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Biomedical subjects

R D Rawson

Publications and source records attributed to R D Rawson.

At least 19 recordsLinked to original sources

Scanning electron microscopic analysis of skin resolution as an aid in identifying trauma in forensic investigations.

The forensic investigator is frequently confronted with cases that present with wounds and blunt force trauma. Presently, the forensic investigator depends upon previous experience and further investigative deduction of the crime scene to analyze these injuries. Although not readily apparent to the naked eye, many skin tissue injuries can be visualized with scanning electron microscopy (SEM). This study was designed to establish skin trauma resolution using SEM in various skin preparations. Tissue trauma was induced on leather, preserved skin, fresh skin, and living skin using dies of varying thread size. Calibrated pressure forces in pounds per square inch (psi) were applied and impressions made using vinyl polysiloxane. Positive replicas of the tissues were prepared for SEM using isocyanate resin. After sputter coating the cast with 35 nm of gold-palladium, electron micrographs were generated using a Jeol JSM-5310LV scanning electron microscope. To establish resolution, thread widths of 52, 104, and 208 threads per inch (tpi) and trauma forces of 150, 200, and 250 psi were used to produce the impressions. Microgrooves that were identified on the die threads were analyzed. The optimum pressure for resolution studies was 150 psi using the 52 tpi die on the leather sample (4.67 +/- 0.88 microm, p = 0.046 and 0.025, respectively, by ANOVA). The resolution was compared to that of leather using preserved, fresh, and living skin. The resolution in preserved and fresh skin was less than for leather (9.00 +/- 1.73 and 10.5 +/- 4.5 versus 4.67 +/- 0.88 microm, p = 0.09 and p = 0.20, respectively). Living skin resolution was 3 microm at 52 tpi and 100 psi. Various implements of blunt force trauma were also examined using the leather sample. Time after trauma resolution was examined at 0 (3 microm), 5 (6 microm), 10 (8 microm), and 20 (9 microm) min in living tissue. A comparison between the microgrooves on the die replicas and the tissue trauma impressions revealed striking agreement for both linearity and resolution. Analysis of the microgrooves suggests that discrete morphological characteristics are seen in skin tissue traumas. This method could expand the tools available for the forensic investigation of blunt force trauma.

Cadaver↗

Computers in forensic dentistry.

The use of computers in forensic dentistry has mirrored the use of computers in dentistry in general. There has been a rapid acceptance and use of computers for management of all front-office and many clinical procedures. Their use has presented new tools for solving difficult forensic problems and has created new concerns regarding their application in general dentistry. The accepted uses of computers in dentistry and forensic dentistry are presented along with suggestions for future directions.

Bites, Human↗

Computerized axial tomography as an aid in bite mark analysis: a case report.

A case is presented to demonstrate the use of computerized axial tomography (CAT) to develop precise registration of incisal edges for comparison to bite marks. Emphasis is drawn to the availability of CAT Scanning equipment and the importance of understanding its use as an adjunct or alternative to already accepted methods of incisal registration.

Bites and Stings↗

Vascular penetration following intraligamental injection.

The potential for inadvertant intravascular injection of a local anesthetic solution with the intraligament injection syringe is described. The spread of solution is radiographically demonstrated, and precautions during the use of the procedure are suggested.

Adult↗

Classification of human breast morphology important to bite mark investigation.

There is a great range of variability in human breast size and resiliancy that may have an effect upon the interpretation of bite marks. A proper understanding of the normal range of breast morphology and a system of classification is necessary for an understanding of distortion effects, as well as the precise communication of those effects to others. A classification is given for the morphology of the female human breast following a review of the literature.

Adolescent↗

Statistical evidence for the individuality of the human dentition.

A general population sample of bite marks in wax is used to demonstrate mathematically the individuality of the human dentition. The general principles of probability are discussed and applied to the analysis of teeth using a precise method of measurement. The unique nature of the human dentition is confirmed.

Bites and Stings↗

Incidence of bite marks in a selected juvenile population: a preliminary report.

A study of the frequency of bite marks among sheltered children was conducted for a period of three months in the juvenile care facilities in Las Vegas, NV. The study demonstrated an incidence of 1 545 bite marks per 100 000 population. Analysis of the age, sex, and location of bite marks is presented. The study demonstrated an incidence comparable to diseases such as gonorrhea.

Adolescent↗

Computer comparison of bitemark patterns in identical twins.

Individual dental patterns have been explored by direct comparison of test bites from several sets of young adult monozygotic twins. For this purpose, epoxy models from the dentition of each twin were used for experimental tooth indentations and converted to radiographic contact profiles. These sharply outlined radiographic bitemark patterns were then subjected to a computerized comparison, involving electronic storage and correlations. Despite similar developmental morphology of individual teeth, there were significant variations between the twins in each pair with respect to the individual arrangements of the anterior teeth in the dental arch; the teeth had distinctly different rotations, sometimes reflecting a mirror image of the twin-pair bitemark patterns. Thus, the computer comparison made it clear that in terms of occlusal arch form and individual tooth positions, even so-called identical twins are in fact not dentally identical.

Adult↗