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J Hirama

Publications and source records attributed to J Hirama.

5 recordsLinked to original sources

Anisocoria--a pupillary sign of hippocampal lesions: an experimental study in the cat by using neurotoxins.

Pupillary inequality developed after unilateral lesions of the hippocampal formation (HF) of the cat. Lesions were made by an injection of a small amount of colchicine, ibotenic acid or kainic acid. In all anisoric cats, the pupil on the side of the lesions was invariably smaller than its partner. Evident pupillary inequality developed in the cats with dorsal HF lesions. Although there was a considerable variation in the extent and the location of lesions among these cats, the involvement of the giganto-pyramidal CA 3-2 appeared very responsible for the development of the pupillary sign. However, an evidently anisoric cat hat a lesion affecting only the prosubiculum and the subiculum in the posterior part of the dorsal HF. Despite a large involvement of CA 3-2 with or without coincident injuries to CA1, the prosubiculum and the subiculum, only slight pupillary inequality developed following ventral HF lesions. Evident anisocoria in the cats with large dorsal HF lesions disappeared after bilateral cervical sympathectomy, implying that the asymmetry of sympathetic nervous activity might be critically involved in the development of the pupillary sign. The hippocampo-spinal pathway relayed by the lateral septal nucleus and, then, by the lateral hypothalamic area to terminate in the intermedio-lateral cell column of the spinal cord was considered to be most concerned with anisocoria caused by HF lesions.

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Cornu ammonis of the cat: lack of a separate field of CA2.

Close comparison of Timm or Nissl stained adjoining sections of the cat cornu Ammonis (CA) disclosed the lack of a separate CA2 field, which was defined as a field of CA characterized by giant pyramids similar to those of CA3 and by absence of mossy fiber inputs in mice, rats, monkeys and humans. In the cat CA, mossy fiber terminals stained by Timm's method filled the hilar region (CA4) of the dentate gyrus and extended through the stratum pyramidale and/or stratum lucidum of the giant pyramidal part of CA as far as the border with CA1, which was clearly delineated by sudden appearance of smaller pyramids. Thus, there was no separate giant pyramidal field devoid of mossy fiber inputs in the cat CA. Unlike other mammals, some parts of CA1 also received mossy fiber projections in the cat.

Animals↗