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Cutaneous stimulus registration and information processing in the somesthetic cortex.

The author reviews the evidence that the acquisition of sequential tactile information and stereometric object identification by manual exploration is a process which is analogous to the scanning of visual scenes. The hypothesis that somatosensory and visual maps in the respective primary cortical projection areas are of the same analytical structure is argued. New experimental data documented in subhuman primates demonstrate that neural responses to cutaneous stimuli depend on situational factors and on behavior-controlling instructions conveyed over another sense modality and that as a result the redundancy of cutaneous stimulus encoding in the somesthetic cortex is reduced.

Afferent Pathways↗

[Origin and evolution of life and intellect from the point of view of information processing].

Beginning of life and intellect on the Earth is determined by the fact that synthesis of semantic information about algorithms of chemical transformation for appointed classes of chemical compounds is not accompanied by the information synthesis, but is controlled by chance in genetic material. Genetic information as memorizing accidental choice always arises as a result of the environment interaction, when memorizing realization in the form of repeated reproduction occurs on the basis of processes radically different from those which created initial genetic chance. Such stepped synthesis of information has hierarchical character and it is described by entropy of different dimensions. Entropy is determined by conditional probabilities. Therefore as a form of life becomes complicated, the entropy is decreased within the limits of the given hierarchical step. The part of entropy depending on the number of elements of the system (cells, individuals, etc.) always increases in the memorizing process, i. e. life defines the maximum of entropy production (but not the minimum like in nature). This fact settles paradoxes of chance in Darwinism: as a result of entropy decrease within higher hierarchical step the simbiotic processes for more complex forms of life can arise with great probability. For instance, rapidity of evolution of human brain given by supplementary chance in the mechanism of fecundation under the conditions of biochemical pressure of androgenes both, on the brain development and on muscular force at the same time. Synthesis of information in the brain is determined by the same principles, but extremums of the thermo-dynamic potential (their analogues in logic) are based on an arbitrary system of axioms. As a whole life and intellect are not fluctuations pointed against entropy increases, but they arose according to spontaneous process of entropy development.

Biological Evolution↗

Decoherence-free quantum information processing with four-photon entangled states.

Decoherence-free states protect quantum information from collective noise, the predominant cause of decoherence in current implementations of quantum communication and computation. Here we demonstrate that spontaneous parametric down conversion can be used to generate four-photon states which enable the encoding of one qubit in a decoherence-free subspace. The immunity against noise is verified by quantum state tomography of the encoded qubit. We show that particular states of the encoded qubit can be distinguished by local measurements on the four photons only.

Journal Article↗

Nonlinear information processing in a model sensory system.

Understanding the mechanisms by which sensory neurons encode and decode information remains an important goal in neuroscience. We quantified the performance of optimal linear and nonlinear encoding models in a well-characterized sensory system: the electric sense of weakly electric fish. We show that linear encoding models generally perform better under spatially localized stimulation than under spatially diffuse stimulation. Through pharmacological blockade of feedback input and spatial saturation of the receptive field center, we show that there is significantly less synaptic noise under spatially diffuse stimuli as compared with spatially localized stimuli. Modeling results suggest that pyramidal cells nonlinearly encode sensory information through shunting in their dendrites and clarify the influence of synaptic noise on the performance of linear encoding models. Finally, we used information theory to quantify the performance of linear decoders. While the optimal linear decoder for spatially localized stimuli could capture 60% of the information in pyramidal cell spike trains, the optimal linear decoder for spatially diffuse stimuli could only capture 40% of the information. These results show that nonlinear decoders are necessary to fully access information in pyramidal cell spike trains, and we discuss potential mechanisms by which higher-order neurons could decode this information.

Action Potentials↗

Markers from event-related potential subcomponents and reaction time for information processing dysfunction in schizophrenia.

Event-related potentials (ERPs) can serve as markers for cognitive processing stages. Identification of those ERPs altered in schizophrenia offer information about cognitive dysfunction. Auditory evoked potentials (AEPs) were elicited within an oddball paradigm in 35 schizophrenic patients and compared with 35 healthy controls. N100 and P200, as well as N200, frontal P300 and parietal P300 subcomponents, were separated using dipole source analysis. The amplitudes of the N100 and the parietal P300 measured in schizophrenics were diminished. The input-related processing stages (N100 and P200) were not altered, whereas later, the deviant and task-related processes (N200, frontal P300, parietal P300 and reaction time) were significantly prolonged in schizophrenia.

Adult↗

Temporal information processing by alcoholics.

In time-discrimination tests using visual and auditory stimuli, more information was transmitted by social drinkers than by alcoholics, and cognitively unimpaired alcoholics transmitted more information than did cognitively impaired alcoholics.

Acoustic Stimulation↗

[Information processing and perinatology--experiences with GebLan at the Mainz University Gynecologic Clinic].

Modern perinatal information management is a subject of growing complexity. The requirements for perinatal computer applications changed totally during the last years. Today we need applications with a high integration level of data from diverse sources, a modern graphical interface and a powerful data management for example a Client Server architecture. The experience with the perinatal documentation and information system "GebLan" in a local area network is very sufficient though we conclude that stand-alone-systems should only be used in smaller obstetrical departments.

Computer Systems↗