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Connor, C. E.

Publications and source records attributed to Connor, C. E..

2 recordsLinked to original sources

Object representation in a gravitational reference frame

When your head tilts laterally, as in sports, reaching, and resting, your eyes counterrotate less than 20%, and thus eye images rotate, over a total range of about 180{degrees}. Yet, the world appears stable and vision remains normal. We discovered a neural strategy for rotational stability in anterior inferotemporal cortex (IT), the final stage of object vision in primates. We measured object orientation tuning of IT neurons in macaque monkeys tilted +25 and -25{degrees} laterally, producing [~]40{degrees} difference in retinal image orientation. Among IT neurons with consistent object orientation tuning, 63% remained stable with respect to gravity across tilts. Gravitational tuning depended on vestibular/somatosensory but also visual cues, consistent with previous evidence that IT processes scene cues for gravitys orientation. In addition to stability across image rotations, an internal gravitational reference frame is important for physical understanding of a world where object position, posture, structure, shape, movement, and behavior interact critically with gravity.

neuroscience↗

Multi-finger Receptive Field Properties in Primary Somatosensory Cortex: A Revised Account of the Spatio-Temporal Integration Functions of Area 3b

AO_SCPLOWBSTRACTC_SCPLOWThe leading view in the somatosensory system indicates that area 3b serves as a cortical relay site that encodes cutaneous (tactile) features limited to individual digits. Our recent work argues against this model by showing that cells in area 3b integrate information from cutaneous and proprioceptive modalities. Here, we further test this model, by studying the multi-finger neural integration properties of area 3b. In contrast to the prevailing view, we found that most cells in area 3b have a receptive field (RF) that extends to multiple digits. Responses to tactile stimulation emerged earlier in cells with a multi-digit (MD) vs. single-digit (SD) RF. We also found that the RF size of MD cells (the number of responsive digits) increased across time, and the orientation preference across digits was highly correlated. Taken together, these data provide strong evidence that area 3b plays a larger role in generating neural representations of tactile objects, as opposed to just being a feature detector relay site.

neuroscience↗