using calibrated noxious pinch stimulation and electromyographic recording technique in barbiturate anaesthetized animals. The investigated muscles had specific cutaneous receptive fields that appeared to correspond to the area of the skin withdrawn upon contraction of the muscle when the limb is in the standing position. The spatial organization of receptive fields in the cat was similar to that in the rat. However, differences in gain properties of reflexes to some anatomically equivalent muscles in the two species were observed, possibly reflecting adaptations to the biomechanics characteristic of the digitigrade and plantigrade stance in cats and rats, respectively. Implications of the findings for the generality of the modular organization of the withdrawal reflex system and for its adaptive properties are discussed.
高等脊椎动物的撤腿反射系统已被广泛用作脊髓感觉运动整合、伤害性处理和可塑性的模型。在大鼠中,伤害性撤腿反射系统似乎具有模块化组织。每个反射模块控制一块肌肉或几块协同肌肉,其皮肤感受野对应于肢体处于站立姿势时效应肌收缩时撤回的皮肤区域。这一组织原则与从猫的研究中推测出的“屈曲反射”概念不一致。因此,为了评估模块化组织原则的普遍性,我们重新检查了猫的撤腿反射系统的皮肤输入。在巴比妥类麻醉的动物中,使用校准的有害捏压刺激和肌电图记录技术绘制后肢和前肢肌肉的皮肤感受野。所研究的肌肉具有特定的皮肤感受野,这些感受野似乎对应于肢体处于站立姿势时肌肉收缩时撤回的皮肤区域。猫的感受野空间组织与大鼠相似。然而,观察到两个物种中一些解剖学上等效肌肉的反射增益特性存在差异,这可能分别反映了对猫和大鼠趾行和跖行姿势生物力学特征的适应。讨论了这些发现对撤腿反射系统模块化组织普遍性及其适应性的影响。