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Cited by (19)
Abnormal spatial frequency processing in high-functioning children with pervasive developmental disorder (PDD)
2007, Clinical NeurophysiologyCitation Excerpt :In the present study, we recorded VEPs elicited by gratings consisting of high and low spatial frequencies in high-functioning children with PDD and matched controls, and we analyzed the underlying dipole sources. In the control children, around 80 ms, spatial frequency-related differences in VEP amplitude, topography and sources were found that were identical to effects reported previously in typical adults and children (a/o Ossenblok and Spekreijse, 1991; Ossenblok, 1992; Kenemans et al., 1993; Ossenblok et al., 1994; Proverbio et al., 1996; Kenemans et al., 2000; Martinez et al., 2001; Baas et al., 2002; Boeschoten et al., 2005b). Specifically, in control children there was a larger N80 amplitude at Oz in response to high spatial frequencies compared with low spatial frequencies.
Variability in spatial normalization of pediatric and adult brain images
2005, Clinical NeurophysiologyPattern ERG and VEP maturation in schoolchildren
2002, Clinical NeurophysiologyOn the processing of spatial frequencies as revealed by evoked-potential source modeling
2000, Clinical NeurophysiologyCitation Excerpt :In contrast the more lateral location, together with the radial orientation, is indicative of activity on the crown of, for example, the middle occipital gyrus, in area 18 or 19. A similar interpretation was proposed by Ossenblok et al. (1994). Predictions about lateralization were partially confirmed.
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Present address: Department of Clinical Neurophysiology, Academic Medical Centre, Meibergdreef 9, 1105 AZ Amsterdam-Zuidoost, The Netherlands.