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Biomedical subjects

S V Cowper

Publications and source records attributed to S V Cowper.

4 recordsLinked to original sources

Wound healing in the early chick embryo studied by scanning electron microscopy.

A simple incision was made in the early chich embryo (stages 3-5) are pellucida endoderm and its subsequent healing studied by scanning electron microscopy (SEM). Initially the wounded edges of the endoderm layer curl towards the ectoderm creating a gaping slit. The endoderm cells adjacent to the slit from large mounds probably in response to a loss of substrate and the trauma of the incision. Healing begins as the endoderm cells direct processes across the underlying cell layers and the two cut edges move towards one another. Many intervening mesoderm cells have cup-shaped processes. As the two endoderm edges meet in the corners of the wound, the wound outline changes to an oval shape. After 2 hours the wound outline is changed to a slit with the cut edges contracting in one or two areas. The cup-shaped mesoderm processes remain in the slit until the wound is healed primarily by endoderm cell movement.

Animals↗

Early venous thrombosis: A scanning electron microscopic study.

The passage of a minimal electric charge was used to initiate thrombosis in rabbit femoral veins, and the events occurring during formation of the thrombus were observed using scanning electron microscopy. Thrombosis began to occur within ten minutes after passage of the charge, upon an apparently unaltered endothelium. The first event was the laying down of a fibrin meshwork and this was shortly followed by the appearance of regularly arranged platelet clumps.

Animals↗

A transmission and scanning electron microsope study of primary neural induction.

Normal primary neural induction has been further studied by TEM and SEM. A single mesoderm cell is usually in contact with several ectoderm cells. The mesoderm cells are also contacting other mesoderm cells. It is suggested that ectoderm cells are induced in groups and that induction is synchronized by these contacts. At the points of contact between mesoderm and ectoderm cells cytoplasmic changes are present in the induced tissue.

Animals↗

Primary neural induction as studied by scanning electron microscopy.

Normal primary neural induction has been studied by scanning electron microscopy and the results compared with those obtained by TEM. Mesoderm cells are usually in contact with several other cells, both mesodermal and endodermal in origin. By SEM the ectoderm layer has been shown to be in contact with the underlying mesoderm cells. Tufts of fibrous basement membrane are also present between the two cell types. TEM specimens also show an intermediate basement membrane.

Animals↗