scholarly journals Entrainment of theta, not alpha, oscillations is predictive of the brightness enhancement of a flickering stimulus

2018 ◽  
Vol 8 (1) ◽  
Author(s):  
Jennifer K. Bertrand ◽  
Nathan J. Wispinski ◽  
Kyle E. Mathewson ◽  
Craig S. Chapman
Author(s):  
ZHAO Baiting ◽  
WANG Feng ◽  
JIA Xiaofen ◽  
GUO Yongcun ◽  
WANG Chengjun

Background:: Aiming at the problems of color distortion, low clarity and poor visibility of underwater image caused by complex underwater environment, a wavelet fusion method UIPWF for underwater image enhancement is proposed. Methods:: First of all, an improved NCB color balance method is designed to identify and cut the abnormal pixels, and balance the color of R, G and B channels by affine transformation. Then, the color correction map is converted to CIELab color space, and the L component is equalized with contrast limited adaptive histogram to obtain the brightness enhancement map. Finally, different fusion rules are designed for low-frequency and high-frequency components, the pixel level wavelet fusion of color balance image and brightness enhancement image is realized to improve the edge detail contrast on the basis of protecting the underwater image contour. Results:: The experiments demonstrate that compared with the existing underwater image processing methods, UIPWF is highly effective in the underwater image enhancement task, improves the objective indicators greatly, and produces visually pleasing enhancement images with clear edges and reasonable color information. Conclusion:: The UIPWF method can effectively mitigate the color distortion, improve the clarity and contrast, which is applicable for underwater image enhancement in different environments.


Author(s):  
Daniel Schneider ◽  
Sophie K. Herbst ◽  
Laura‐Isabelle Klatt ◽  
Malte Wöstmann
Keyword(s):  

2011 ◽  
Vol 31 (18) ◽  
pp. 6674-6683 ◽  
Author(s):  
C. Marzano ◽  
M. Ferrara ◽  
F. Mauro ◽  
F. Moroni ◽  
M. Gorgoni ◽  
...  

2016 ◽  
Vol 16 (5) ◽  
pp. 888-901 ◽  
Author(s):  
Kara J. Blacker ◽  
Akiko Ikkai ◽  
Balaji M. Lakshmanan ◽  
Joshua B. Ewen ◽  
Susan M. Courtney

2021 ◽  
pp. JN-RM-1114-21
Author(s):  
Ying Joey Zhou ◽  
Luca Iemi ◽  
Jan-Mathijs Schoffelen ◽  
Floris P. de Lange ◽  
Saskia Haegens

2017 ◽  
Vol 29 (1) ◽  
pp. 183-202 ◽  
Author(s):  
Yvonne Y. Chen ◽  
Jeremy B. Caplan

During study trials of a recognition memory task, alpha (∼10 Hz) oscillations decrease, and concurrently, theta (4–8 Hz) oscillations increase when later memory is successful versus unsuccessful (subsequent memory effect). Likewise, at test, reduced alpha and increased theta activity are associated with successful memory (retrieval success effect). Here we take an individual-differences approach to test three hypotheses about theta and alpha oscillations in verbal, old/new recognition, measuring the difference in oscillations between hit trials and miss trials. First, we test the hypothesis that theta and alpha oscillations have a moderately mutually exclusive relationship; but no support for this hypothesis was found. Second, we test the hypothesis that theta oscillations explain not only memory effects within participants, but also individual differences. Supporting this prediction, durations of theta (but not alpha) oscillations at study and at test correlated significantly with d′ across participants. Third, we test the hypothesis that theta and alpha oscillations reflect familiarity and recollection processes by comparing oscillation measures to ERPs that are implicated in familiarity and recollection. The alpha-oscillation effects correlated with some ERP measures, but inversely, suggesting that the actions of alpha oscillations on memory processes are distinct from the roles of familiarity- and recollection-linked ERP signals. The theta-oscillation measures, despite differentiating hits from misses, did not correlate with any ERP measure; thus, theta oscillations may reflect elaborative processes not tapped by recollection-related ERPs. Our findings are consistent with alpha oscillations reflecting visual inattention, which can modulate memory, and with theta oscillations supporting recognition memory in ways that complement the most commonly studied ERPs.


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