cortical activation
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2022 ◽  
pp. 113751
Author(s):  
Kejie Wang ◽  
Yangting Zhang ◽  
Yongpeng Zhu ◽  
Yuxi Luo

Author(s):  
Paloma Cabaleiro ◽  
Marisol Cueli ◽  
Laura M. Cañamero ◽  
Paloma González-Castro

In research about attention-deficit/hyperactivity disorder (ADHD) there is growing interest in evaluating cortical activation and using neurofeedback in interventions. This paper presents a case study using monopolar electroencephalogram recording (brain mapping known as MiniQ) for subsequent use in an intervention with neurofeedback for a 10-year-old girl presenting predominantly inattentive ADHD. A total of 75 training sessions were performed, and brain wave activity was assessed before and after the intervention. The results indicated post-treatment benefits in the beta wave (related to a higher level of concentration) and in the theta/beta ratio, but not in the theta wave (related to higher levels of drowsiness and distraction). These instruments may be beneficial in the evaluation and treatment of ADHD.


Author(s):  
Alka Bishnoi ◽  
Gioella N. Chaparro ◽  
Manuel E. Hernandez

Hypertension is considered a risk factor for cardiovascular health and non-amnestic cognitive impairment in older adults. While heart rate reserve (HRR) has been shown to be a risk factor for hypertension, how impaired HRR in older adults can lead to cognitive impairment is still unclear. The objective of this study was to examine the effects of HRR on prefrontal cortical (PFC) activation under varying dual-task demands in older adults. Twenty-eight older adults (50–82 years of age) were included in this study and divided into higher (n = 14) and lower (n = 14) HRR groups. Participants engaged in the cognitive task which was the Modified Stroop Color Word Test (MSCWT) on a self-paced treadmill while walking. Participants with higher HRR demonstrated increased PFC activation in comparison to lower HRR, even after controlling for covariates in analysis. Furthermore, as cognitive task difficulty increased (from neutral to congruent to incongruent to switching), PFC activation increased. In addition, there was a significant interaction between tasks and HRR group, with older adults with higher HRR demonstrating increases in PFC activation, faster gait speed, and increased accuracy, relative to those with lower HRR, when going from neutral to switching tasks. These results provide evidence of a relationship between HRR and prefrontal cortical activation and cognitive and physical performance, suggesting that HRR may serve as a biomarker for cognitive health of an older adult with or without cardiovascular risk.


2021 ◽  
Vol 2021 ◽  
pp. 1-17
Author(s):  
Bianca Maria Serena Inguscio ◽  
Giulia Cartocci ◽  
Nicolina Sciaraffa ◽  
Claudia Nasta ◽  
Andrea Giorgi ◽  
...  

Exploration of specific brain areas involved in verbal working memory (VWM) is a powerful but not widely used tool for the study of different sensory modalities, especially in children. In this study, for the first time, we used electroencephalography (EEG) to investigate neurophysiological similarities and differences in response to the same verbal stimuli, expressed in the auditory and visual modality during the n-back task with varying memory load in children. Since VWM plays an important role in learning ability, we wanted to investigate whether children elaborated the verbal input from auditory and visual stimuli through the same neural patterns and if performance varies depending on the sensory modality. Performance in terms of reaction times was better in visual than auditory modality ( p  = 0.008) and worse as memory load increased regardless of the modality ( p  < 0.001). EEG activation was proportionally influenced by task level and was evidenced in theta band over the prefrontal cortex ( p  = 0.021), along the midline ( p  = 0.003), and on the left hemisphere ( p  = 0.003). Differences in the effects of the two modalities were seen only in gamma band in the parietal cortices ( p  = 0.009). The values of a brainwave-based engagement index, innovatively used here to test children in a dual-modality VWM paradigm, varied depending on n-back task level ( p  = 0.001) and negatively correlated ( p  = 0.002) with performance, suggesting its computational effectiveness in detecting changes in mental state during memory tasks involving children. Overall, our findings suggest that auditory and visual VWM involved the same brain cortical areas (frontal, parietal, occipital, and midline) and that the significant differences in cortical activation in theta band were more related to memory load than sensory modality, suggesting that VWM function in the child’s brain involves a cross-modal processing pattern.


2021 ◽  
Vol 11 ◽  
Author(s):  
Vérane Achard ◽  
Kelly Ceyzériat ◽  
Benjamin B. Tournier ◽  
Giovanni B. Frisoni ◽  
Valentina Garibotto ◽  
...  

Androgen deprivation therapy (ADT) is a standard treatment for prostate cancer patients, routinely used in the palliative or in the curative setting in association with radiotherapy. Among the systemic long-term side effects of ADT, growing data suggest a potentially increased risk of dementia/Alzheimer’s disease in prostate cancer patients treated with hormonal manipulation. While pre-clinical data suggest that androgen ablation may have neurotoxic effects due to Aβ accumulation and increased tau phosphorylation in small animal brains, clinical studies have measured the impact of ADT on long-term cognitive function, with conflicting results, and studies on biological changes after ADT are still lacking. The aim of this review is to report on the current evidence on the association between the ADT use and the risk of cognitive impairment in prostate cancer patients. We will focus on the contribution of Alzheimer’s disease biomarkers, namely through imaging, to investigate potential ADT-induced brain modifications. The evidence from these preliminary studies shows brain changes in gray matter volume, cortical activation and metabolism associated with ADT, however with a large variability in biomarker selection, ADT duration and cognitive outcome. Importantly, no study investigated yet biomarkers of Alzheimer’s disease pathology, namely amyloid and tau. These preliminary data emphasize the need for larger targeted investigations.


PLoS ONE ◽  
2021 ◽  
Vol 16 (12) ◽  
pp. e0260245
Author(s):  
Douglas D. Burman

Studies of the hippocampus use smaller voxel sizes and smoothing kernels than cortical activation studies, typically using a multivoxel seed with specified radius for connectivity analysis. This study identified optimal processing parameters for evaluating hippocampal connectivity with sensorimotor cortex (SMC), comparing effectiveness by varying parameters during both activation and connectivity analysis. Using both 3mm and 4mm isovoxels, smoothing kernels of 0-10mm were evaluated on the amplitude and extent of motor activation and hippocampal connectivity with SMC. Psychophysiological interactions (PPI) identified hippocampal connectivity with SMC during volitional movements, and connectivity effects from multivoxel seeds were compared with alternate methods; a structural seed represented the mean connectivity map from all voxels within a region, whereas a functional seed represented the regional voxel with maximal SMC connectivity. With few exceptions, the same parameters were optimal for activation and connectivity. Larger isovoxels showed larger activation volumes in both SMC and the hippocampus; connectivity volumes from structural seeds were also larger, except from the posterior hippocampus. Regardless of voxel size, the 10mm smoothing kernel generated larger activation and connectivity volumes from structural seeds, as well as larger beta estimates at connectivity maxima; structural seeds also produced larger connectivity volumes than multivoxel seeds. Functional seeds showed lesser effects from voxel size and smoothing kernels. Optimal parameters revealed topography in structural seed connectivity along both the longitudinal axis and mediolateral axis of the hippocampus. These results indicate larger voxels and smoothing kernels can improve sensitivity for detecting both cortical activation and hippocampal connectivity.


Author(s):  
Oksana I. Shevchenko ◽  
Dina V. Rusanova ◽  
Oleg L. Lakhman

Introduction. The authors note insufficient knowledge of pathophysiological mechanisms, the cumulative role of cerebral functioning disorders in the formation of sensorineural deficit in vibration disease (VD). The study aims to identify changes in indicators characterizing neurofunctional activity in patients with VD due to the combined effects of local and general vibration. Materials and methods. The study involved 42 patients with VD (group I), 35 healthy men (comparison group). Researchers used methods of electroneuromyography, neuroenergic mapping, and neuropsychological testing. Results. In group I, when compared with the comparison group, we have detected an increase in latency N9, N10, N11, N13, N25, N30, the duration of the peak interval N10-N13 (p=0,002; 0,0001; 0,0002; 0,0001; 0,0023; 0,005; 0,01 respectively); an increase in local levels of constant potential (LCP) in the frontal, central, right parietal, occipital, right temporal parts of the brain (p=0.037; 0.0007; 0,0005; 0,01; 0,0004; 0,014; 0,029; 0,028; 0,001 respectively). Cognitive impairments in patients with VD correspond to an easily expressed disorder of analytical-synthetic and conceptual thinking, short-term (auditory-speech), visual imagery, long-term memory, dynamic praxis, joint coordination, impressive and expressive speech. The revealed conjugacy of the indicators of the LCP of the frontal left abduction, and the latency of the peak N30, duration N13-N20, and the hand of analytical and synthetic thinking (r=0.51, p=0.004; r=0.50, p=0.005, respectively) indicates the pathogenetic significance in the violation of neurofunctional activity of a decrease in cortical activation as a result of the arrival of a sensory message from the brain stem to the cortex, increased energy exchange in the frontal part of the left hemisphere. Conclusions. A sign of impaired neurofunctional activity in VB from the combined effects of local and general vibration is a decrease in the postsynaptic action of neurons, the time of signal passage through afferent pathways at the level of the cervical spinal cord, dynamic praxis, short-term (auditory-speech) memory, increased energy metabolism in the temporal right and left frontal brain.


2021 ◽  
Vol 11 (23) ◽  
pp. 11538
Author(s):  
Francisco José Sánchez-Cuesta ◽  
Yeray González-Zamorano ◽  
Aida Arroyo-Ferrer ◽  
Martín Avellanal ◽  
Josué Fernández-Carnero ◽  
...  

Burning Mouth Syndrome (BMS) is a multifactorial, chronic pain condition with neuropathic and psychogenic mechanisms. Cortical activation as well as sustained attention and executive functions have proven to be affected by chronic pain. The main objectives of this work were to test the efficacy of a multidimensional personalized pain treatment protocol and to investigate if the effects are based on psychophysical pain processing changes or cognitive effects. A 74-year-old female with 2 years of BMS received 10 sessions of a combined protocol of anodal left dorsolateral prefrontal cortex tDCS, cognitive therapy, and therapeutic exercise. The subjective perception of pain decreased by 47% after treatment but returned to the baseline at 45 days. No changes were found in objective pain measurements apart from a transient worsening of conditioned pain modulation. A large effect size was found in all functional scales, processing speed and executive control as well as sustained attention that persisted during follow-up. No changes in anxiety and depression were found. A multimodal therapeutic approach combining TDCS, cognitive rehabilitation and therapeutic exercise produces improved quality of life, disability and pain perception correlated with improvements in processing speed, executive control and sustained attention but independent of changes in psychophysical pain processing.


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