scholarly journals SEROTONIN LEVEL IN PERIPHERAL BLOOD AND THE BRAIN’S BIOELECTRICAL ACTIVITY IN YOUNG PEOPLE 15-17 YEARS

2019 ◽  
Vol 19 (1S) ◽  
pp. 137-138
Author(s):  
E V Krivonogova ◽  
L V Poskotinova ◽  
D B Demin ◽  
O A Stavinskaya

The purpose of the work is to evaluate the features of the organization of the bioelectrical activity of the brain with different levels of serotonin in the serum of peripheral blood in young people 15-17 years old. The study involved 93 healthy girls and boys (15-17 years) of the Arkhangelsk region and the Nenets autonomous okrug. A serotonin level is determined in serum by enzyme immunoassay using a set of “Serotonin ELISA”. The electroencephalogram (EEG) power spectrum (PS) in the alpha, beta and theta frequencies ranges was recorded using an electroencephalograph “Encephalan” (Medicom, Taganrog). Age-dependent electroencephalogram (EEG) patterns is associated with the level of serotonin in peripheral blood in adolescents. On the background of a higher level of serotonin in the blood, compared to girls, boys have localized associations of theta and beta1 activity of EEG and serotonin levels, mainly in the right frontal-temporal region. In girls, the spectral power level of the EEG theta activity is more dependent on the level of serotonin in the blood, and a greater number of brain areas are involved in correlation interactions in comparison with young men (temporal regions on the left and frontal, central, parietal regions of both hemispheres of the brain).

2020 ◽  
Vol 223 (21) ◽  
pp. jeb232637
Author(s):  
Jiangyan Shen ◽  
Ke Fang ◽  
Ping Liu ◽  
Yanzhu Fan ◽  
Jing Yang ◽  
...  

ABSTRACTVisual lateralization is widespread for prey and anti-predation in numerous taxa. However, it is still unknown how the brain governs this asymmetry. In this study, we conducted behavioral and electrophysiological experiments to evaluate anti-predatory behaviors and dynamic brain activities in Emei music frogs (Nidirana daunchina), to explore the potential eye bias for anti-predation and the underlying neural mechanisms. To do this, predator stimuli (a model snake head and a leaf as a control) were moved around the subjects in clockwise and anti-clockwise directions at steady velocity. We counted the number of anti-predatory responses and measured electroencephalogram (EEG) power spectra for each band and brain area (telencephalon, diencephalon and mesencephalon). Our results showed that (1) no significant eye preferences could be found for the control (leaf); however, the laterality index was significantly lower than zero when the predator stimulus was moved anti-clockwise, suggesting that left-eye advantage exists in this species for anti-predation; (2) compared with no stimulus in the visual field, the power spectra of delta and alpha bands were significantly greater when the predator stimulus was moved into the left visual field anti-clockwise; and, (3) generally, the power spectra of each band in the right-hemisphere for the left visual field were higher than those in the left counterpart. These results support that the left eye mediates the monitoring of a predator in music frogs and lower-frequency EEG oscillations govern this visual lateralization.


2013 ◽  
Vol 61 (2) ◽  
Author(s):  
Husnaini Azmy ◽  
Norlaili Mat Safri

The aim of this study is to detect the brain activation on scalp by Electroencephalogram (EEG) task–based for brain computer interface (BCI) using wirelessly control robot. EEG was measured in 8 normal subjects for control and task conditions. The objective is to determine one scalp location which will give signals that can be used to control the wireless robot using BCI and EEG, using non invasive and without subject training. In control condition subjects were ask to relax but in task condition, subjects were asked to imagine a star rotating clockwise at position 45 degrees direction pointed by the wireless robot where at this angle the target is located. At position 0 and 90 degree angle subjects were asked to relax since there is no target on that direction. Using EEG spectral power analysis and normalization, the optimum location for this task has been detected at position F8 which is in frontal cortex area and the rhythm happened at alpha frequency band. At this position, the signals from the brain should be able to drive the robot to the required direction by giving correct and accurate signals to robot moving towards target.


Psychiatry ◽  
2020 ◽  
Vol 18 (3) ◽  
pp. 14-21
Author(s):  
E. V. Iznak ◽  
E. V. Damyanovich ◽  
N. S. Levchenko ◽  
I. V. Oleichik ◽  
A. F. Iznak

Background: non-suicidal self-injury (NSSI) in adolescence is a significant risk factor for suicide, and therefore, the search for neurobiological markers and predictors of risk for suicidal intentions and actions seems to be an urgent task. In particular, quantitative EEG parameters can be such predictors.Objective: to identify the features of EEG in female adolescents with endogenous depressive conditions, manifested only by NSSI without suicidal intentions, in comparison with the EEG of patients who had suicidal auto-aggressive behavior (SAB) in the structure of depression.Patients and methods: the study was conducted as a comparative clinical and neurophysiological. The study included 45 female patients aged 16–25 years with endogenous depressive conditions, divided into 2 subgroups: those who showed only NSSI (NSSI subgroup, 21 patients), or who had a history of SAB (SAB subgroup, 24 patients). Clinical-psychopathological, psychometric, neurophysiological and statistical methods were used.Results and its discussion: intergroup differences were revealed in relation to the ratio and hemispheric asymmetry of the EEG spectral power of narrow frequency sub-bands of the parietal-occipital alpha rhythm. In the SAB subgroup alpha-2 (9–11 Hz) rhythm spectral power is higher than in the NSSI subgroup, the focus of alpha-2 spectral power is located in the right hemisphere, and alpha-3 sub-band (11–13 Hz) spectral power is higher than of alpha-1 (8–9 Hz). In the NSSI subgroup, alpha-1 (8–9 Hz) sub-band spectral power are higher than of alpha-3 (11–13 Hz), and focuses of alpha-2 (9–11 Hz) and alpha-3 (11–13 Hz) rhythms are localized in the left hemisphere. The results are discussed in terms of functional specialization of the brain hemispheres in relation to the regulation of emotions and control of behavior.Conclusions: the spatial distribution of the EEG frequency components in the SAB subgroup reflects the greater activation of the brain left hemisphere that is more typical for the EEG of individuals with an increased risk of suicide. In the NSSI subgroup, the right hemisphere is relatively more activated that is more typical for EEG in depressive disorders.The results obtained allow the use of quantitative EEG data to clarify the degree of suicidal risk in depressed female adolescents with non-suicidal self-injury.


2011 ◽  
Vol 10 (4) ◽  
pp. 21-26
Author(s):  
Ye. V. Krivonogova ◽  
L. V. Poskotinova ◽  
D. B. Dyomin

The aim is analysis of EEG-rhythms spectral capacity during biofeedback session by heart rhythm variability (HRV) parameters in dependence from serum serotonin level. The were surveyed 53 girls 15—17 years of Arkhangelsk. The girls with a deficit of serotonin to achieve positive results biofeedback-training is accompanied by desynchronization EEG components, which results in reduced spectral power of EEG α-, β- and θ-activity. At the level of serotonin in the blood serum in the normal range for girls is an increase in spectral power of α-activity in thethe anterior parts of of the brain.


2022 ◽  
Vol 12 ◽  
Author(s):  
Xiaofan Xu ◽  
Bingbing Li ◽  
Ping Liu ◽  
Dan Li

Previous neurological studies of shyness have focused on the hemispheric asymmetry of alpha spectral power. To the best of our knowledge, few studies have focused on the interaction between different frequencies bands in the brain of shyness. Additionally, shy individuals are even shyer when confronted with a group of people they consider superior to them. This study aimed to reveal the neural basis of shy individuals using the delta-beta correlation. Further, it aimed to investigate the effect of evaluators’ facial attractiveness on the delta-beta correlation of shyness during the speech anticipation phase. We recorded electroencephalogram (EEG) activity of 94 participants during rest and anticipation of the public speaking phase. Moreover, during the speech anticipation phase, participants were presented with high or low facial attractiveness. The results showed that, as predicted, the delta-beta correlation in the frontal region was more robust for high shyness than for low shyness during the speech anticipation phase. However, no significant differences were observed in the delta-beta correlation during the baseline phase. Further exploration found that the delta-beta correlation was more robust for high facial attractiveness than low facial attractiveness in the high shyness group. However, no significant difference was found in the low-shyness group. This study suggests that a stronger delta-beta correlation might be the neural basis for shy individuals. Moreover, high facial attractiveness might enhance the delta-beta correlation of high shyness in anticipation of public speaking.


2017 ◽  
Vol 16 (3) ◽  
pp. 15-20
Author(s):  
I. V. Stafeeva ◽  
I. A. Voznjouk ◽  
I. P. Dudanov

Bioelectrical activity is a universal characteristic of functional state of the brain at a normal level of blood flow and under hypoperfusion. This parameter can be used to assess the effectiveness of the operation before and after endarterectomy. In this study we analyzed spectral characteristics of EEG in 106 patients who underwent endarterectomy in the acute period of stroke before and after two weeks from the onset of the disease. Was studied the dynamics of the power spectra of the EEG evoked potentials and clinical data before and after surgery. It is revealed that the nature of the change in the spectral power of alpha and beta activity of the EEG in the affected and in the intact hemisphere in acute ischaemic stroke can affect the timing of carotid endarterectomy and are important for the prediction of functional outcome after surgery. Inhibition of alpha- and beta-activity in both hemispheres in the preoperative period is an unfavorable factor for surgical intervention, as this will not lead to restoration of disturbed functions irrespective of stroke severity.


2014 ◽  
Vol 60 (2) ◽  
pp. 258-263 ◽  
Author(s):  
I.V. Karpova ◽  
V.V. Mikheev ◽  
V.V. Marysheva ◽  
E.R. Bychkov ◽  
P.D. Shabanov

The changes in activity of monoaminergic systems of both the right and the left brain hemispheres of the BALB/c male mice after an acute hypoxia with hypercapnia were studied. The concentrations of dopamine, serotonin and their metabolites dihydroxyphenylacetic, homovanilic and 5-hydroxyindolacetic acids were measured by HPLC in the brain cortex, hippocampus and striatum of the right and the left hemispheres. The more high concentration of serotonin was revealed only in the cortex of the left hemisphere in control mice without hypoxia with hypercapnia. The asymmetry in dopamine level was not registered in all structures studied. Acute hypoxia with hypercapnia decreased the dopamine level in the striatum and the serotonin level both in the hippocampus and the brain cortex. The dopamine metabolites level was reduced in the striatum and in the brain cortex of hypoxed mice: both metabolites in the right brain cortex and only dihydroxyphenylacetic acid in the left brain cortex. Serotonin metabolism was decreased in all brain structures studied after hypoxia with hypercapnia in mice. Therefore, serotoninergic system of the brain is more sensitive to acute hypoxia with hypercapnia than dopaminergic system.


2021 ◽  
pp. 1-11
Author(s):  
Akash Sharma ◽  
Neeraj Kumar ◽  
Ayush Kumar ◽  
Karan Dikshit ◽  
Kusum Tharani ◽  
...  

In modern day Psychiatric analysis, Epileptic Seizures are considered as one of the most dreadful disorders of the human brain that drastically affects the neurological activity of the brain for a short duration of time. Thus, seizure detection before its actual occurrence is quintessential to ensure that the right kind of preventive treatment is given to the patient. The predictive analysis is carried out in the preictal state of the Epileptic Seizure that corresponds to the state that commences a couple of minutes before the onset of the seizure. In this paper, the average value of prediction time is restricted to 23.4 minutes for a total of 23 subjects. This paper intends to compare the accuracy of three different predictive models, namely – Logistic Regression, Decision Trees and XGBoost Classifier based on the study of Electroencephalogram (EEG) signals and determine which model has the highest rate of detection of Epileptic Seizure.


2014 ◽  
Vol 25 (3-4) ◽  
pp. 107-113
Author(s):  
T. G. Turitskaya ◽  
A. G. Sidorenko

Multiple studies have shown that the hippocampus is a major part of the limbic system of the brain. It has complex cyclic connections with other brain structures. The hippocampus is an area that stores the sensory information that is associated with effective programs of behavior. The projection of this region in the cortex creates a sense of emotional background, which is a factor of automatic extraction and evaluation of programs, in accordance with past experience, including programs got with a new consciousness. Neurons of hippocampus differ with a severe background activity. Up to 60% of neurons in the hippocampus are responding on the sensory stimulation. Electrical activity is a manifestation of complex shape analyzer processes in stimulating tissues. Changes in activity may indicate the occurrence of adaptive processes that are the result of stress- realizing and stress- limiting systems. One of the main roles in these systems plays hippocampus. The main neurotransmitters of synaptic stimulation in the hippocampus are glutamate. In the hippocampus under conditions of chronic stress are developing neurodegenerative processes in which primary importance belongs to prolonged changes in membrane potential of neurons that potentiate the action of glutamate on nerve cells. Balanced job of synaptic stimulation/inhibition and neurotransmitters systems is underlying the transmission, processing and storage of information in the hippocampus, as well as generating its rhythms, which is a kind of clock operating frequencies of the structure of the brain. Obviously, the various factors that affect the body from the outside can affect on recovery efficiency of electric shift of homeostasis. One of such factors are caffeinated substances, due to their inhibitory effect on phosphodiesterase and interaction with the purine receptors, which ultimately leads to the predominance of stimulating in the brain. In addition, for many decades consumption of caffeinated products with neuro-stimulating properties have greatly increased. Leaders in this list remain coffee and tea. Today the well-known biological effects of caffeinated substances are investigated their chemical composition and process of the transformation in the body. The wide range of research is due to the high consumption of these substances. The environmental factors indirectly or directly, in combination or single affect health, and the caffeinated substances can go to one of the best in strength and impact performance. In neurochemical mechanism of stimulating effect of caffeine plays an important role its ability to bind to specific ("purine" or adenosine) receptors in the brain, the endogenous ligand for which is purine nucleoside – adenosine. The structural similarity of molecules of caffeine and adenosine contributes to this. Since adenosine is seen as a factor that reduces the stimulating processes in the brain, replacing its caffeine results in stimulative effect. Prolonged use of caffeine promotes the formation of new adenosine receptors and the effect of caffeine gradually decreases. However, the sudden cessation of caffeine consumption, adenosine covers all receptors that may lead to increased inhibition with symptoms of fatigue, sleepiness, depression. The relevance of this work is determined by the following observations. Activating mechanism of action of these substances is launching adaptive responses that represent the interaction stress-activating and stress-limiting systems. Energy shortage of the last one under these conditions can appear the cause of many neurodegenerative patalohiy. What may occur in terms of the electroencephalogramm. Electrical activity of the hippocampus, in turn, is one of the indicators of the functional state, which plays an important role in adaptive-compensatory reactions. Therefore, we can assume that prolonged consumption of caffeinated substances can lead to neurodegenerative changes that will show itself in terms of power on hippocampogramm. Therefore, the present study has to identify the dynamics of the bioelectrical activity of the hippocampus of rats under prolonged consumption of caffeinated substances. Experiments were carried out on non-linear white male rats. At the beginning rats were with weight 125–140 g. The animals were divided into 2 groups. The first group consisted of control animals (n = 20). The second group (n = 15) was presented by the animals feeded with pure caffeine in an amount of 150 mg/kg/day. Registration of electrohippocampogramm was performed in acute experiments in the subgroup of 3–5 animals every 2 weeks throughout the study, which lasted for 8 weeks. Background electrical activity of the hippocampus were recorded using standard electrophysiological complex equipment. Recordings started when the electrical activity of the hippocampus disappeared drugs spindle. Each animal spent 10–12 records for 1–2 minutes and then these records are digitally stored on a personal computer and processed using the application package consisting of "MathCAD 2001". Analyzed spectral power (mkV2) and normalized power (%) waves of background electrical activity of the hippocampus within common frequency bands. In the group of animals that continued to receive caffeine in its pure form at the beginning of experiment was observed desynchronization of rhythms in hippocampogramm that after 8 weeks of the study varied synchronization. The results may indicate that the effect of coffeine substances on neurophysiological parameters of electrical activity of the hippocampus of rats reflects one of the many lines of action of some form of nutritional stress, which mechanisms relate to the agreed work and limiting and activating systems of the brain over time.


2020 ◽  
Vol 2020 (3) ◽  
pp. 13-19
Author(s):  
Nataliia Vasylieva

The changes in the electrical activity of the brain of boys with different tempo-rhythmic characteristics of speech during functional stress have been studied, namely, a series of flashes of light of a certain frequency – rhythmic photostimulation have been used. The bioelectrical activity of the brain has been studied using a computer electroencephalography system. Also, according to the methodology of zonal distribution of normalized spectral power (SP) of the rhythm of the main frequency of the EEGranges, the particles (in percent) of the normalized SP of electrogenesis in each of the four main ranges (δ, θ, α, β) have been determined. As a result of comparison of the light flashing frequency assimilation among boys in the studied groups, it has been found, that in the group of children with logoneurosis slow rhythms (5 Hz,) lying within the theta-range of the EEG, were better assimilated. The rhythm is assimilated in the low frequency range among the children with logoneurosis. The relative spectral power of theta-rhythm significantly decreased on the EEG of children with tempo and rhythm speech disorder at low-frequency photostimulation in comparison with the corresponding indicators of the background electroencephalogram; the corresponding indicators in the beta-range, anterior and posterior leads in the alpha-rangeincreased. Based on the obtained data, it has been found, that children with logoneurosis have insufficient response to photostimulation. Such data are associated with insufficient inhibitory effect of the cortex on the subcortical structures. The reduced reactivity and functional insufficiency of the activating system of the brain stem have been noted. Neurophysiological mechanisms of logoneurosis are due to the state of insufficient formation of brain structures, which is confirmed by the results of electroencephalography during rhythmic photostimulation. Changes in the tempo and rhythm of speech during logoneurosis of preschool children provoke stress of the brain mechanisms of regulation, which become apparent by special characteristics of the electrical activity of the brain, both at rest and during load.


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