All Relations between asymmetrical neuron and alpha

Publication Sentence Publish Date Extraction Date Species
Ping Chai Koo, Christoph Berger, Golo Kronenberg, Julia Bartz, Peter Wybitul, Olaf Reis, Jacqueline Hoeppne. Combined cognitive, psychomotor and electrophysiological biomarkers in major depressive disorder. European archives of psychiatry and clinical neuroscience. vol 269. issue 7. 2020-02-10. PMID:30392042. alpha power asymmetry and eeg-vigilance as indicators of brain arousal), and the interaction of these parameters in the diagnosis of mdd. 2020-02-10 2023-08-13 Not clear
Pei-Yi Tsai, Hsiao-Ching She, Sheng-Chang Chen, Li-Yu Huang, Wen-Chi Chou, Jeng-Ren Duann, Tzyy-Ping Jun. Eye fixation-related fronto-parietal neural network correlates of memory retrieval. International journal of psychophysiology : official journal of the International Organization of Psychophysiology. vol 138. 2020-02-07. PMID:30817980. moreover, the visual cortex in the occipital lobe exhibits a significantly greater theta augmentation followed by an alpha suppression following each eye fixation, while a right fronto-parietal asymmetry was also found for the successful retrieval of presentations of physics concepts. 2020-02-07 2023-08-13 human
Antea D'Andrea, Federico Chella, Tom R Marshall, Vittorio Pizzella, Gian Luca Romani, Ole Jensen, Laura Marzett. Alpha and alpha-beta phase synchronization mediate the recruitment of the visuospatial attention network through the Superior Longitudinal Fasciculus. NeuroImage. vol 188. 2020-01-22. PMID:30605784. we show that alpha band phase-synchronization is modulated by the orienting of attention according to a parieto-occipital top-down mechanism reflecting behavior, and its hemispheric asymmetry is predicted by volume's asymmetry of specific tracts of the superior-longitudinal-fasciculus. 2020-01-22 2023-08-13 human
Adam Maszczyk, Paweł Dobrakowski, Marcin Żak, Paweł Gozdowski, Magdalena Krawczyk, Andrzej Małecki, Petr Stastny, Tomasz Zaja. Differences in motivation during the bench press movement with progressive loads using EEG analysis. Biology of sport. vol 36. issue 4. 2020-01-19. PMID:31938006. therefore the main objective of this study was to identify patterns of frontal alpha asymmetry (faa) of the prime movers by alpha frequency band analysis (named as alpha motivation values) for each 35-100% one-repetition maximum (1rm) during the flat bench press. 2020-01-19 2023-08-13 human
Melissa A Day, Natasha Matthews, Anica Newman, Jason B Mattingley, Mark P Jense. An evaluation of the behavioral inhibition and behavioral activation system (BIS-BAS) model of pain. Rehabilitation psychology. vol 64. issue 3. 2020-01-08. PMID:30920244. frontal alpha asymmetry (faa) as a possible neurophysiological correlate of the bis-bas was also explored, as was the role of personality factors. 2020-01-08 2023-08-13 Not clear
Giulia Cartocci, Enrica Modica, Dario Rossi, Bianca M S Inguscio, Pietro Aricò, Ana C Martinez Levy, Marco Mancini, Patrizia Cherubino, Fabio Babilon. Antismoking Campaigns' Perception and Gender Differences: A Comparison among EEG Indices. Computational intelligence and neuroscience. vol 2019. 2020-01-02. PMID:31143204. the employed eeg indices were the mental engagement (me: the ratio between beta activity and the sum of alpha and theta activity); the approach/withdrawal (aw: the frontal alpha asymmetry in the alpha band); and the frontal theta activity and the spectral asymmetry index (sasi: the ratio between beta minus theta and beta plus theta). 2020-01-02 2023-08-13 human
Sebastian Ocklenburg, Patrick Friedrich, Judith Schmitz, Caroline Schlüter, Erhan Genc, Onur Güntürkün, Jutta Peterburs, Gina Grimsha. Beyond frontal alpha: investigating hemispheric asymmetries over the EEG frequency spectrum as a function of sex and handedness. Laterality. vol 24. issue 5. 2019-12-09. PMID:30388061. frontal alpha eeg asymmetry, an indirect marker of asymmetries in relative frontal brain activity, are widely used in research on lateralization of emotional processing. 2019-12-09 2023-08-13 Not clear
Sebastian Ocklenburg, Patrick Friedrich, Judith Schmitz, Caroline Schlüter, Erhan Genc, Onur Güntürkün, Jutta Peterburs, Gina Grimsha. Beyond frontal alpha: investigating hemispheric asymmetries over the EEG frequency spectrum as a function of sex and handedness. Laterality. vol 24. issue 5. 2019-12-09. PMID:30388061. taken together, the present results show that eeg asymmetries other than frontal alpha represent markers of asymmetric brain function that should be explored further. 2019-12-09 2023-08-13 Not clear
Guozhen Zhao, Yulin Zhang, Yan Ge, Yan Zheng, Xianghong Sun, Kan Zhan. Asymmetric hemisphere activation in tenderness: evidence from EEG signals. Scientific reports. vol 8. issue 1. 2019-11-25. PMID:29795119. frontal alpha asymmetry (faa) as measured by electroencephalographic (eeg) power in the alpha band (8-13 hz), is a sensitive indicator of asymmetric brain activity in the frontal cortex. 2019-11-25 2023-08-13 human
Kanellopoulos, Tucker, Pavlou, Agianian, Hamodraka. A Triclinic Crystal Form of the Lectin Concanavalin A Journal of structural biology. vol 117. issue 1. 2019-11-20. PMID:8812975. the crystals have unit cell dimensions a = 78.8 a, b = 79.3 a, c = 133.3 a, alpha = 97.1degrees, beta = 90.2degrees, and gamma = 97.5degrees and contain two tetramers per asymmetric unit each with approximate 222 symmetry. 2019-11-20 2023-08-12 Not clear
Sheline, Bossing. Alpha decay hindrance factors and reflection asymmetry in nuclei. Physical review. C, Nuclear physics. vol 44. issue 1. 2019-11-20. PMID:9967392. alpha decay hindrance factors and reflection asymmetry in nuclei. 2019-11-20 2023-08-12 Not clear
De Kinder J, Bouwen, Goovaerts, Schoemake. Asymmetric line shapes and time-resolved measurements: Vibrons in alpha -Arx(N2)1-x mixed crystals. Physical review. B, Condensed matter. vol 47. issue 21. 2019-11-20. PMID:10005816. asymmetric line shapes and time-resolved measurements: vibrons in alpha -arx(n2)1-x mixed crystals. 2019-11-20 2023-08-12 Not clear
DeJongh, Sphica. Extracting alpha from the CP asymmetry in B0--> pi + pi - decays. Physical review. D, Particles and fields. vol 53. issue 9. 2019-11-20. PMID:10020488. extracting alpha from the cp asymmetry in b0--> pi + pi - decays. 2019-11-20 2023-08-12 Not clear
Gzella, Rozwadowsk. (4S,5S)-(+)-4-Hydroxymethyl-2,5-diphenyloxazoline Acta crystallographica. Section C, Crystal structure communications. vol 56 (Pt 8). 2019-11-20. PMID:10944296. the hydroxymethyl group and phenyl ring at the asymmetric c atoms exhibit beta and alpha orientations, respectively. 2019-11-20 2023-08-12 Not clear
Luk, Diehl, Duryea, Guglielmo, Heller, Ho, James, Johns, Longo, Rameika, Teige, Thomson, Zo. Search for direct CP violation in nonleptonic decays of charged Xi and lambda hyperons Physical review letters. vol 85. issue 23. 2019-11-20. PMID:11102136. in comparing the product of the decay parameters, alpha(xi)alpha(lambda), in terms of an asymmetry parameter, a(xilambda), between hyperons and antihyperons in the charged xi-->lambdapi and lambda-->ppi decay sequence, we found no evidence of direct cp violation. 2019-11-20 2023-08-12 Not clear
Leon I. Rubinstein, Louis H. Pignole. Kinetic Investigation of Homogeneous H(2)-D(2) Equilibration Catalyzed by Pt-Au Cluster Compounds. Characterization of the Cluster [(H)Pt(AuPPh(3))(9)](NO(3))(2). Inorganic chemistry. vol 35. issue 23. 2019-11-20. PMID:11666839. the new pt-au hydrido cluster compound [(h)pt(aupph(3))(9)](no(3))(2) (3) has been synthesized and characterized by nmr, fabms, and single-crystal x-ray diffraction [triclinic, p&onemacr;, a = 17.0452(1) Å, b = 17.4045(2) Å, c = 55.2353(1) Å, alpha = 89.891(1) degrees, beta = 85.287(1) degrees, gamma = 75.173(1) degrees, v = 15784.0(2) Å(3), z = 4 (two molecules in asymmetric unit), residual r = 0.089 for 45 929 observed reflections and 3367 variables, mo kalpha radiation]. 2019-11-20 2023-08-12 Not clear
Matthias Müller, V. Cliff Williams, Linda H. Doerrer, Michael A. Leech, Sax A. Mason, Malcolm L. H. Green, Keith Prou. Syntheses of the Uranium Complexes [U{N(SiMe(3))(2)}(2){N(SiMe(3))(SiMe(2)CH(2)B(C(6)F(5))(3))}] and [U{C(Ph)(NSiMe(3))(2)}(2){&mgr;(3)-BH(4)}(2)]. Determination of Hydrogen Positions by Single-Crystal X-ray and Neutron Diffraction. Inorganic chemistry. vol 37. issue 6. 2019-11-20. PMID:11670339. the x-ray [c(36)h(53)bf(15)n(3)si(6)u.3.5c(6)d(6), triclinic, space group p&onemacr;, z = 2, 90 k, a = 14.065(1) Å, b = 14.496(1) Å, c = 18.759(1) Å, alpha = 82.898(1) degrees, beta = 74.415(1) degrees, gamma = 62.919(1) degrees ] and neutron structure [c(36)h(53)bf(15)n(3)si(6)u.3.5c(6)d(6), triclinic, space group p&onemacr;, z = 2, 20 k, a = 13.993(1) Å, b = 14.484(1) Å, c = 18.720(1) Å, alpha = 82.810(1) degrees, beta = 74.200(1) degrees, gamma = 63.054(1)e] of compound 1, which crystallizes with 3.5 molecules of c(6)d(6) per asymmetric unit, show the electron deficiency of the uranium atom to be effectively compensated by the formation of multicenter bonds between u and three si-ch(2) units of the amido ligands. 2019-11-20 2023-08-12 Not clear
Hing C. Wong, Raymond Coogan, Francesco P. Intini, Giovanni Natile, Luigi G. Marzill. New Steric Hindrance Approach Employing the Hybrid Ligand 2-Aminomethylpiperidine for Diminishing Dynamic Motion Problems of Platinum Anticancer Drug Adducts Containing Guanine Derivatives. Inorganic chemistry. vol 38. issue 4. 2019-11-20. PMID:11670844. ptcl(2)(pipen) synthesized with the pipen enantiomer having an r configuration of the asymmetric carbon (determined on the basis of the [alpha](d) sign) has the s stereochemistry at the n asymmetric center. 2019-11-20 2023-08-12 Not clear
Christina Ng, Michal Sabat, Cassandra L. Frase. Metal Complexes with Cis alpha Topology from Stereoselective Quadridentate Ligands with Amine, Pyridine, and Quinoline Donor Groups. Inorganic chemistry. vol 38. issue 24. 2019-11-20. PMID:11671282. though the principles governing quadridentate topology and metal stereochemistry have been known for some time, the cis alpha topology has been little exploited in designing catalysts for asymmetric reactions. 2019-11-20 2023-08-12 Not clear
Wenzel Schicho, Oliver Pogarel. Physiological aberrations in panic disorder. Current topics in behavioral neurosciences. vol 21. 2019-11-20. PMID:25231074. this article gives an overview of the current literature on the pathophysiology of pd, including studies on altered microstates, coherence imaging and alpha asymmetry. 2019-11-20 2023-08-13 Not clear