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Biomedical subjects

T Yamadori

Publications and source records attributed to T Yamadori.

8 recordsLinked to original sources

Electron microscope study on the contact of neural crest cells in the early stage of migration in bantam embryos.

The early stage of migration of neural crest cells was observed in the mid-brain level of bantam embryos (5-somite stage to 15-somite stage) by transmission) electron microscopy. It was confirmed that the migration of the neural crest cells starts at the stage of 7-8 somites and ends at the stage of about 14 somites. During this period, not only the contact of migrating crest cells with each other but also the contact between migrating cells and superficial ectodermal cells and/or neural tube cells was observed. Intercellular distance in those contact regions was 3-4 nm. The contact between the migrating crest cell and the basement membrane of the neural tube cell and of the ectodermal cell as well as the contact between the neural crest cell and the fibrillar structure in the environment was also seen. These findings suggest the possibility of transitory interaction for migration between neural crest cells with each other, between neural crest cells and cellular components of the environment where these crest cells migrate, and between neural crest cells and extracellular structures in the environment.

Animals

The directions of ciliary beat on the wall of the lateral ventricle and the currents of the cerebrospinal fluid in the brain ventricles.

The directions of ciliary beat on the wall of the lateral ventricle of the brain have been studied in the mouse by using a scanning electron microscope. As the studies on the directions of ciliary beat on the wall of the third and fourth ventricles were previously completed, a series of studies of the whole ventricular system has now been completed. The pattern of directions of the beat in the brain ventricular system was always the same in every individual examined in the series and this pattern was not contradictory to the anticipated flow of the fluid. Above all, the cilia on the wall of the brain ventricles beat spontaneously. Considering these facts, it was concluded that the ciliary beat has a close relationship with the flow of the cerebrospinal fluid, and conversely the detailed flow of the cerebrospinal fluid within the whole ventricular system was inferred from the ciliary beat.

Animals