Rudomin P, Lomelí J, Quevedo J
Department of Physiology, Biophysics and Neurosciences del IPN, Centro de Investigación y de Estudios Avanzados, Av. Instituto Politécnico Nacional 2508, DF 07300, Mexico.
Exp Brain Res. 2004 Nov;159(2):239-50. doi: 10.1007/s00221-004-1953-7. Epub 2004 Jun 30.
We compared in the anesthetized cat the effects of reversible spinalization by cold block on primary afferent depolarization (PAD) and primary afferent hyperpolarization (PAH) elicited in pairs of intraspinal collaterals of single group I afferents from the gastrocnemius nerve, one of the pairs ending in the L3 segment, around the Clarke's column nuclei, and the other in the L6 segment within the intermediate zone. PAD in each collateral was estimated by independent computer-controlled measurement of the intraspinal current required to maintain a constant probability of antidromic firing. The results indicate that the segmental and ascending collaterals of individual afferents are subjected to a tonic PAD of descending origin affecting in a differential manner the excitatory and inhibitory actions of cutaneous and joint afferents on the pathways mediating the PAD of group I fibers. The PAD-mediating networks appear to function as distributed systems whose output will be determined by the balance of the segmental and supraspinal influences received at that moment. It is suggested that the descending differential modulation of PAD enables the intraspinal arborizations of the muscle afferents to function as dynamic systems, in which information transmitted to segmental reflex pathways and to Clarke's column neurons by common sources can be decoupled by sensory and descending inputs, and funneled to specific targets according to the motor tasks to be performed.
我们在麻醉猫身上比较了通过冷阻滞实现的可逆性脊髓横断对腓肠神经单根I类传入纤维脊髓内成对侧支所引发的初级传入去极化(PAD)和初级传入超极化(PAH)的影响,其中一对侧支终止于L3节段,围绕克拉克柱核,另一对终止于中间带内的L6节段。通过独立的计算机控制测量维持恒定逆向发放概率所需的脊髓内电流,来估计每个侧支中的PAD。结果表明,单个传入纤维的节段性和上行性侧支受到起源于下行的紧张性PAD影响,这种影响以不同方式作用于皮肤和关节传入纤维对介导I类纤维PAD的通路的兴奋和抑制作用。介导PAD的网络似乎作为分布式系统发挥作用,其输出将由当时所接收的节段性和脊髓上影响的平衡来决定。有人提出,PAD的下行差异调制使肌肉传入纤维的脊髓内分支能够作为动态系统发挥作用,在该系统中,由共同来源传递到节段性反射通路和克拉克柱神经元的信息可以通过感觉和下行输入解耦,并根据要执行的运动任务导向特定目标。