Briggman K L, Abarbanel H D I, Kristan W B
Division of Biological Sciences, University of California-San Diego, La Jolla, CA 92093-0357, USA.
Science. 2005 Feb 11;307(5711):896-901. doi: 10.1126/science.1103736.
We investigated decision-making in the leech nervous system by stimulating identical sensory inputs that sometimes elicit crawling and other times swimming. Neuronal populations were monitored with voltage-sensitive dyes after each stimulus. By quantifying the discrimination time of each neuron, we found single neurons that discriminate before the two behaviors are evident. We used principal component analysis and linear discriminant analysis to find populations of neurons that discriminated earlier than any single neuron. The analysis highlighted the neuron cell 208. Hyperpolarizing cell 208 during a stimulus biases the leech to swim; depolarizing it biases the leech to crawl or to delay swimming.
我们通过刺激相同的感觉输入来研究水蛭神经系统中的决策过程,这些感觉输入有时会引发爬行,有时会引发游泳。每次刺激后,用电压敏感染料监测神经元群体。通过量化每个神经元的辨别时间,我们发现了在两种行为明显之前就能进行辨别的单个神经元。我们使用主成分分析和线性判别分析来寻找比任何单个神经元更早进行辨别的神经元群体。分析突出了神经元细胞208。在刺激期间使细胞208超极化会使水蛭倾向于游泳;使其去极化会使水蛭倾向于爬行或延迟游泳。