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Biomedical subjects

R Kidd

Publications and source records attributed to R Kidd.

At least 19 recordsLinked to original sources

Hominin first metatarsals (SKX 5017 and SK 1813) from Swartkrans: a morphometric analysis.

Two hominin metatarsals from Swartkrans, SKX 5017 and SK 1813, have been reported by Susman and Brain [1988. New first metatarsal (SKX 5017) from Swartkrans and the gait of Paranthropus robustus. Am. J. Phys. Anthropol. 79, 451-454] and Susman and de Ruiter [2004. New hominin first metatarsal (SK 1813) from Swartkrans. J. Hum. Evol. 47, 171-181]. They found these bones to have both primitive and derived traits indicating that, while being bipedal, these hominines had a unique toe-off mechanism. We have undertaken additional multivariate morphometric analyses, comparing the fossils to the first metatarsals of modern humans and extant apes. The largest proportion of discrimination lies in the different locomotor functions: apes on the one hand and the humans and fossils on the other. While the fossils have the closest affinity to humans, they have a unique biomechanical pattern suggesting a more facultative form of bipedalism. The implications of this are, while morphometric analyses do not necessarily directly capture the described primitive and derived traits, the associated functional pattern is held within the broader morphology of the bone.

Animals↗

Little foot and big thoughts--a re-evaluation of the Stw573 foot from Sterkfontein, South Africa.

The part of the fossil assemblage Stw573 consisting of some medial foot bones was initially reported by Clarke & Tobias (Science 269 (2002) 521). They found it to have both ape- and human-like qualities, being human-like proximally and ape-like distally. We have undertaken a re-examination of this pedal assemblage using a multivariate analysis; while we also found ape- and human-like qualities, they are in direct conflict with the original findings of Clarke and Tobias. We report an essentially ape-like morphology proximally and a human-like morphology distally; the talus and navicular were found to be ape-like and the medial cuneiform human-like. We also undertook a morphometric analysis of the medial cuneiform from the fossil assemblage OH8, as this was not included in the original OH8 study of Kidd et al (J Hum Evol 31 (1996) 269); this cuneiform was found to have a human-like morphology. Thus, the medial column findings from the two assemblages are very similar. This finding, coupled with the re-evaluation of the stratigraphy at Sterkfontein (Am J Phys Anthrop 119 (2002) 192), suggests that the two may have been contemporaneous. We also note that three broad patterns of modification have been identified, equating to proximal-distal lateral-medial (cranio-caudal) and dorsal plantar (posterior-anterior). It has not escaped our notice that these patterns are each controlled by specific genes or growth factors; we thus see a morphometric expression of our developmental past.

Animals↗

Ultrasonography of plantar soft tissues thickness in young people with diabetes.

AIMS: The aims of this study were to examine soft tissue changes in the skin and plantar aponeurosis of young people with Type 1 diabetes mellitus (T1DM) and to evaluate any relationship between any soft tissue changes, arch length, limited joint mobility (LJM) and plantar pressure. METHODS: The thickness of the skin on the plantar surface of the foot and plantar aponeurosis were examined using ultrasound in 216 young people with diabetes and 57 controls. Foot length, arch length, joint mobility, peak pressure and pressure time integrals were evaluated. RESULTS: Skin was not significantly thicker in the diabetic subjects. The plantar aponeurosis was significantly thicker in the diabetic subjects and was associated with foot size, male gender and subtalar joint (ST) LJM (P < 0.01). Males were nearly three times more likely to have thickened plantar aponeurosis. CONCLUSION: Soft tissue thickening in young people with T1DM affects the deeper structures on the plantar surface of the foot rather than the skin. Thickening of the plantar aponeurosis was associated with LJM at the ST joint and male gender, but was not associated with plantar pressure or arch height changes. Plantar aponeurosis thickening does not appear to alter foot mechanics in young people with T1DM.

Adolescent↗

Evolution of the rearfoot. A model of adaptation with evidence from the fossil record.

The evolution of the human foot presents an obfuscation: explanations for its occurrence and the exact nature of mechanisms of change are still not fully understood. This article outlines a model of adaptation from a primitive ape foot and presents this as a hypothesis. Evidence substantiating the hypothesis is then presented, which explains many of the large-scale features distinctive to the human foot. Further evidence is then presented that goes some way toward explaining the sequence of modification with first the lateral side becoming adapted for terrestrial function followed by the medial side. Paradoxically, this was hypothesized by Morton more than half a century ago in his "hypothetical prehuman foot," though it was not accepted favorably at the time.

Adaptation, Biological↗

Expression, purification, and characterization of a recombinant 5-lipoxygenase from potato tuber.

We have isolated a full length 5-LOX cDNA clone from potato cDNA library using degenerate primers designed from conserved sequences of LOXs. Sequence analysis and comparison of the deduced amino acid sequence revealed high homology to other plant LOXs. We have expressed the cDNA in Escherichia coli and purified the recombinant protein to electrophoretic homogeneity by anion exchange liquid chromatography followed by HPLC on a Mono-Q column. Substrate specificity of the purified recombinant protein revealed LOX activity towards linoleic, linolenic acid, arachidonic acids as substrates with linoleic acid being the best substrate. The relative LOX activity as well as the product profiles for the recombinant L1 5-LOX are comparable to values determined for the purified potato tuber 5-LOX. When the recombinant L1 5-LOX and the native peak-2 5-LOX (the most abundant isozyme) were compared on SDS-PAGE, single bands of apparently identical mass 97,000 Da, was observed, which agrees well with the L1 molecular mass calculated from amino acid sequences.

Arachidonate 5-Lipoxygenase↗

A novel limb-support system to reduce postural load in theaters.

Theatre nurses regularly stress their body when they support patients' limbs for prepping. This makes nurses vulnerable to back or upper limb pain. The Victoria Infirmary in Glasgow and the West of Scotland Department of Clinical Physics and Bio-Engineering, have developed an electrically braked limb support system to take the weight from the nurse.

Arm↗