Dommett Eleanor, Coizet Véronique, Blaha Charles D, Martindale John, Lefebvre Véronique, Walton Natalie, Mayhew John E W, Overton Paul G, Redgrave Peter
Department of Psychology, University of Sheffield, Sheffield, S10 2TP, UK.
Science. 2005 Mar 4;307(5714):1476-9. doi: 10.1126/science.1107026.
Unexpected, biologically salient stimuli elicit a short-latency, phasic response in midbrain dopaminergic (DA) neurons. Although this signal is important for reinforcement learning, the information it conveys to forebrain target structures remains uncertain. One way to decode the phasic DA signal would be to determine the perceptual properties of sensory inputs to DA neurons. After local disinhibition of the superior colliculus in anesthetized rats, DA neurons became visually responsive, whereas disinhibition of the visual cortex was ineffective. As the primary source of visual afferents, the limited processing capacities of the colliculus may constrain the visual information content of phasic DA responses.
意外的、具有生物学显著性的刺激会在中脑多巴胺能(DA)神经元中引发短潜伏期的相位反应。尽管这个信号对强化学习很重要,但其传递给前脑靶结构的信息仍不确定。解码相位DA信号的一种方法是确定DA神经元感觉输入的感知特性。在对麻醉大鼠的上丘进行局部去抑制后,DA神经元变得对视觉有反应,而对视觉皮层的去抑制则无效。作为视觉传入的主要来源,上丘有限的处理能力可能会限制相位DA反应的视觉信息内容。