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Biomedical subjects

D J Ortner

Publications and source records attributed to D J Ortner.

7 recordsLinked to original sources

New approaches to the study of disease in archeological New World populations.

One of the objectives of paleopathology is to clarify the role of disease in the evolution of human groups. The recovery of DNA and immunoglobulins from archeological human skeletal tissue offers a method for enhancing and expanding our knowledge about the presence and significance of disease in past human populations. DNA also might reveal the presence of genetic disease. Immunoglobulins recovered from archeological bone indicate some of the diseases to which an individual was exposed during life. This information also provides supporting evidence for anatomical observations of skeletal disease. This is illustrated by the identification of treponemal antibody in an archeological skeleton that has gross lesions suggestive of treponematosis. Similar biochemical methods could be applied to other research problems to clarify the presence of various syndromes of the inflammatory erosive arthropathies, such as rheumatoid arthritis, in New World archeological populations. Some of these syndromes are associated with DNA sequences and specific proteins that are recoverable from archeological skeletal tissue.

Archaeology

Differences in intracortical bone remodeling in three aboriginal American populations: possible dietary factors.

Cross sections of intracortical bone revealed differences among three early American populations--Eskimo, Arikara, and Pueblo--in the frequency of a form of remodeling called, here, type II. This remodeling appears to occur exclusively within the walls of haversian canals of well-mineralized osteons. The populations are known to have differed in their nutrition. The Eskimo, with a high-protein diet, exhibited the most frequent type II remodeling, whereas the Pueblo, with a low-protein diet, showed the least. Type II remodeling probably reflects the physiological state of the group. Variation in frequency of classic intracortical bone remodeling was not apparent.

Adult

Disease and mortality in the Early Bronze Age people of Bab edh-Dhra, Jordan.

During the 1977 field season at the Early Bronze Age site of Bab edh-Dhra 92 individuals were recovered from underground shaft tomb chambers. Morbid conditions found in these skeletons include trauma, possibly two cases of tuberculosis, osteomyelitis, post-menopausal osteoporosis and congenital anomalies. Of the 92 skeletons recovered 56 (61%) were 18 years of age or older, 28 (30%) were between 1 and 18 years of age and 8 (9%) were less than one year of age.

Adolescent

The skeletal biology of the Virginia Indians.

Statistical analysis of one eastern and two western Virginia Indian skeletal samples reveals a general association between geographical and biological distance. However, the data suggest the importance of gene flow as a factor in minimizing local microdifferentiation. Females appear to contribute a disproportionate share to gene flow. This may be attributed to the widespread and apparently frequent practice of acquiring females and children through capture during recurring warfare.

Bone and Bones

Aging effects on osteon remodeling.

Analysis of partial cross sections of 101 human tibiae indicated that osteon remodeling in the outer cortex is affected by age. The frequency of resorption spaces remained constant throughout life suggesting no loss of osteoclast function with age. However, the frequency of both forming osteons and osteons which were structurally complete but not completely mineralized increased with age. This suggests that protein matrix synthesis by osteoblasts slows with age and that initial mineralization, possibly mediated by osteroblasts, and final mineralization, possibly mediated by osteocytes, becomes increasingly deficient with increasing age. The frequency of osteons which have dense (sclerotic) inner lamellae decreases with age. This supports a hypothesis that such lamellae are functional, perhaps representing a specialized, labile, mineral phase and that osteons having this feature become less frequent as part of the general degenerative changes associated with aging.

Aging

A precision microdissection procedure for undecalcified bone thin sections.

A procedure is described for removing osteons from undecalcified, thin sections of bone. The method involves the use of a microdrilling machine in combination with a micromanipulator. The procedure allows a substantial reduction in the time required for microdissection over previously described methods while permitting the irregular contours of osteons to be followed with precision.

Bone and Bones