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J Majkowski

Publications and source records attributed to J Majkowski.

At least 55 records · Page 3Linked to original sources

Clinical and electrophysiological effects of chronic epileptic lesion in split-brain cats.

The development of the clinical and EEG manifestations of intracortical alumina cream epileptogenic lesion is described in 14 split-brain cats. In 4 animals contralateral and/or ipsilateral, cortical and subcortical secondary epileptic foci were present. The results indicate that integrity of interhemispheric transfer through the corpus callosum and anterior and posterior commissures is not necessary for the transmission of epileptic activity to contralateral hemisphere. Partial epileptic seizures of Jacksonian type were observed in 6 cats. In 1 cat grand mal epileptic seizure developed. The possible mechanisms of secondary epileptic foci and generalized type of seizure are discussed.

Animals↗

EEG and clinical studies of the development of alumina cream epileptic focus in split-brain cats.

Alumina cream epileptic focus was established in the right sensorimotor cortex in 20 split-brain cats (partial or complete). EEG and behavioral observations were made in a period ranging from 24 to 836 days. Four types of EEG changes after alumina cream injection were differentiated. These types could be related to the direct effects of brain damage and to development of epilepsy. Spikes and sharp waves and paroxysmal discharges (focal and multifocal) were observed in about 60% of the cats. Clinical seizures developed in about the same percentage of the animals. These values are below those reported for cats with intact interhemispheric commissures. Diphenylhydantoin (DPH) was given orally in a daily dose of up to 15 mg/kg body weight in 9 animals with developed epileptic EEG activity. Five of them had epileptic seizures. DPH was introduced not earlier than 1.5 months after intracortical alumina cream injection. The plasma level of DPH varied between 7-20 mug/ml. This dose produced chronic symptoms of intoxication. Neither EEG changes nor clinical seizures were entirely controlled by this drug. Additional doses of Relanium (diazepam), and phenobarbital were necessary to stop generalized seizures or status epilepticus.

Aluminum↗

Evolution of average evoked potentials in cats during conditioning before and after tegmental lesions.

Sensory-specific and modality nonspecific average evoked potentials (AEPs) were recorded from the cortical areas and subcortical structures in two groups of cats: (1) normal cats which after conditioning were subjected to brainstem lesions and reconditioning; (2) cats with brainstem lesions and subsequent conditioning. A new waveshape of the visually evoked potenials developed in the visual cortex in the course of conditioning to light flashes (LF) in both groups of cats. In normal cats, a new component, with a peak latency from 80-100 msec and with reversed polarity, was observed in place of the late, longlasting, component of the preconditioning AEP. The latency of the new component is longer in cats with brainstem lesions. The first signs of waveform modification occurred relatively early in the process of learning, well before the animal learned to react consistently to the conditioned stimulus. Also, there seemed to be no clear relationship between the modified waveshapes of the AEPs and performance level during a particular session of conditioning. The modifications did not depend on habituation to the long-lasting exposure to light flashes presented alone. The new waveshape was preserved to a variable degree after brainstem lesions, that is, reconditioning never started with a potential characteristic for a naive animal. AEPs to licks in the auditory cortex, also changed during conditioning, although this modification was not so evident as in visual responses. In contrast to evident modifications of evoked responses in sensory specific structures during the process of conditiong, there were very small if any, changes in modality nonspecific structures, including brainstem reticular formation. Modality nonspecific responses were obtained from the brainstem reticular formation and motor cortex to light flashes and clicks, from the visual cortex to auditory stimuli and from the auditory cortex to light flashes. Only poorly developed evoked responses could be detected in the motor-sensory cortex during conditioning to light flashes although rhythmic EEG activity related to presentation of the conditioned stimulus (CS) was observed from this arena - thus indicating that they were not the same phenomena.

Animals↗