Weiss Shennan A, Zottoli Steven J, Do Samantha C, Faber Donald S, Preuss Thomas
Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
J Exp Biol. 2006 Dec;209(Pt 23):4788-801. doi: 10.1242/jeb.02582.
Startle behaviors in teleost fishes are well suited for investigations of mechanisms of sensorimotor integration because the behavior is quantifiable and much of the underlying circuitry has been identified. The teleost C-start is triggered by an action potential in one of the two Mauthner (M) cells. To correlate C-start behavior with electrophysiology, extracellular recordings were obtained from the surface of the medulla oblongata in the hindbrain, close to the M-axons, in freely swimming goldfish monitored using high-speed video. The recordings included action potentials generated by the two M-axons, as well as neighboring axons in the dorsal medial longitudinal fasciculus. Axonal backfills indicated that the latter originate from identifiable reticulospinal somata in rhombomeres 2-8 and local interneurons. Diverse auditory and visual stimuli evoked behaviors with kinematics characteristic of the C-start, and the amplitude of the first component of the hindbrain field potential correlated with the C-start direction. The onset of the field potential preceded that of the simultaneously recorded trunk EMG and movement initiation by 1.08+/-0.04 and 8.13+/-0.17 ms, respectively. A subsequent longer latency field potential was predictive of a counterturn. These results indicate that characteristic features of the C-start can be extracted from the neural activity of the M-cell and a population of other reticulospinal neurons in free-swimming goldfish.
硬骨鱼类的惊吓行为非常适合用于研究感觉运动整合机制,因为这种行为是可量化的,并且许多潜在的神经回路已经被确定。硬骨鱼类的C形启动是由两个迈纳(M)细胞之一的动作电位触发的。为了将C形启动行为与电生理学相关联,在自由游动的金鱼中,使用高速视频进行监测,从后脑延髓表面靠近M轴突处获得细胞外记录。记录包括两个M轴突以及背内侧纵束中的相邻轴突产生的动作电位。轴突回填表明,后者起源于菱脑节2-8中可识别的网状脊髓神经元胞体和局部中间神经元。各种听觉和视觉刺激诱发了具有C形启动运动学特征的行为,并且后脑场电位第一成分的幅度与C形启动方向相关。场电位的起始分别比同时记录的躯干肌电图和运动起始提前1.08±0.04毫秒和8.13±0.17毫秒。随后潜伏期较长的场电位可预测反向转弯。这些结果表明,在自由游动的金鱼中,可以从M细胞和其他一群网状脊髓神经元的神经活动中提取C形启动的特征。