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This suggests that they are spiny neurons.
The small neurons likely represented local circuit neurons.
These neurons resemble the 'large pyriform neurons' of Vanegas et al.
These input patterns are consistent with layer 5 neurons providing feedback to superficial layers.
The results in the three preceding paragraphs reveal how little of the electrotonic architecture of these neurons is captured by a simple equivalent cylinder model.
These results demonstrate that size tuning in cortical neurons is established via multiple unique mechanisms, dictated by the rich circuit architecture in which neurons are embedded.
In agreement with previous ultrastructural observations, we conclude that CRs are neurons, or at least cells which display the basic characteristics of neurons.
The new neurons are sufficiently robust for operation in large networks.
Results show that neurons in the thick and pale bands respond 20 msec earlier than those in the thin bands.
It is suggested that these neurons are labyrinthine efferents.
Most neurons lie between the ends of this continuum, and in these neurons we find that shape and texture encoding are largely independent.