Environmental noise-exposed workers: event-related potentials, neuropsychological and mood assessment.
暂无分享,去创建一个
Franca Tecchio | Filippo Zappasodi | Matilde Ercolani | Francesco Tomei | Gianfranco Tomei | Daniele Milazzo | Paolo M Rossini | P. Pasqualetti | P. Rossini | F. Zappasodi | F. Tecchio | M. Ercolani | P. Chiovenda | A. Capozzella | F. Tomei | G. Tomei | Patrizio Pasqualetti | Assuntina Capozzella | Paola Chiovenda | D. Milazzo
[1] K. Alho,et al. Auditory and somatosensory event-related brain potentials in early blind humans , 2004, Experimental Brain Research.
[2] P. Alku,et al. Long-term exposure to occupational noise alters the cortical organization of sound processing , 2005, Clinical Neurophysiology.
[3] L. M. Gomes,et al. Effects of occupational exposure to low frequency noise on cognition. , 1999, Aviation, space, and environmental medicine.
[4] Leah Krubitzer,et al. Massive cross-modal cortical plasticity and the emergence of a new cortical area in developmentally blind mammals , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[5] H. Boshuizen,et al. The association between noise exposure and blood pressure and ischemic heart disease: a meta-analysis. , 2002, Environmental health perspectives.
[6] B. Jakovljević,et al. Noise and mental performance: personality attributes and noise sensitivity. , 2003, Noise & health.
[7] Staffan Hygge,et al. Chronic Noise and Psychological Stress , 1995 .
[8] S Micheloyannis,et al. Generators for human P300 elicited by somatosensory stimuli using multiple dipole source analysis , 1996, Neuroscience.
[9] Peter F. Liddle,et al. Attention orienting dysfunction during salient novel stimulus processing in schizophrenia , 2005, Schizophrenia Research.
[10] John Polich,et al. Stimulus frequency and masking as determinants of P300 latency in event-related potentials from auditory stimuli , 1985, Biological Psychology.
[11] A. Papanicolaou,et al. Electric source localization of the auditory P300 agrees with magnetic source localization. , 1995, Electroencephalography and clinical neurophysiology.
[12] Y. Sheline. Neuroimaging studies of mood disorder effects on the brain , 2003, Biological Psychiatry.
[13] C. C. Wood,et al. Potentials evoked in human and monkey medial temporal lobe during auditory and visual oddball paradigms. , 1992, Electroencephalography and clinical neurophysiology.
[14] I. Winkler,et al. Long-term exposure to noise impairs cortical sound processing and attention control. , 2004, Psychophysiology.
[15] Andrew W. Smith. The World Health Organisation and the prevention of deafness and hearing impairment caused by noise. , 1998, Noise & health.
[16] M Alves-Pereira. Noise-induced extra-aural pathology: a review and commentary. , 1999, Aviation, space, and environmental medicine.
[17] R. Knight,et al. Prefrontal deficits in attention and inhibitory control with aging. , 1997, Cerebral cortex.
[18] H. Shibasaki,et al. Human auditory and somatosensory event-related potentials: effects of response condition and age. , 1987, Electroencephalography and clinical neurophysiology.
[19] J. D. Miller. Effects of noise on people. , 1974, The Journal of the Acoustical Society of America.
[20] P. Hessel,et al. Occupational noise exposure and blood pressure: longitudinal and cross-sectional observations in a group of underground miners. , 1994, Archives of environmental health.
[21] J. Tulen,et al. Characterization of stress reactions to the Stroop Color Word Test , 1989, Pharmacology Biochemistry and Behavior.
[22] S. Hillyard,et al. Similarities and differences among the P3 waves to detected signals in three modalities. , 1980, Psychophysiology.
[23] S. Shimojo,et al. Sensory modalities are not separate modalities: plasticity and interactions , 2001, Current Opinion in Neurobiology.
[24] Jochen Schacht,et al. Delayed production of free radicals following noise exposure , 2004, Brain Research.
[25] H. Manji,et al. Impairments of neuroplasticity and cellular resilience in severe mood disorders: implications for the development of novel therapeutics. , 2001, Psychopharmacology bulletin.
[26] C. C. Wood,et al. The relationship between human long-latency somatosensory evoked potentials recorded from the cortical surface and from the scalp. , 1992, Electroencephalography and clinical neurophysiology.
[27] M. Ptito,et al. Cross-modal plasticity revealed by electrotactile stimulation of the tongue in the congenitally blind. , 2005, Brain : a journal of neurology.
[28] R Kvetnansky,et al. Endocrine status and LBNP-induced hormone changes during a 438-day spaceflight: a case study. , 1999, Aviation, space, and environmental medicine.
[29] F. Mauguière,et al. Target side and scalp topography of the somatosensory P300. , 1993, Electroencephalography and clinical neurophysiology.
[30] J. Polich,et al. Neuropsychology and neuropharmacology of P3a and P3b. , 2006, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[31] J. Stroop. Studies of interference in serial verbal reactions. , 1992 .
[32] Martha E Shenton,et al. The effect of background noise on P300 to suprathreshold stimuli. , 2002, Psychophysiology.
[33] Eric Hahn,et al. Selective anterior cingulate cortex deficit during conflict solution in schizophrenia: an event-related potential study. , 2007, Journal of psychiatric research.
[34] T. Wasaka,et al. Resource allocation and somatosensory P300 amplitude during dual task: effects of tracking speed and predictability of tracking direction , 2004, Clinical Neurophysiology.
[35] A. Papanicolaou,et al. Selective attention effects on somatosensory evoked potentials. , 1989, The International journal of neuroscience.
[36] J. Polich,et al. Cognitive and biological determinants of P300: an integrative review , 1995, Biological Psychology.
[37] John R Franks,et al. Oxidative DNA damage is associated with intense noise exposure in the rat , 2002, Hearing Research.
[38] C. Spielberger,et al. Stress and Anxiety , 1981 .
[39] Ione Fine,et al. Visual stimuli activate auditory cortex in the deaf , 2001, Nature Neuroscience.
[40] P. Michie,et al. Selective Attention Effects on Somatosensory Event‐Related Potentials , 1984, Annals of the New York Academy of Sciences.
[41] C. C. Wood,et al. Task-dependent field potentials in human hippocampal formation , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[42] R. Näätänen,et al. Early selective-attention effects on the evoked potential: A critical review and reinterpretation , 1979, Biological Psychology.
[43] Ernst Fernando Lopes Da Silva Niedermeyer,et al. Electroencephalography, basic principles, clinical applications, and related fields , 1982 .
[44] S. Melamed,et al. The effects of chronic industrial noise exposure on urinary cortisol, fatigue and irritability: a controlled field experiment. , 1996, Journal of occupational and environmental medicine.
[45] P. Michie,et al. The effects of spatial selective attention on the somatosensory event-related potential. , 1987, Psychophysiology.
[46] S. Fantini,et al. Hypertension and Chronic Exposure to Noise , 2000, Archives of environmental health.
[47] J. Polich,et al. P300 and individual differences: morning/evening activity preference, food, and time-of-day. , 1992, Psychophysiology.
[48] M. Hallett,et al. Functional relevance of cross-modal plasticity in blind humans , 1997, Nature.
[49] C. Jones. ABC of Work Related Disorders: OCCUPATIONAL HEARING LOSS AND VIBRATION INDUCED DISORDERS , 1996, BMJ.
[50] N A Castelo Branco,et al. The vibroacoustic disease--an emerging pathology. , 1999, Aviation, space, and environmental medicine.
[51] J. Polich. Clinical application of the P300 event-related brain potential. , 2004, Physical medicine and rehabilitation clinics of North America.
[52] Michael C McReynolds,et al. Noise-induced hearing loss. , 2005, Air medical journal.
[53] E. R Gizewski,et al. Cross-modal plasticity for sensory and motor activation patterns in blind subjects , 2003, NeuroImage.
[54] E. Donchin,et al. Performance of concurrent tasks: a psychophysiological analysis of the reciprocity of information-processing resources. , 1983, Science.
[55] H. Shibasaki,et al. Somatosensory event-related potentials following different stimulus conditions. , 1992, The International journal of neuroscience.
[56] Tamer Demiralp,et al. Music effects on event-related potentials of humans on the basis of cultural environment , 1999, Neuroscience Letters.
[57] A. Águas,et al. Increase in CD8+ and CD4+ T lymphocytes in patients with vibroacoustic disease. , 1999, Aviation, space, and environmental medicine.