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T Paiva

Publications and source records attributed to T Paiva.

2 recordsLinked to original sources

A model-based detector of vertex waves and K complexes in sleep electroencephalogram.

A model of sleep phasic events such as vertex waves, K complexes, delta waves and sleep spindles is proposed. It consists of feedback loops that are driven by white noise (simulating tonic delta and sigma activity) and by isolated random impulses, simulating vertex waves or K complexes, depending on the background tonic activity. A model-based method for the detection of sleep phasic events was implemented in a personal computer. Its performance was investigated using simulated and real whole-night EEG signals. The method was able to detect K complexes and vertex waves in a reliable way in spite of their variable shapes and in the presence of a variety of background activities. The detector appears to have superior performance to those so far reported in the literature. The performance of the detector was also compared to that of an electroencephalographer using normal sleep EEG records of 8 h duration from 6 subjects. The performance was satisfactory both in terms of accuracy and reliability. The problem of detecting K complexes in stages 3 and 4 of sleep is discussed.

Adult

Modulating systems of hippocampal EEG.

Hippocampal EEG changes in response to stimulation of several mesodiencephalic inputs (mesodiencephalic reticular formation, MRF; medial and lateral hypothalamus, MH and LH; medial septum, MS) were quantitatively investigated by means of spectral analysis in cats with chronically indwelling electrodes. The rhythmic activity of the hippocampus, in the theta frequency range, increased as a function of stimulus strength wherever the stimulation took place in MRF, LH and MH. Characteristic response patterns were found for each input area. These differed as regards the occurrence of shifts in theta peak frequency and the decrease in one or more theta frequency components below baseline levels at high stimulation voltage. Desynchronization (EEG flat spectrum) did not take place at low stimulation strength of the MRF, LH and MH except in a few cases, where the electrodes were placed in the neighbourhood of fibre tracts (fornix and medial forebrain bundle). Thus evidence for the existence of "synchronizing" and "desynchronizing" systems was not found. A model of the origin of the hippocampal EEG is discussed in the light of the results, by means of which several hypotheses concerning the mechanisms of desynchronization are considered.

Animals