Cho Younghoon R, Jones Seth R, Pawela Christopher P, Li Rupeng, Kao Dennis S, Schulte Marie L, Runquist Matthew L, Yan Ji-Geng, Hudetz Anthony G, Jaradeh Safwan S, Hyde James S, Matloub Hani S
Department of Plastic Surgery, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.
J Reconstr Microsurg. 2008 Nov;24(8):551-7. doi: 10.1055/s-0028-1088231. Epub 2008 Oct 15.
The regions of the body have cortical and subcortical representation in proportion to their degree of innervation. The rat forepaw has been studied extensively in recent years using functional magnetic resonance imaging (fMRI), typically by stimulation using electrodes directly inserted into the skin of the forepaw. Here we stimulate the nerve directly using surgically implanted electrodes. A major distinction is that stimulation of the skin of the forepaw is mostly sensory, whereas direct nerve stimulation reveals not only the sensory system but also deep brain structures associated with motor activity. In this article, we seek to define both the motor and sensory cortical and subcortical representations associated with the four major nerves of the rodent upper extremity. We electrically stimulated each nerve (median, ulnar, radial, and musculocutaneous) during fMRI acquisition using a 9.4-T Bruker scanner (Bruker BioSpin, Billerica, MA). A current level of 0.5 to 1.0 mA and a frequency of 5 Hz were used while keeping the duration constant. A distinct pattern of cortical activation was found for each nerve that can be correlated with known sensorimotor afferent and efferent pathways to the rat forepaw. This direct nerve stimulation rat model can provide insight into peripheral nerve injury.
身体各部位在大脑皮层和皮层下的表征与其神经支配程度成正比。近年来,大鼠前爪已通过功能磁共振成像(fMRI)得到广泛研究,通常是通过将电极直接插入前爪皮肤进行刺激。在此,我们使用手术植入的电极直接刺激神经。一个主要区别在于,刺激前爪皮肤主要是感觉性的,而直接神经刺激不仅能揭示感觉系统,还能揭示与运动活动相关的深部脑结构。在本文中,我们试图确定与啮齿动物上肢四条主要神经相关的运动和感觉皮层及皮层下表征。在使用9.4-T布鲁克扫描仪(布鲁克生物自旋公司,马萨诸塞州比勒里卡)进行fMRI采集期间,我们对每条神经(正中神经、尺神经、桡神经和肌皮神经)进行电刺激。使用0.5至1.0 mA的电流水平和5 Hz的频率,同时保持持续时间恒定。发现每条神经都有独特的皮层激活模式,这与已知的大鼠前爪感觉运动传入和传出通路相关。这种直接神经刺激大鼠模型可为周围神经损伤提供见解。