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Wheaton, L. A.

Publications and source records attributed to Wheaton, L. A..

2 recordsLinked to original sources

Anticipatory Gaze Reveals Individual Differences in Implicit Sequence Learning Before Motor Performance

Implicit sequence learning is commonly inferred from changes in motor performance, although anticipatory gaze behavior may provide complementary information about emerging perceptual sequence knowledge. We tracked anticipatory gaze and response time on every trial of a reach-grasp-and-move sequence-learning task to examine when individual differences became detectable in each measure. Between-participant differences became detectable earlier in anticipatory gaze than in response time, with this ordering preserved in 95.5% of participant-level bootstrap resamples. Across the repeated sequence, anticipatory gaze became increasingly frequent, and most participants showed faster responses on anticipatory-gaze trials. Exploratory analyses further indicated that participants differed in the trial-to-trial persistence of anticipatory gaze, but these gaze characteristics were not reliably associated with sequence-specific motor learning expressed at the end of the session. Together, these findings show that anticipatory gaze and motor performance provide related but non-redundant information about implicit sequence learning where individual differences in perceptual knowledge may be detectable before corresponding differences are apparent in behavioral performance.

neuroscience↗

VISUAL EXPERIENCE SHAPES ARM POSITION SENSE IN INTERNAL AND EXTERNAL REFERENCE FRAMES AND ASSOCIATED CORTICAL LOAD

The ability to accurately perceive arm position is essential for motor control and depends on the integration of proprioceptive and visual information. However, how lifelong visual impairment (VI) affects position sense and its neural correlates remains unclear. We quantified arm position sense and associated cognitive-motor load in right-handed visually impaired (n = 7) and normally sighted (NS; n = 7) individuals using three bilateral arm position matching tasks: joint angle matching (JAM; internal coordinates), hand direction-distance matching (DDM; external coordinates), and mirror direction-distance matching (MDDM; external coordinates kinematically identical to JAM). Cognitive load was assessed using the contingent negative variation (CNV) from EEG recordings. VI participants exhibited reduced accuracy and precision of arm position sense in most conditions, and greater CNV magnitude, particularly in the left parietal cortex. Across both groups, performance was worse and CNV magnitude was greater in the DDM task compared with JAM, whereas JAM and MDDM yielded similar behavioral and neural outcomes. These findings indicate that (i) visual experience enhances arm position sense, and (ii) representing limb position in external coordinates imposes greater cognitive demands than encoding joint-based posture. The similarity between JAM and MDDM suggests that participants preferentially rely on internal representations when task kinematics permit.

neuroscience↗