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Object localization with whiskers

机译:晶须的对象定位

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Rats use their large facial hairs (whiskers) to detect, localize and identify objects in their proximal three-dimensional (3D) space. Here, we focus on recent evidence of how object location is encoded in the neural sensory pathways of the rat whisker system. Behavioral and neuronal observations have recently converged to the point where object location in 3D appears to be encoded by an efficient orthogonal scheme supported by primary sensory-afferents: each primary-afferent can signal object location by a spatial (labeled-line) code for the vertical axis (along whisker arcs), a temporal code for the horizontal axis (along whisker rows), and an intensity code for the radial axis (from the face out). Neuronal evidence shows that (i) the identities of activated sensory neurons convey information about the vertical coordinate of an object, (ii) the timing of their firing, in relation to other reference signals, conveys information about the horizontal object coordinate, and (iii) the intensity of firing conveys information about the radial object coordinate. Such a triple-coding scheme allows for efficient multiplexing of 3D object location information in the activity of single neurons. Also, this scheme provides redundancy since the same information may be represented in the activity of many neurons. These features of orthogonal coding increase accuracy and reliability. We propose that the multiplexed information is conveyed in parallel to different readout circuits, each decoding a specific spatial variable. Such decoding reduces ambiguity, and simplifies the required decoding algorithms, since different readout circuits can be optimized for a particular variable.
机译:大鼠使用其较大的胡子(胡须)来检测,定位和识别其近端三维(3D)空间中的物体。在这里,我们关注于大鼠晶须系统的神经感觉途径中如何编码对象位置的最新证据。行为和神经元观察最近已经收敛到3D对象位置似乎是由主要感觉分子支持的有效正交方案编码的点:每个主要感觉者都可以通过空间(标记线)代码来表示对象位置垂直轴(沿着晶须弧),水平轴的时间码(晶须行)和径向轴的强度码(从面向外)。神经元证据表明(i)激活的感觉神经元的身份传达了有关物体垂直坐标的信息;(ii)发射时​​间与其他参考信号有关,传达了有关水平物体坐标的信息;以及(iii)发射强度传达有关径向物体坐标的信息。这种三重编码方案允许在单个神经元的活动中有效地复用3D对象位置信息。而且,由于许多神经元的活动中可能表示相同的信息,因此该方案提供了冗余。正交编码的这些特征提高了准确性和可靠性。我们建议将多路复用信息并行传输到不同的读出电路,每个电路对特定的空间变量进行解码。由于可以针对特定变量优化不同的读出电路,因此这种解码减少了歧义,并简化了所需的解码算法。

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