[(Perceptual disturbances in cerebral palsy, part II: Perceptual disturbances in the cerebral palsied child) (author's transl)].
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Neurons in the inferior temporal cortex (IT) of the macaque fire more strongly to some shapes than others, but little is known about how to characterize this shape tuning more generally, because most previous studies have used somewhat arbitrary variations in the stimuli with unspecified magnitudes of the changes. The present investigation studied the modulation of IT cells to nonaccidental property (NAP, i.e., invariant to orientations in depth) and metric property (MP, i.e., depth dependent) variations of dimensions of generalized cones (a general formalism for characterizing shapes hypothesized to mediate object recognition). Changes in an NAP resulted in greater neuronal modulation than equally large pixel-wise changes in an MP (including those consisting of a rotation in depth). There was also precise and highly systematic neuronal tuning to the quantitative variations of MPs along specific dimensions to which a neuron was sensitive. The NAP advantage was independent of whether the object was composed of only a single part or had two parts. These findings indicate that qualitative shape changes such as NAPs help explain the surplus amount of IT shape sensitivity that cannot be accounted for on the basis of metric or pixel-based changes alone. This NAP advantage may provide the neural basis for the greater detectability of NAP compared with MP changes in human psychophysics.
In accordance with neuropsychological findings, that chronic alcohol abuse can lead to cognitive impairment, a multi-phased cognitive training program (MKT) developed by Sagstetter was conducted with a group of chronic alcoholic patients. In this article this program is introduced and evaluated with regard to chronic alcoholic patients and their improvement in certain cognitive functions. The study group consisted of 11 chronic alcoholics, who regularly took part in the program. The control group consisted of 11 patients who took part on a behavior therapy program offered by the clinic and had similar social and pathological histories to those of the study group. The two groups were compared with each other with the help of a follow-up study design after approximately seven weeks. The results reveal that this present cognitive training program promotes, above all, cognitive functions such as visual short-time memory, concentration, form perception as well as combination and organisation ability.
The influence of such factor as determinacy of trajectory of stroboscopically presented test spot on apparent movement illusion appearance, was studied. Six subjects took part in psycho-physiological experiments during which a test spot was presented successively along the straight line to observer on a display, randomly deviating from this line up or down by 0.39, 0.78, 1.17 or 1.56 angular minutes. It was computed that with the test spot deviating by 0.92 angular minutes from the straight trajectory prognosticated by the observer, the probability of disappearance of apparent straight uniform motion of the spot was equal to 0.75. The findings suggest than one of the conditions under which apparent movement illusion appears involves an agreement between the shape of trajectory of test object presentation as expected by the observer, and its real shape in the experiment.
The ability to manually specify contours in a volumetric data is often required in situations when automatic algorithms are unable to accurately extract the desire volume. Conventionally, the contours are drawn over a slice, working on plane-by-plane basis usually constrained to orthogonal planes. In defining the contour on a 2D image, the user faces the problem of loosing 3D context (does the tissue belong to inside the contour or outside?). This requires the constant back and forth movement from a plane view where the interaction takes place (usually with the mouse) to the 3D volumetric view that provides the contextual information. We present an interactive environment that allows for efficient contouring while providing contextual 3D information to the user.
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