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A Reber

Publications and source records attributed to A Reber.

62 records · Page 4Linked to original sources

Horizontal optokinetic ocular nystagmus in the pigmented rat.

Horizontal optokinetic nystagmus was elicited in rats by rotation of a pattern of bright dots projected onto a cylinder surrounding the animal. Eye position was measured with the electromagnetic search coil technique. Optokinetic stimuli consisted either of velocity steps of pattern rotation or sinusoidal oscillations. Closed-loop gain (slow phase eye velocity/pattern velocity) of steady-stage step responses in binocular vision ranged between 0.8 and 1.0 for pattern velocities up to 20-40 degrees/s and decreased thereafter. Open-loop gain (steady-state slow phase velocity/retinal slip velocity) was dependent on retinal slip velocity and decreased linearly in double logarithmic plot from about 30 (at 0.5 degree/s) to about 9 (at 5 degrees/s). For retinal slip velocities larger than 5 degrees/s open-loop gain decayed faster and reached about 1 at 30 degrees/s. Step response profiles showed a gradual increase in slow phase eye velocity reaching steady-state after a time period roughly proportional to stimulus velocity. Initial slow phase velocity measured within 500 ms after stimulus onset reached between 2 and 4 degrees/s and was largely independent of stimulus amplitudes above 10 degrees/s. Occasionally rats showed fast rises in slow phase eye velocity at the onset of the step response profiles. Primary and secondary optokinetic afternystagmus were present. Duration of primary afternystagmus was largely independent of stimulus amplitude and lasted 8.0 +/- 4 s. Closed-loop gain of steady-state step responses in monocular vision was, for temporonasal stimuli, similar to that measured in binocular condition while for nasotemporal stimulation gain was much smaller even at low stimulus velocities. Sinusoidal modulation of slow phase velocity was linearly dependent on stimulus velocity; the linear range decreased as frequency of stimulation increased. Slow phase velocity gain was relatively constant (ca 0.8) between 0.05 and 0.3 Hz and showed only a small tendency to decrease at larger stimulus frequencies. Phase-lag increased strongly with stimulus frequency and could be fitted by assuming a response time delay of 100 ms. The results show that the rat's optokinetic system is qualitatively similar to that found in another lateral-eyed species, namely the rabbit. At a quantitative level, however, both fast and slow optokinetic response dynamics appear to be better developed in the rat than in the rabbit.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Influence of stimulation of auditory and somatosensory systems on the activity of vestibular nuclear neurons in the frog.

In the frog, we have recorded extracellularly the activity of vestibular nuclear neurons driven by the horizontal semicircular canals. About 28% of the neurons recorded (n = 300) responded to auditory stimulation (clicks 150/s and pure tones 300-2,000 Hz, about 80 dB above threshold) or to somatosensory stimulation (electrical stimulation of the ipsilateral or contralateral sciatic nerve and vibratory stimulation of the ipsilateral gastrocnemius). Whatever the stimulus, the response was always an increase of the discharge frequency. Such a frequency increase was much more important for somatosensory stimulation (62-145%) than for auditory (20%) and sciatic nerve input was about twice as efficient as gastrocnemius input. Except for type IV units which were only exceptionally recorded, all the other neuronal types (according to Duensing and Schaefer 's classification, 1959) responded to auditory or somatosensory volleys. In particular, activation of type III units, which are partly efferent vestibular neurons ending at the base of the sensory hair cells, may result in a modulation of the peripheral vestibular discharges. The latencies of the responses varied over a wide range (5-40 ms); long latency responses are probably mediated by polysynaptic pathways including the reticular formation and/or the cerebellum, and short latency ones by oligosynaptic pathways. These pathways and the functional meaning of convergence of auditory and somatosensory input onto vestibular nuclei are discussed.

Afferent Pathways↗

[Management of patients with Type 2B von Willebrand's disease during delivery and puerperium].

Von Willebrand's disease (VWD) is the most common congenital haemorrhagic diathesis inherited as an autosomal dominant trait, with a prevalence estimated to be 1 - 2 %. In subtype 2B an abnormally structured von-Willebrand factor (VWF) leads to an increased binding of VWF molecules to normal platelets, which regularly results in thrombocytopenia in pregnancy. Only few systematic observations in patients with type 2B VWD in the perinatal period have been reported in the literature. Six spontaneous deliveries in two sisters with type 2B VWD are reported. The first patient did not show any bleeding complications in five vaginal deliveries without any factor replacement therapy. The second patient showed a massive haemorrhage on the third postpartum day after administration of factor VIII-VWF concentrate replacement therapy (Haemate(R) HS), only on the day of delivery. No neonatal complications were reported. The clinical management of pregnancy, delivery and puerperium in patients with type 2B VWD requires close collaboration of experienced obstetricians, haematologists, anaesthesiologists and paediatricians. During labour and delivery, but especially in puerperium, there is a significantly increased risk for haemorrhage. Vaginal delivery is generally safe, but the incidence of postpartum haemorrhage is 30 %. These bleedings may be extremely severe. The danger of postpartum bleeding complications cannot be predicted with certainty, neither by past history of bleeding episodes or haematological laboratory tests of VWF activity levels. Hence, in all patients factor VIII-VWF concentrate replacement therapy should be initiated already in the first stage of labour. Post partum replacement therapy along with effective uterotonic therapy should be continued at least for seven days. With this treatment bleeding problems may be largely prevented. The decision to perform epidural block in labour and delivery must be assessed depending on individual risk factors.

Adult↗

Effect of hemilabyrinthectomy on monoamine metabolism in the medial vestibular nucleus, locus coeruleus, and other brainstem nuclei of albino and pigmented rats.

We compared in albino and pigmented rats the early effect of unilateral labyrinthectomy (UL) on the concentrations of monoamines (norepinephrine, dopamine, serotonin) and their respective metabolites--3-methoxy,4-hydroxyphenylglycol (MHPG), 3,4-dihydroxy-phenylacetic acid (DOPAC), and 5-hydroxyindoleacetic acid (5HIAA)--in medial vestibular nuclei (MVN), locus coeruleus, raphe dorsalis, and cochlear nuclei. The study was conducted 6 hours after UL in both strains, differing by the functional optokinetic responses of their central vestibular neurons and the time-course of their vestibular compensation. The results show that the monoaminergic changes are different in the two rat strains. In the MVN of albino rats, there was a bilateral increase of MHPG and an ipsilateral increase of dopamine suggesting activation of norepinephrine synthesis and metabolism, whereas no such changes were observed in the MVN of pigmented rats. On the other hand, the simultaneous increase of norepinephrine and DOPAC observed in the contralateral locus coeruleus of albino rats suggested enhanced norepinephrine synthesis, whereas in pigmented rats the decreased norepinephrine content found in the ipsilateral locus coeruleus might reflect an earlier strong stimulation of NE release. These biochemical results confirm the relevant role of locus coeruleus noradrenergic innervation in vestibular compensation and also point out the involvement of norepinephrine of the MVN in the early stages of this process. The different strain-related noradrenergic responses observed on the 6th hour suggest that the involvement of central norepinephrine, particularly from locus coeruleus innervation, may be more crucial and more sustained in the albino than in pigmented rats. No serotonin and 5HIAA changes were found in either brainstem nuclei of albino rats. In contrast, the increase of the ratio 5HIAA/5HT observed in raphe dorsalis, in ipsilateral locus coeruleus, and in both sides of MVN of pigmented rats suggested that UL induced an extended and enhanced utilization of 5HT in this strain.

Albinism↗

Acetylcholinesterase activity changes in medial vestibular complex after hemilabyrinthectomy in the rat.

Acetylcholinesterase (AchE) activity was studied in pigmented rats 6 h to 1 y after hemilabyrinthectomy. A strong reduction of this activity was localized in the rostrocaudal extent of both the prepositus hypoglossi nucleus and the medial vestibular nucleus (that is, medial vestibular complex: VCm) ipsilateral to the lesion 6 h after the lesion. This deficit persisted within some areas dispersed throughout this complex 3 w and 1 y postoperatively. This result supports the hypothesis that the asymmetry of AchE activity in VCm could be necessary for vestibular compensation and provides an additional model for functional plasticity in the central nervous system.

Acetylcholinesterase↗