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Biomedical subjects

R L Jantz

Publications and source records attributed to R L Jantz.

57 records · Page 4Linked to original sources

Temporal changes in limb proportionality among skeletal samples of Arikara Indians.

Relative lengths of the radius, humerus, tibia and femur were examined in children obtained from ten archaeological sites in South Dakota. The sites range in time from about AD 1600 to 1830, and all are attributed to the Arikara Indians or their immediate ancestors. Changes in long bone proportions were examined by regressing the log of each bone on the log of the sum of all four bones. The regression coefficient which results represents the relative rate of change of the bone in relation to the sum of all bones. Proximal bones were found to increase faster than distal bones in both upper and lower limbs, and lower limbs increase faster than upper ones. The regression coefficients for tibia and femur exhibit significant heterogeneity over the ten sites, indicating that the pattern of proportional changes with growth is not the same for all groups. Furthermore, variation in regression coefficients among sites is temporally patterned, early sites being characterized by relatively longer femora and shorter tibiae, while the reverse is the case for the late sites. The temporal nature of relative femur-tibia lengths suggests that this is an adaptive change possibly with both genetic and nongenetic components.

Analysis of Variance↗

The influence of sex chromosomes on finger dermatoglyphic patterns.

Finger pattern frequencies for patients exhibiting various sex chromosome aneuploidies were obtained from literature sources. The sample consisted of 141 XO, 500 XX, 68 XXX, 9 XXXX, 500 XY, 93 XYY, 30 XXYY and 6 XXXXY. Pattern frequencies were converted to radial and ulnar loop frequencies, and these in turn were used to construct four variables; pattern intensity; radial-ulnar difference; radial loop asymmetry; and ulnar loop asymmetry. The relationship between the dermatoglyphic variables on to the sex chromosomes was examined by regressing the dermatoglyphic variables on to the number of X and Y chromosomes. Radial-ulnar difference and radial loop asymmetry showed the strongest relationship with the number of X and Y chromosomes. The X and Y chromosomes had about equal influence on radial-ulnar difference, but the Y had a stronger effect on radial loop asymmetry. It is postulated that sex chromosomes influence dermatoglyphic development by controlling tissue sensitivity to fetal sex steroids.

Aneuploidy↗

Variation among European populations in summary finger ridge-count variables.

The magnitude of ridge-count variation and its spatial and linguistic patterning was examined using 82 male and 75 female samples from Europe. Variables were summary measures: sum of radial counts (radial) sum of ulnar counts (ulnar) and sum of larger counts (total ridge-count or TRC). Dermatoglyphic parameters were compared with those derived from classic nuclear gene markers. Fst values computed from ridge-counts range between 0.016 and 0.025, relatively high when compared to classical genetic polymorphism. Ridge-count distances show significant correlation with geographic distances but not with linguistic distances. Ridge-count distances show even higher correlation with blood marker distances, suggesting that, like blood polymorphisms, ridge-counts were strongly influenced by demic expansion of Neolithic farmers. The most differentiated populations in Europe are those of the North Atlantic and North Sea region, especially the Orcadians and Faroe Islanders. Certain Finnic speakers such as Lapps and Udmurts are also strongly differentiated. These same populations are frequent outliers in genetic analyses.

Dermatoglyphics↗