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1.
Comput Intell Neurosci ; 2014: 383790, 2014.
Article in English | MEDLINE | ID: mdl-25254039

ABSTRACT

A circuit of evaluation and selection of the alternatives is considered a reliable model in neurobiology. The prominent contributions of the literature to this topic are reported. In this study, valuation and choice of a decisional process during Two-Alternative Forced-Choice (TAFC) task are represented as a two-layered network of computational cells, where information accrual and processing progress in nonlinear diffusion dynamics. The evolution of the response-to-stimulus map is thus modeled by two linked diffusive modules (2LDM) representing the neuronal populations involved in the valuation-and-decision circuit of decision making. Diffusion models are naturally appropriate for describing accumulation of evidence over the time. This allows the computation of the response times (RTs) in valuation and choice, under the hypothesis of ex-Wald distribution. A nonlinear transfer function integrates the activities of the two layers. The input-output map based on the infomax principle makes the 2LDM consistent with the reinforcement learning approach. Results from simulated likelihood time series indicate that 2LDM may account for the activity-dependent modulatory component of effective connectivity between the neuronal populations. Rhythmic fluctuations of the estimate gain functions in the delta-beta bands also support the compatibility of 2LDM with the neurobiology of DM.


Subject(s)
Decision Making , Electronic Data Processing , Models, Neurological , Nerve Net/physiology , Neurons , Nonlinear Dynamics , Humans
2.
Eur J Neurosci ; 40(5): 2833-41, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24893753

ABSTRACT

Visual sequential search might use a peripheral spatial ranking of the scene to put the next target of the sequence in the correct order. This strategy, indeed, might enhance the discriminative capacity of the human peripheral vision and spare neural resources associated with foveation. However, it is not known how exactly the peripheral vision sustains sequential search and whether the sparing of neural resources has a cost in terms of performance. To elucidate these issues, we compared strategy and performance during an alpha-numeric sequential task where peripheral vision was modulated in three different conditions: normal, blurred, or obscured. If spatial ranking is applied to increase the peripheral discrimination, its use as a strategy in visual sequencing should differ according to the degree of discriminative information that can be obtained from the periphery. Moreover, if this strategy spares neural resources without impairing the performance, its use should be associated with better performance. We found that spatial ranking was applied when peripheral vision was fully available, reducing the number and time of explorative fixations. When the periphery was obscured, explorative fixations were numerous and sparse; when the periphery was blurred, explorative fixations were longer and often located close to the items. Performance was significantly improved by this strategy. Our results demonstrated that spatial ranking is an efficient strategy adopted by the brain in visual sequencing to highlight peripheral detection and discrimination; it reduces the neural cost by avoiding unnecessary foveations, and promotes sequential search by facilitating the onset of a new saccade.


Subject(s)
Discrimination, Psychological , Psychomotor Performance , Spatial Processing , Visual Perception , Adult , Eye Movement Measurements , Fixation, Ocular , Humans , Neuropsychological Tests , Photic Stimulation , Saccades , Young Adult
3.
Psychiatr Pol ; 47(6): 1113-22, 2013.
Article in Polish | MEDLINE | ID: mdl-25007542

ABSTRACT

OBJECTIVES: Seasonal trends were demonstrated in reproduction and sexual activity. Through the secretion ofmelatonin the pineal gland plays an important role in the neuroendocrine control of sexual function and reproductive physiology. We hypothesized that inhibition of the pineal gland activity through a light treatment may favorably affect sexual function. METHODS: We recruited 24 subjects with a diagnosis of hypoactive sexual desire disorder and/or primary sexual arousal disorder. The subjects were randomly assigned to either active light treatment (ALT) or placebo light treatment (L-PBO). Participants were assessed during the first evaluation and after 2 weeks of treatment, using the Structured Clinical Interview for Sexual Disorders DSM-IV (SCID-S) and a self-administered rating scale of the level of sexual satisfaction (1 to 10). Repeated ANOVA measures were performed to compare the two groups of patients. Post-hoc analysis was performed by Holm-Sidak test for repeated comparisons. Results. At baseline the two groups were comparable. After 2 weeks the group treated with Light Therapy showed a significant improvement in sexual satisfaction, about 3 times higher than the group that received placebo, while no significant improvement was observed in the group L-PBO. Conclusions. Our results confirm a potentially beneficial effect of Light Therapy on primary sexual dysfunction. In the future, we propose to correlate clinical findings with testosterone levels pre/post treatment.


Subject(s)
Patient Satisfaction , Phototherapy/methods , Sexual Behavior/psychology , Sexual Dysfunction, Physiological/therapy , Aged , Humans , Male , Middle Aged , Pilot Projects , Sexual Dysfunction, Physiological/psychology , Treatment Outcome
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