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A M Fitzgerald

Publications and source records attributed to A M Fitzgerald.

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A modern translation and interpretation of the treatise on burns of Fabricius Hildanus (1560-1634).

At the beginning of the seventeenth century, some surgeons were as interested in the classification, prognosis and treatment of burns as their successors are at the close of the twentieth century. We present extracts from our translation of the visionary treatise on Burns by Fabricius Hildanus (Wilhelm Fabry), the "Father of German surgery", and show how some of the present day approaches to burns have their origins almost 400 years ago.

Burns

A picropolychrome staining technique applied to Dupuytren's tissue.

Although the histology of Duputyren's tissue is well-documented, conventional stains do not distinguish between the different types of collagen which biochemistry and immunochemistry suggest are present. Duputyren's specimens [nodules (n = 26), cords (n = 15) and dermofasciectomies (n = 6)] were stained with haematoxylin and eosin, Van Gieson's Mallory's, Masson's, and Herovici's picropolychrome stain, and examined for both cellularity and collagen staining characteristics. All stains illustrated the marked cellularity of the nodules, contrasting with a paucity of cells within the cords. The first four stains demonstrated uniformity of the collagen staining within the tissues. Herovici's picropolychrome, however, showed distinct staining patterns for the dermis, nodules and cords, with both purple/red and blue areas. Other studies suggest that those fibres stained purple/red and blue are types I and III collagens respectively. These findings may shed further light on the tissue of origin of Duputyren's disease.

Aged

Newborn transport in South Australia, 1978-80: experience of the Queen Victoria Hospital, Adelaide.

389 infants were transported to the Queen Victoria Hospital, Adelaide between 1978 and 1980. Twenty-three percent (99) of the infants were ventilated, and 49% (189) received intravenous or intra-arterial therapy. Fifty-six percent (217) of the infants required transport because of prematurity; 11% (46) because of perinatal asphyxia in babies weighing more than 2,500 g. Only one baby died during transport, while 14% of the babies died subsequently. A core temperature of less than 36 degrees C in either hospital is important; a cold baby is 3.5 times more likely to die (X2=25.46, P less than 0.001). The transport of babies over distances greater than 300 kilometres is peculiar to Australia. Significantly more of these babies were cold than those retrieved from hospitals near Adelaide (X2=4.7, P less than 0.05), and significantly more died. Difficulty in transferring mothers in preterm labour may be another reason these babies did relatively badly. Better education and facilities will be important if we are to improve their survival chances.

Asphyxia Neonatorum

Ambulation without legs.

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