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In combination with the present results, this explanation suggests that hippocampal networks may form goal and context sensitive representations that are rapidly shaped and modified during learning, and that information about value gradients may explain different aspects of learning-related hippocampal neural activity.
This result fits well with the proposed functions of hysteresis and adaptation, as stabilization can be more easily achieved at higher processing stages where neurons exhibit invariance to low-level features, while the extraction of new information requires detailed and sensitive representations at earlier sensory processing stages.
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It would be difficult to criticise Barnard's sensitive representation of working-class life.
The current finding of the relationship between probability and EANm response suggests a sensitive representation of probability of chord progression and extends the previous findings of the cortical sensitivity to probability to the musical syntax domain.
The TE value of the T2-TSE sequence, determined by tissue relaxometry was instrumental to the sensitive representation of tissue hyper-intensity surrounding the necrotic core indicative of tumour proliferation and helped to differentiate between tumour necrosis and brain parenchyma invaded by tumour cells.
This set of results fits well with the hypothesized functions of hysteresis and adaptation, as stabilization can be more easily achieved in higher processing stages in which neurons exhibit invariance to low-level features, while the extraction of new information may require the detailed and sensitive representation in early sensory processing stages.
It was therefore clear that both vision and haptics used size-sensitive representations of shape to perform the task.
The results of Experiment 1 also suggested that both visual and haptic encoding produces size-sensitive representations.
Here, we extend that research to examine whether size-sensitive representations are modality-specific or are shared across the visual and haptic modalities.
If both vision and haptics use size-sensitive representations, then object representations that can be accessed by either modality may also be size-sensitive.
If both modalities use orientation-sensitive representations, then information about orientation might be retained by an object representation which supports recognition across both vision and haptics.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com