All Relations between frontal cortex and working memory

Publication Sentence Publish Date Extraction Date Species
Steven R Anderson, Joanna E Witkin, Taylor Bolt, Maria M Llabre, Claire E Ashton-James, Elizabeth A Reynolds Losi. Modeling neural and self-reported factors of affective distress in the relationship between pain and working memory in healthy individuals. Neuropsychologia. vol 153. 2021-06-24. PMID:33503490. the present study examined the association between pain and wm in a large community-based sample of healthy individuals and investigated whether self-reported affective distress and medial frontal cortex activity might help to explain this relationship. 2021-06-24 2023-08-13 human
Steven R Anderson, Joanna E Witkin, Taylor Bolt, Maria M Llabre, Claire E Ashton-James, Elizabeth A Reynolds Losi. Modeling neural and self-reported factors of affective distress in the relationship between pain and working memory in healthy individuals. Neuropsychologia. vol 153. 2021-06-24. PMID:33503490. to address these research questions, a large publicly available dataset from the human connectome project (n = 416) was sourced and structural equation modeling was utilized to examine relationships between pain intensity experienced over the past 7 days, self-reported affective distress, performance on a wm (n-back) task, and task-related activation in the medial frontal cortex. 2021-06-24 2023-08-13 human
Eoin O'Neill, Éadaoin W Griffin, Ruairi O'Sullivan, Carol Murray, Lucy Ryan, Justin Yssel, Andrew Harkin, Colm Cunningha. Acute neuroinflammation, sickness behavior and working memory responses to acute systemic LPS challenge following noradrenergic lesion in mice. Brain, behavior, and immunity. vol 94. 2021-05-28. PMID:33307172. the data demonstrate that significant depletion of noradrenaline in the hippocampus and frontal cortex does not prompt acutely exaggerated neuroinflammation or leave the brain vulnerable to acute, transient working memory deficits upon low dose lps challenge. 2021-05-28 2023-08-13 mouse
I T Schouwenaars, M J de Dreu, G J M Rutten, N F Ramsey, J M Jansm. Processing of Targets and Non-targets in Verbal Working Memory. Neuroscience. vol 429. 2021-05-14. PMID:31982465. the left frontal cortex does not differentiate between processing target and non-target stimuli, suggesting involvement in wm processes that are independent of stimulus type. 2021-05-14 2023-08-13 human
Hea Ree Park, Hye Ryun Kim, Joon-Kyung Seong, Eun Yeon Jo. Localizing deficits in white matter tracts of patients with narcolepsy with cataplexy: tract-specific statistical analysis. Brain imaging and behavior. vol 14. issue 5. 2021-04-27. PMID:31115860. this tssa study revealed disintegration of the ifo in the nc patients and suggested that disintegration of wm tracts connected to the frontal cortex contributes to clinical manifestations of narcolepsy. 2021-04-27 2023-08-13 human
Jonah Heskje, Kelsey Heslin, Benjamin J De Corte, Kyle P Walsh, Youngcho Kim, Sangwoo Han, Erik S Carlson, Krystal L Parke. Cerebellar D1DR-expressing neurons modulate the frontal cortex during timing tasks. Neurobiology of learning and memory. vol 170. 2021-04-12. PMID:31404656. interval timing requires executive processes such as working memory, attention, and planning and is known to rely on both the frontal cortex and cerebellum. 2021-04-12 2023-08-13 rat
Hsiao-Ting Ho, Nai-Wen Guo, Ming-Chyi Pa. The application of a neuropsychological measure of executive working memory in older adults with memory impairment. Applied neuropsychology. Adult. 2021-04-02. PMID:33794709. the component of working memory that the frontal cortex subserves is frequently characterized as the executive working memory (ewm). 2021-04-02 2023-08-13 Not clear
Frederic Alexandr. A global framework for a systemic view of brain modeling. Brain informatics. vol 8. issue 1. 2021-03-05. PMID:33591440. our survival-oriented definition of behavior gives a prominent role to pavlovian and instrumental conditioning, augmented during phylogeny by the specific contribution of other kinds of learning, related to semantic memory in the posterior cortex, episodic memory in the hippocampus and working memory in the frontal cortex. 2021-03-05 2023-08-13 Not clear
Shannon N Leslie, Dibyadeep Datta, Kyle R Christensen, Christopher H van Dyck, Amy F T Arnsten, Angus C Nair. Phosphodiesterase PDE4D Is Decreased in Frontal Cortex of Aged Rats and Positively Correlated With Working Memory Performance and Inversely Correlated With PKA Phosphorylation of Tau. Frontiers in aging neuroscience. vol 12. 2021-02-24. PMID:33192469. phosphodiesterase pde4d is decreased in frontal cortex of aged rats and positively correlated with working memory performance and inversely correlated with pka phosphorylation of tau. 2021-02-24 2023-08-13 rat
Minyoung Jung, Yoshifumi Mizuno, Takashi X Fujisawa, Shinichiro Takiguchi, Jian Kong, Hirotaka Kosaka, Akemi Tomod. The Effects of COMT Polymorphism on Cortical Thickness and Surface Area Abnormalities in Children with ADHD. Cerebral cortex (New York, N.Y. : 1991). vol 29. issue 9. 2020-10-05. PMID:30508034. furthermore, a path analysis revealed that a comt genotype affected abnormal development of the frontal cortex in terms of both cortical thickness and surface area and was associated with working memory changes in children with adhd. 2020-10-05 2023-08-13 Not clear
Jeong Ha Park, Ji Son Hong, Sun Mi Kim, Kyung Joon Min, Un Sun Chung, Doug Hyun Ha. Effects of Amisulpride Adjunctive Therapy on Working Memory and Brain Metabolism in the Frontal Cortex of Patients with Schizophrenia: A Preliminary Positron Emission Tomography/Computerized Tomography Investigation. Clinical psychopharmacology and neuroscience : the official scientific journal of the Korean College of Neuropsychopharmacology. vol 17. issue 2. 2020-10-01. PMID:30905125. effects of amisulpride adjunctive therapy on working memory and brain metabolism in the frontal cortex of patients with schizophrenia: a preliminary positron emission tomography/computerized tomography investigation. 2020-10-01 2023-08-13 Not clear
Gaby Pfeifer, Jamie Ward, Natasha Sigal. Reduced Visual and Frontal Cortex Activation During Visual Working Memory in Grapheme-Color Synaesthetes Relative to Young and Older Adults. Frontiers in systems neuroscience. vol 13. 2020-09-30. PMID:31354440. reduced visual and frontal cortex activation during visual working memory in grapheme-color synaesthetes relative to young and older adults. 2020-09-30 2023-08-13 human
Joëlle S Witmer, Eva A Aeschlimann, Andreas J Metz, Stefan J Troche, Thomas H Rammsaye. The Validity of Functional Near-Infrared Spectroscopy Recordings of Visuospatial Working Memory Processes in Humans. Brain sciences. vol 8. issue 4. 2020-09-29. PMID:29621179. to provide converging evidence for the validity of fnirs recordings in cognitive neuroscience, we investigated functional activation in the frontal cortex in 43 participants during the processing of a visuospatial working memory (wm) task and a sensory duration discrimination (dd) task functionally unrelated to wm. 2020-09-29 2023-08-13 human
Federico Varriano, Saül Pascual-Diaz, Alberto Prats-Galin. Distinct Components in the Right Extended Frontal Aslant Tract Mediate Language and Working Memory Performance: A Tractography-Informed VBM Study. Frontiers in neuroanatomy. vol 14. 2020-09-28. PMID:32372922. the reported sub-division of the exfat territory describes a set of frontal connections that are compatible with previously reported results on the broca's territory and frontal cortex hierarchical organization along an anterior-posterior gradient, suggesting that the exfat could be part of a common neuroanatomical scaffold where language and working memory functions are integrated in the healthy human brain. 2020-09-28 2023-08-13 human
R Leshem, P Paoletti, C Piervincenzi, F Carducci, C A Mallio, Y Errante, C C Quattrocchi, T Dotan Ben-Soussa. Inward versus reward: white matter pathways in extraversion. Personality neuroscience. vol 2. 2020-09-28. PMID:32435741. in conclusion, individual differences in extraversion may reflect differential organization of the wm tracts connecting frontal cortex, temporal, and occipital areas, which are related to socioemotional and control functions. 2020-09-28 2023-08-13 human
Tomas R Guilarte, Chien-Lin Yeh, Jennifer L McGlothan, Juan Perez, Paige Finley, Yun Zhou, Dean F Wong, Ulrike Dydak, Jay S Schneide. PET imaging of dopamine release in the frontal cortex of manganese-exposed non-human primates. Journal of neurochemistry. vol 150. issue 2. 2020-03-18. PMID:30720866. frontal cortex and fronto-striatal networks are implicated in working memory and these circuits rely on dopamine for optimal performance. 2020-03-18 2023-08-13 Not clear
José Bourbon-Teles, David Sot. Assessing the Role of the Left Dorsal Frontal Cortex in Working Memory Guidance: Attentional or Mnemonic? A Neurostimulation Study. Neuroscience. vol 411. 2020-02-04. PMID:31103707. assessing the role of the left dorsal frontal cortex in working memory guidance: attentional or mnemonic? 2020-02-04 2023-08-13 Not clear
José Bourbon-Teles, David Sot. Assessing the Role of the Left Dorsal Frontal Cortex in Working Memory Guidance: Attentional or Mnemonic? A Neurostimulation Study. Neuroscience. vol 411. 2020-02-04. PMID:31103707. these findings suggest that the role of the left dorsal frontal cortex in wm guidance is associated with selective attentional control rather than mnemonic processing. 2020-02-04 2023-08-13 Not clear
Sobanawartiny Wijeakumar, Aarti Kumar, Lourdes M Delgado Reyes, Madhuri Tiwari, John P Spence. Early adversity in rural India impacts the brain networks underlying visual working memory. Developmental science. vol 22. issue 5. 2020-01-01. PMID:30803122. critically, children from families with low maternal education and income showed weaker brain activity and poorer distractor suppression in canonical working memory areas in the left frontal cortex. 2020-01-01 2023-08-13 Not clear
Tien-Wen Lee, Shao-Wei Xu. Does emotion regulation engage the same neural circuit as working memory? A meta-analytical comparison between cognitive reappraisal of negative emotion and 2-back working memory task. PloS one. vol 13. issue 9. 2019-02-27. PMID:30212509. the peak coordinates of er in the middle frontal cortex were dorsal to those of wm by 15.1 mm (left) and 21.6 mm (right). 2019-02-27 2023-08-13 human