论文标题

子空间正交化作为与空间结合值的机制

Subspace orthogonalization as a mechanism for binding values to space

论文作者

Johnston, W. Jeffrey, Fine, Justin M., Yoo, Seng Bum Michael, Ebitz, R. Becket, Hayden, Benjamin Y.

论文摘要

在选项之间选择时,我们必须解决一个重要的约束力问题。选项的值必须与选择它们所需的操作的信息相关联。我们假设大脑通过使用不同的种群子空间解决了这个结合问题。为了检验这一假设,我们检查了恒河猕猴中五个奖励敏感区域中单个神经元的反应,执行了危险的选择任务。在所有领域,神经元在半正交子空间中编码了显示在显示屏左侧和右侧的报价的价值,该子空间将两个报价的值绑定到其在太空中的位置。支持这种正交化在功能上有意义的想法,我们观察到了选择行为和两个值子空间的正交化之间的会话与会议协方差:较少正交子空间的试验与选择较低的价值选择的可能性更大。进一步的检查表明,这些半正交子空间来自神经种群中线性和非线性混合选择性的组合。我们显示了选择性平衡可靠结合的组合,并能够在不同的空间位置概括价值。这些结果支持以下假设:半正交子空间支持可靠的结合,这对于面对多种选择的灵活行为至关重要。

When choosing between options, we must solve an important binding problem. The values of the options must be associated with information about the action needed to select them. We hypothesize that the brain solves this binding problem through use of distinct population subspaces. To test this hypothesis, we examined the responses of single neurons in five reward-sensitive regions in rhesus macaques performing a risky choice task. In all areas, neurons encoded the value of the offers presented on both the left and the right side of the display in semi-orthogonal subspaces, which served to bind the values of the two offers to their positions in space. Supporting the idea that this orthogonalization is functionally meaningful, we observed a session-to-session covariation between choice behavior and the orthogonalization of the two value subspaces: trials with less orthogonalized subspaces were associated with greater likelihood of choosing the less valued option. Further inspection revealed that these semi-orthogonal subspaces arose from a combination of linear and nonlinear mixed selectivity in the neural population. We show this combination of selectivity balances reliable binding with an ability to generalize value across different spatial locations. These results support the hypothesis that semi-orthogonal subspaces support reliable binding, which is essential to flexible behavior in the face of multiple options.

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