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Biomedical subjects

L Altmann

Publications and source records attributed to L Altmann.

At least 37 records · Page 2Linked to original sources

Temporal integration in the visual system: influence of temporal dispersion on figure-ground discrimination.

Psychophysical measurements were carried out with a microcomputer-controlled matrix of 32 X 32 light emitting diodes to determine temporal parameters of figure-ground separation processes. The task was to detect a figure that was dispersed in time. Between each two figure elements n noise elements were interspersed. The results of these experiments indicate that the discrimination of figures hidden in dynamic noise is possible even if figure elements are dispersed in time over several hundred milliseconds. The maximal dispersion time still compatible with figure discrimination (Tmax) depends critically on the number n of interspersed noise elements, on the subject's expectancy and on the number of elements used for the generation of the figure. For simple figures such as triangles Tmax could be as long as 1.5 sec when n was 4. Our experimental results suggest that the neuronal representation of the briefly displayed (less than 6 msec) pattern elements outlasts their physical presence by at least 400 msec. This persistence of neuronal representations must occur at a level of processing where retinotopy is still preserved, since the only cue for figure-ground discrimination is the difference in the local density of figure and noise elements.

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Temporal integration in amblyopic vision.

Amblyopic subjects were tested on different visual tasks which required temporal integration of successively presented stimuli: a figure had to be detected whose components were displayed successively and hidden in spatio-temporal noise. The time interval T over which the figure elements were dispersed was varied and the longest T value still compatible with figure detection was determined. In all subjects these T values were considerably longer for the normal than for the amblyopic eye. A missing square had to be detected in a checker-board of 3 X 3 squares that was presented in two successive frames, each frame containing 4 squares. With the normal eye, identification of the missing square was possible over considerably longer interstimulus intervals (ISIs) than with the amblyopic eye. Changes had to be detected in two patterns of randomly distributed squares that were presented successively with varying ISI whereby one square was added or subtracted in the second pattern. With the normal eye, detection of changes was possible over much longer ISIs than with the amblyopic eye. These experiments show a deficit of the amblyopic visual system to integrate temporally separated stimuli. We conclude that amblyopia is associated with a marked reduction of the duration of visual persistence and suggest that this is due to shortening of normally sustained neuronal responses.

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Epidemiology of Cryptococcus neoformans.

The concept of the epidemiology of Cryptococcus neoformans as the causative agent of cryptococcosis and as a basidiomycetous yeast is based on the fact that bird manure has been until now its only known habitat but not plant material which likewise harbours various nonpathogenic Cryptococcus species. It could be shown that the possible influence of nutritional factors on the morphology and morphogenesis earns attention not only in view of the epidemiology of C. neoformans but of its perfect states, too.

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Visual functions in 6-year-old children in relation to lead and mercury levels.

Within a larger comparative environmental health screening program in East and West Germany we investigated functions of the developing visual system in field experiments in a total of 384 children living in three different areas. Visual functions were assessed neurophysiologically by visual-evoked potentials (VEPs) and psychophysically by measuring the contrast sensitivity (CS). Blood lead concentrations and urinary mercury levels were used as markers of environmental and/or amalgam-derived exposure, respectively. The relationships among lead and mercury concentrations and the neurophysiological and psychophysical outcomes were investigated by means of linear regression analysis. After adjusting for confounding effects, statistically significant lead-related changes were found only for some of the VEP interpeak latencies, while some of the CS values were significantly reduced with increasing mercury concentrations. All other outcome variables were not significantly related to lead or mercury levels. It is concluded that even at blood lead levels in the range of 14 to 174 micrograms/l and at very low urinary mercury levels subtle changes in visual system functions can be measured.

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