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H Offenbacher

Publications and source records attributed to H Offenbacher.

39 records · Page 3Linked to original sources

Mobile long-term EEG monitoring in generalized seizure disorders of different etiology.

Eighteen EEG long-term recordings were carried out in patients with generalized fits of different etiologies using a mobile 4-channel monitoring system in order to observe individual patterns of epileptic activity. In patients with idiopathic tonic-clonic seizures (A) no connection of frequency of spike-wave bursts with the sleep-wakefulness cycle was observed. In patients suffering from fits of organic nature (B) a peak of paroxysms was obtained in the hours before sleep onset, whereas in patients with absence seizures (C) a maximum was found in the morning hours after awakening. In patients with idiopathic fits (tonic-clonic and absence seizures) the minimum of bursts was observed in REM sleep, whereas stage 0 (tonic-clonic) and stage 1 (absence) were most prone to discharges. Patients with secondary generalized epilepsy had most spike-wave bursts in deep sleep. In the absence seizure group the transitional periods within the light non-REM-sleep stages were more susceptible to paroxysms than the retained stages. In patients with idiopathic grand mal seizures, the highest frequency of paroxysmal discharges was found during time spent awake in the night when retained over a longer period of time. The group including cases with attacks of organic nature did not show any preference to shifting times or preservation episodes of sleep stages.

Adolescent↗

The morphologic correlate of incidental punctate white matter hyperintensities on MR images.

Postmortem examinations were made of the brains of six patients, 52-63 years old, who exhibited incidental punctate white matter hyperintensities on MR images before death. Our aim was to unravel the morphologic correlate of such lesions. By repeating the MR study after fixation on four specimens, cutting the brain parallel to the MR imaging plane, and examining whole-hemisphere microscopic sections, we optimized lesion identification. The white matter signal abnormalities were better delineated on pre- than postmortem scans, and visual inspection of the brain slices was normal in all but one location. Histologically, we found areas of reduced myelination with atrophy of the neuropil around fibrohyalinotic arteries as well as different stages of perivenous damage. The latter ranged from spongiform transformation of the neuropil and scattered foci of demyelination to large perivenous areas with marked rarefaction of myelinated fibers. Edematous glial swelling in foci of ganglion cell heterotopia caused subcortical white matter hyperintensities in one case. Our results suggest minor perivascular damage but not infarction as the most likely substrate of punctate MR white matter hyperintensities in elderly brains. Histologic correlations with MR images obtained during life or with studies of unfixed material are necessary to analyze such small lesions.

Brain↗