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At least 37 records · Page 2Linked to original sources

[Effect of antihistaminic agents on the blood supply to the brain in stimulation of the vestibular apparatus].

It has been established in chronic experiments on intact rabbits by the hydrogen clearance method that stimulation of the vestibular apparatus leads to an appreciable increase in the overall brain blood flow and in the regional blood flow in the frontal, occipital and temporal areas of the brain along with the development of motion sickness. Intravenous injections of diprazine (1 mg/kg) and suprastin (2 mg/kg) noticeably reduce the brain vascular reactions during vestibular disorders, diminish or prevent the increased blood flow in the brain or in its individual areas, occurring in motion disease of animals.

Acceleration↗

Angular velocity of the slow phase in experimental and clinical lesions of the vestibular apparatus.

The authors present the results of their experimental and clinical observations on the occurrence of regularity in the course of angular velocity of the slow phase of nystagmus. They have found that the regularity is rather distinctly pronounced in peripheral lesions of the vestibular apparatus. This observation may be complementary to the interpretation of electronystagmographic recordings.

Adolescent↗

[Vestibular apparatus and hereditary hearing impairment].

Vestibular function tests in 33 cases of hereditary monosymptomatic symmetric sensorineural hearing loss do not show any significantly reduced excitability, but a mild difference between the groups with and without progression. A positive correlation is seen with the age of the children.

Child↗

[The vestibular apparatus of quail embryos in an experiment on the Kosmos-1129 biosatellite].

The light microscope was used to study serial sections of labyrinths of quail embryos incubated and reared during 12 d orbiting of Cosmos 1129. On recovery the embryos were aged 9, 11.5 and 12 days. No significant deviations in the development of the vestibular apparatus in flight species were noted as compared to the controls. Given this and our experimental data about in-space development of fish and amphibians we may deduce that hypo-g does not exert a noticeable altering effect on the vestibular embryogenesis. Nevertheless, it should be pointed out that in all otolith organs and semicircular channel ampules of the flight embryos cup-form neural endings innervating type I sensory cells were markedly swollen in contrast to the control. Earlier swollen cup-form nerve endings have been found in one adult rat after 7 days of space flight aboard Cosmos 1667. However, exposure in space does not bring about a substantial swelling of bud-like nerve endings which contact type II sensory cells. Thus, a conclusion may be drawn that spaceflight factors are liable to produce shifts in the type I sensory cell--cup-form nerve ending unit but they do not affect type II sensory cell--bud-like nerve ending unit to the extent when effects can be identified by light microscopy.

Animals↗

Correlation of high-resolution computed tomography and gross anatomic sections of the temporal bone: II. Vestibular apparatus.

High-resolution computed tomography (CT) of isolated temporal bones was performed in the transaxial, coronal, and sagittal planes at 1.5-mm intervals. The temporal bones were then sectioned at 2.0-mm intervals in planes parallel to the CT scans. The structures making up the vestibular apparatus were identified, and the planes in which each is best visualized were selected for the illustrations. The vestibule, oval window, tympanic cavity, and tympanic portion of the facial nerve are best seen in the transaxial and coronal planes; the arch of the superior semicircular canal in the transaxial plane and its limbs in the coronal plane; the arch of the posterior semicircular canal in the coronal and sagittal planes and its limbs in the transaxial plane; and the common crus in the sagittal plane. The horseshoe-shaped lateral semicircular canal is displayed in the transaxial plane, and the relationship of its lateral limb to the tympanic segment of the facial nerve is best demonstrated in the sagittal plane. The ampullae of all three canals can be appreciated equally well in all three planes.

Humans↗

[Dynamics of motor components of optokinetic nystagmus during exposure of the vestibular apparatus to angular accelerations].

The effect of angular accelerations on the optokinetic nystagmus was studied on 25 test subjects using a special vestibulo-optokinetic trainer rotated according to five programs and electrooculography. Angular accelerations were found to induce indirectly changes in the amplitude and time of the optokinetic nystagmus via the vestibular apparatus. Optimization of parameters of the optokinetic nystagmus was reflected in the criterion of positive difference + delta between angular velocities of the slow component of the nystagmus and optokinetic stimuli. It is postulated that the criterion + delta is a necessary factor in the organization of optimal time relations between optokinetic stimuli and central processes that are responsible for the final result--sensory image of movement.

Acceleration↗

[Effect of tranquilizers on animal resistance to adequate stimulus exposure of the vestibular apparatus].

The effect of tranquilizers on the intensity of vestibulospinal reflexes and motor activity was studied in 900 centrifuged albino mice. Chemically heterogenous tranquilizers (meprobamate, elenium, nicolit) were applied in therapeutic doses. Actometric studies have shown that the tranquilizers possess group capacity for increasing animal resistance to the action of adequate stimuli to the vestibular apparatus. Meprobamate has exhibited the most pronounced protective effect.

Acceleration↗

Extraterrestrial vestibular research, a new partial field of medical research into the human vestibular apparatus.

The first otologic professorial chair in the world was established by Politzer in Vienna as long ago as 1861. In 1914 an assistant of the 1st Vienna Ear Clinic with Politzer as its head, Barany, was awarded the Nobel Prize for Medicine for his fundamental investigations into the organ of equilibration and for his discovery of the caloric sensitivity of the semicircular canals. Since that time Barany is regarded as the founder of the physiology of the vestibular apparatus. During the period 1959 to 1963 a new conception of fundamental research into the vestibule was demanded and elaborated in Vienna with the postulate that, in all theoretical deliberations and practical experience, one should take into consideration that our experiments into the vestibule do not take place on a static platform but rather on a diversely moving one, namely the surface of the earth. This led to new findings in the field of research into the otolith apparatus. In 1962 it was discovered that the gravitation of the sun at the distance of earth-sun represents a supraliminal stimulus, namely both in the aphelion as well as in the perihelion position of the earth. In 1965 it was suggested in Vienna that a new branch of research into the vestibule should be established on an international level, the so-called extraterrestrial vestibular research. The importance of this new branch of research is discussed for all problems of orientation of human beings in space.

Aerospace Medicine↗