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F Hiraide

Publications and source records attributed to F Hiraide.

6 recordsLinked to original sources

Alkaline phosphatase activity in the ganglion cells in and near the temporal bone.

The distribution pattern of alkaline phosphatase was studied in the ganglion cells in and near the temporal bone of some mammals. No or extremely weak activity of alkaline phosphatase was observed in or near the spiral and vestibular ganglion cells of the bat, rat, cat, and monkey. However, intense to moderate enzyme activity was noted exclusively in the peripheral areas of the spiral and vestibular ganglion cells of the guinea pig. The enzyme activity was also demonstrated in the nerve fibers at some distance from both axonal and dendritic processes of the spiral and vestibular ganglion cells of the guinea pig. Trigeminal and geniculate ganglion cells of all mammals examined showed intense to moderate enzyme activity in their capsular cells. There is a marked difference in the phosphate metabolism in the capsular tissues of the ganglion cells in or near the temporal bone of various mammals.

Alkaline Phosphatase

Sudden deafness. A histopathological study.

Histopathological studies were performed in the temporal bones from a 77-year-old woman who had bilateral sudden deafness 31 years before her death. The common findings in both cochleas were atrophy of the organ of Corti and stria vascularis, and degeneration of the tectorial membrane. Pathology of the tectorial membrane consisted of atrophy and droplet formation of the middle and marginal zones. In one area, an atrophied tectorial membrane was lifted up by a mass on the limbus. The saccular wall in the left temporal bone was ruptured. There was no pathology in the vascular system in the labyrinths except for moderate degeneration of sensory epithelium. The pathogenesis of sudden deafness was discussed in the light of the present findings. Alteration of the tectorial membrane seemed to be the main factor as a possible cause of sudden deafness. Histopathological findings were reviewed from the literature.

Adult

Alkaline phosphatase activity in the inner ear blood vessels of some mammals.

The distribuation pattern of alkaline phosphatase in small blood vessels was studied histochemically in the stria vascularis and spiral ligament of various mammals. No or extremely weak activity of the enzyme was demonstrated in the walls of the blood vessels in bat and rabbit, while moderate to intense activity was found in guinea pig, cat, squirrel monkey and man. There was a species difference in the phosphate metabolism in the walls of the inner ear blood vessels.

Alkaline Phosphatase

Alkaline phosphatase activity in the inner ear of fetuses, newborn and adult guinea pigs.

The distribution pattern of alkaline phosphatase in the inner ear of fetuses, newborn and adult guinea pigs is described. In the inner ear of fetuses, remarkable alkaline phosphatase was noted throughout the entire tissue of spiral ligament, statoacoustic nerve fibers and the wall of small blood vessels. In newborns, however, less enzyme activity was seen in the spiral ligament and statoacoustic nerve. In adult guinea pigs, no enzyme activity was detectable in the spiral ligament and statoacoustic nerve fibers except for the wall of small blood vessels and efferent nerve fibers. It is evident that the distribution pattern of alkaline phosphatase is altered during the development of the inner ear of the guinea pig.

Alkaline Phosphatase

The effects of the vacuum on vascular permeability of the middle ear.

Following local application of various degrees of negative pressure to the middle ear, the authors observed changes in vascular permeability in guinea pigs, using Majno's vascular labelling technique. Increased permeability and effusions were seen in all experimental middle ears. Any pressure below -5 mm of mercury induced middle ear effusions. Accordingly, a decrease in pressure developed in the middle ear cavity may cause transdation of serum drawn from the submucosal vessels, resulting in fluids in the middle ear of aero-otitis. In such a circumstance, mast cells which are easily influenced by atmospheric pressure may be involved in increasing vascular permeability.

Animals