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Biomedical subjects

Matthias Graw

Publications and source records attributed to Matthias Graw.

4 recordsLinked to original sources

Lateral angle: a method for sexing using the petrous bone.

We report on the results of applying the so-called lateral angle method for sex determination on skeletal remains. The lateral angle denotes the angle of the internal auditory canal in relation to the medial surface of the petrous part of the temporal bone. The method involves making a small cast of the proximal part of the internal acoustic canal and determining the angle at which the canal opens up to the surface of the petrous bone. The method has the great advantage of utilizing one of the sturdiest bone elements of the human skeleton, and may thus be especially suited for analyses of very fragmented skeletal remains or cremated bones, where the petrous bone may still be readily recognizable. The method was tested using a forensic sample of 113 petrous bones with known sex. Intra- and interobserver testing was also performed. We found a statistically significant difference in angle size between males and females (mean angle size of males, 39.3 degrees ; mean angle size of females, 48.2 degrees ; P < 0.001). There was no bilateral difference in angle size. In blind trials, 83.2% of petrous bones were assigned to the correct sex. We also tested the lateral angle method against an archaeological skeletal sample. True sex was not known for this sample; instead, sexing had been carried out by assessing pelvic and cranial morphology in independent trials. We found a higher concordance between the lateral angle and "pelvic" sex than for lateral angle and "cranial" sex. Finally, we note that subadult sexing may also be possible with this method.

Adult↗

Decomposition of buried corpses, with special reference to the formation of adipocere.

The unrestrained decomposition of a corpse involves the consecutive processes of autolysis, putrefaction and decay. Ideally, decomposition is completed within the regular resting time (15-25 years) and leads to the entire skeletalisation of the corpse. Adipocere, a greyish fatty substance formed during decomposition, is regarded as a spontaneous inhibition of post-mortem changes; it makes the corpse almost entirely resistant to decomposition and makes it impossible to use the same graves again. This creates problems for local governments with regard to the generally growing demand for burial ground. Apart from corpse-specific characteristics (e.g. sex, age, physique, cause of death), method of burial (e.g. material of the coffin, depth of grave, individual or mass grave, clothing) and time of burial, the conditions of the resting place (geology, topography, soil properties and frequency of use, air, water, and heat budget), in particular, have a special impact on adipocere formation. This study summarises the present knowledge on this phenomenon, combining results gained both in forensic medicine and in geosciences.

Cadaver↗

[Possible applications of Y chromosome STRs in examination of abortion tissue].

By application of Y-chromosomal STRs, DNA analysis of abortion material can be considerably facilitated since great excess of maternal DNA is tolerated without disturbing the Y-STR amplification. If paternity can't be excluded on the basis of the Y-STR haplotype, further examinations must follow, e.g. autosomal STR analysis. For this purpose, histological preparation of the abortion tissue might still be necessary. Different Y-chromosomal haplotypes of embryo and putative father usually lead to an exclusion from paternity. Based on four case examples, the feasibility of this method is discussed.

Abortion, Legal↗

[The numerical Hatze-model: also qualified for calculations on children?].

The aim of this study was to find out whether the Hatze-model, which is specifically designed for adults, is suitable for calculations on children as well. By means of that program it is possible to calculate various parameters of the human body. After the collection of data and analysis of the results according to Hatze it becomes evident that this model provides good results only for the calculation of the total body mass. As regards the body segments, there are significant under- and overestimations. The same applies to the calculation of mean body density. Indeed there is a significant gender dimorphism indicating that girls have a higher fraction of body fat than boys. However, the values are far below those described in the literature. Due to the formula, the values of the centres of gravity are linear and congruent in both sides of the body. Interpretation of the results is difficult, as there are no valid reference values. Furthermore the program is not able to take characteristic shapes and proportions of children into account. For this reason 88% of the children are defined as either pregnant or obese. In summary, the study shows that the present model should not be used to calculate children and the human models have to be designed specifically for children.

Accidents, Traffic↗