Search PubMed⌕ Search

PubMed · 13123481

[Disorders of the higher nervous function in special decrease of unconditioned reinforcement].

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

N P MURAV'EVA. [Disorders of the higher nervous function in special decrease of unconditioned reinforcement].. https://pubmed.ncbi.nlm.nih.gov/13123481/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

On the role of stimulus-response and stimulus-stimulus compatibility in the Stroop effect.

Stroop effects might be due to differences in stimulus-response compatibility (SRC) and/or to differences in stimulus-stimulus compatibility (SSC). Recent evidence for the role of SSC is inconclusive, because there were no controls for effects of SRC that are based on short-term associations between stimuli and responses (i.e., associations set up as the result of task instructions). In two experiments, SRC effects were controlled for. Regardless of whether the irrelevant and the relevant stimulus features were separated (Experiment 1) or integrated in one stimulus (Experiment 2), the results revealed an effect of SSC and an effect of SRC that was based on short-term associations. The results thus confirm that both processes at the level of encoding and processes at the level of response selection contribute to the Stroop effect.

Conditioning, Classical↗

[Principle of least action, physiology of vision, and conditioned reflexes theory].

The variation principles such as principle of least action by Maupertuis (1740) and Fermat principle (1660) are fundamental for physics. They permit to establish a property by which the actual state is differing from all possible states of the system. The variation approach permits to establish equation of motion and equilibrium of a material system on the basis of one common rule which reduces to the search of the function extremes, describes this property of the system. So for the optical systems, crucial is the time and not the length of the way. According to Fermat principles, the light "choosen" from all possible ways connects two dots in the way which needs the least time. Generality of the variation principles guarantees success of their use in brain function investigations. Between different attempts to apply the variation principles to psychology and linguistics, the Zipf principle of least effort must be distinguished. Zipf (1949) demonstrated that languages and some artificial codes satisfied the least principle. For the brain physiology, classical conditioned reflex theory is the ideal area of variation principles application. According to this approach, conditioning leads to finding the extreme during fixation of the temporal link. In vision, physiological investigations are difficult because the signal has many dimensions. For example, during perception of spatial properties of surrounding world, in vision is realized minimization (reduction) of spatial-frequency spectrum of the scene. The receptive fields provide optimal accumulation of the signal. In ontogenesis, signal--noise ratio becomes optimal as receptive fields minimized the internal noise spectrum. According to the theory of match filtration, in the visual system recognition is carryied out by minimal differences between the image description in the visual system and storage in the human memory template of that image. The variation principles help to discover the physical property of phenomenon. The law discovered for mechanical system may be translated to quantum level. In physiology, variation principles permit us to connect information approach with concrete physiological mechanisms of pattern recognition and conditioned reflex.

Conditioning, Classical↗

Multiple response measures during classical conditioning.

Animal research assessing multiple responses during Pavlovian conditioning has revealed a dichotomy between the central nervous system (CNS) substrates for somatomotor and visceral CRs. These findings have implications for the study of clinical/applied problems in human subjects, since differences in the acquisition functions for these response systems may suggest which CNS structures are involved in various neuropsychiatric disorders. The present paper describes methods and procedures utilized to assess the somatomotor conditioned eyeblink (EB) response and accompanying visceral changes in human subjects. Methods are described for assessing concomitant EB conditioned and unconditioned responses and the accompanying heart rate, skin conductance, and respiratory changes during Pavlovian conditioning in human subjects. It is stressed that utilization of concomitant conditioning of these different response systems may lead to inferences regarding the central nervous system structures involved in a variety of different kinds of clinical problems.

Conditioning, Classical↗