Lemay Michel A, Grill Warren M
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio 44106, USA.
J Neurophysiol. 2004 Jan;91(1):502-14. doi: 10.1152/jn.00235.2003. Epub 2003 Oct 1.
We studied the forces produced at the cat's hindpaw by microstimulation of the ipsi- and contralateral lumbar spinal cord in spinal intact alpha-chloralose anesthetized (n = 3) or decerebrate (n = 3) animals. Isometric force and EMG responses were measured at 9-12 limb configurations, with the paw attached to a force transducer and with the hip and femur fixed. The active forces elicited at different limb configurations were summarized as force fields representing the sagittal plane component of the forces produced at the paw throughout the workspace. The forces varied in amplitude over time but the orientations were stable, and the pattern of an active force field was invariant through time. The active force fields divided into four distinct types, and a few of the fields showed convergence to an equilibrium point. The fields were generally produced by coactivation of the hindlimb muscles. In addition, some of the fields were consistent with known spinal reflexes and the stimulation sites producing them were in laminae where the interneurons associated with those reflexes are known to be located. Muscle activation produced by intraspinal stimulation, as assessed by intramuscular EMG activity, was modified with limb configuration, suggesting that the responses were not fixed, but were modified by position-dependent sensory feedback. The force responses may represent basic outputs of the spinal circuitry and may be related to similar spinal primitives found in the frog and rat.
我们在脊髓完整的α-氯醛糖麻醉(n = 3)或去大脑(n = 3)的动物中,通过对同侧和对侧腰脊髓进行微刺激,研究了猫后爪产生的力。将爪子连接到力传感器,并固定髋部和股骨,在9至12种肢体配置下测量等长力和肌电图反应。在不同肢体配置下引发的作用力被总结为代表整个工作空间中爪子产生的力的矢状面分量的力场。力的幅度随时间变化,但方向稳定,主动力场的模式随时间不变。主动力场分为四种不同类型,其中一些力场显示出向平衡点收敛。这些力场通常是由后肢肌肉的共同激活产生的。此外,一些力场与已知的脊髓反射一致,产生这些力场的刺激部位位于已知与这些反射相关的中间神经元所在的板层。通过肌内肌电图活动评估,脊髓内刺激产生的肌肉激活随肢体配置而改变,这表明反应不是固定的,而是由位置依赖性感觉反馈改变的。力反应可能代表脊髓回路的基本输出,可能与青蛙和大鼠中发现的类似脊髓原始结构有关。