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Executive functions and motivation have been established as key aspects for neurofeedback success. However, task-specific influence of cognitive strategies is scarcely explored. In this study, we test the ability to modulate the dorsolateral prefrontal cortex, a strong candidate for clinical application of neurofeedback in several disorders with dysexecutive syndrome, and investigate how feedback contributes to better performance in a single session. Participants of both neurofeedback ( = 17) and sham-control ( = 10) groups were able to modulate DLPFC in most runs (with or without feedback) while performing a working memory imagery task. However, activity in the target area was higher and more sustained in the active group when receiving feedback. Furthermore, we found increased activity in the nucleus accumbens in the active group, compared with a predominantly negative response along the block in participants receiving sham feedback. Moreover, they acknowledged the non-contingency between imagery and feedback, reflecting the impact on motivation. This study reinforces DLPFC as a robust target for neurofeedback clinical implementations and enhances the critical influence of the ventral striatum, both poised to achieve success in the self-regulation of brain activity.
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http://dx.doi.org/10.3389/fnbeh.2023.1014223 | DOI Listing |
Cureus
August 2025
Neurology, Emory University, Atlanta, USA.
Deep brain stimulation (DBS) and the use of directional subsegmental stimulation have significantly advanced symptom management in patients with Parkinson's disease (PD) and essential tremor (ET). This study examines the use of directional programming in a tertiary care center. We retrospectively reviewed medical records of 12 PD patients (all with bilateral subthalamic nucleus (STN) implants) and 13 ET patients (12 with bilateral and 1 with unilateral ventral intermediate nucleus (VIM) implants) who received directional leads.
View Article and Find Full Text PDFAnn Anat
September 2025
Department of Anatomy, School of Medicine, Faculty of Health Sciences, National and Kapodistrian University of Athens, Greece; "VARIANTIS" Research Laboratory, Department of Clinical Anatomy, Mazovian Academy in Plock, Poland.
Background: The vertebral artery (VA) undergoes a critical anatomical transition as it pierces the dura mater at the craniocervical junction. Precise knowledge of dural penetration patterns and angulation is essential for diagnostic imaging, neurosurgical planning, and minimizing iatrogenic risk in posterior fossa procedures.
Methods: This retrospective imaging study evaluated 100 adult patients who underwent 1.
Micron
September 2025
Laboratório de Desenvolvimento e Aplicações de Nanomateriais da Amazônia (LADENA), Departamento de Física de Materiais, Universidade Federal do Amazonas, Manaus, AM 69067-005, Brazil. Electronic address:
This study investigates the nanoscale surface morphology of Anopheles darlingi and Anopheles aquasalis mosquito wings using Atomic Force Microscopy (AFM) and fractal analysis. High-resolution 3D AFM imaging revealed pronounced inter- and intra-species differences, with the ventral surface of An. darlingi (V-Ad) exhibiting the greatest roughness (Sq = 45.
View Article and Find Full Text PDFNeurol Ther
September 2025
Department of Neurosurgery, The General Hospital of Western Theater Command, Chengdu, China.
Central post-stroke pain (CPSP) is an intractable neuropathic pain syndrome. Dual-target deep brain stimulation (DBS), which integrates sensory thalamic modulation and endogenous analgesic pathways, has emerged as a potential intervention; however, clinical evidence remains scarce. We report a 54-year-old woman who developed right-sided limb paresthesia progressing to persistent right hemibody pain following a left thalamic hemorrhage.
View Article and Find Full Text PDFJ Physiol
September 2025
Department of Physiology and Biophysics, Institute of Biomedical Science, University of São Paulo, São Paulo, São Paulo, Brazil.
The retrotrapezoid nucleus, located in the parafacial medullary region (RTN/pFRG), is crucial for respiratory activity and central chemoreception. Recent evidence suggests that neuromodulation, including peptidergic signalling, can influence the CO/H sensitivity of RTN neurons. The paraventricular nucleus of the hypothalamus (PVN) projects to the ventral medullary surface, including the RTN, and is considered the primary source of oxytocin to the brainstem.
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