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Phenoxyethanol as a nontoxic substitute for formaldehyde in long-term preservation of human anatomical specimens for dissection and demonstration purposes.

Formaldehyde has recently been declared a potential carcinogen. Occupational health authorities throughout the world are therefore likely to put stricter regulations to its use also within anatomical disciplines. We have been able to reduce the atmospheric concentration of formaldehyde in our dissection rooms to below the detection limit of a conventional Dräger tube multigas analyzer (i.e., below 0.5 ppm or 0.6 mg formaldehyde/m3 air), by extracting previously formaldehyde-fixed material for more than 3 months in 1% phenoxyethanol in tap water. In this fluid our material has remained soft and flexible with a consistency and color retention suitable for dissection and demonstration purposes for up to 10 years. Fungal attacks are rare and we have been unable to raise bacteria from such specimens. Even the microscopical structure of most tissues remains satisfactory after 5 years in 1% phenoxyethanol. The unpleasant and irritating smell traditionally felt in dissection rooms is almost absent in our facilities, but some of our students still mention slight odor, headache, drowsiness, and mild eye, nose, and throat irritation during their dissection practice periods.

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Technique for reconstituting fixed cadaveric tissue.

Dissecting room cadavers used over a prolonged period inevitably become desiccated, especially in well-ventilated surroundings. It is particularly desirable that dissections used for end-of-year examinations be restored to their original condition. We describe here a quick and simple procedure designed to restore neglected specimens to their former condition at dissection. Specimens were either soaked for 24 hr in a standard solution of fabric conditioner or sprayed with the same standard solution. The specimens were then wrapped with muslin soaked in the conditioner and covered with polythene sheeting for 1 week. The results obtained were excellent and much superior to a short soak in water. The results further indicate that this technique may have other applications in the preparation of fixed histological material.

Cadaver↗

Polyurethane elastomer: a new material for the visualization of cadaveric blood vessels.

A multitude of various materials are available for the visualization of cadaveric vessels, ranging from natural materials like gelatin and latex to synthetic materials like silicone rubber or acrylates. To achieve a detailed overview of the vascular architecture in microvascular studies in experimental flap surgery, the injected material should have low viscosity to assure perfusion of even the smallest vessels. In addition, the material ideally should have either no or only minimal shrinkage, and should harden within a reasonable time, but retain sufficient elasticity and resistance to withstand tearing off the delicate vessels during subsequent dissection or casting. Because none of the available injection materials adequately combines these attributes, we evaluated the polyurethane elastomer "PU4ii" in latissimus dorsi muscles as a new material for the visualization of cadaveric vessels in comparison with the frequently used silicone rubber. The dissection of vessels injected with PU4ii proved easy largely because of its exceptional hardness. Even if not visible before dissection, the completely perfused vessels were easily palpated in the surrounding fat or muscle tissue of the microsurgical latissimus dorsi model. Despite the significantly higher hardness of PU4ii over silicone rubber (98 Sh-A vs. 12 Sh-A), PU4ii proved enough elasticity (20-25 N/mm(2) E modulus) and a high tear resistance (64-68 N/mm vs. 15 N/mm) preventing breakage during dissection even within the smallest vessels. In contrast to silicone rubber (and latex or gelatin), the high corrosion resistance and form stability of PU4ii also allowed building of casts for qualitative examination by scanning electron microscopy and quantitative analysis of the vessel density using micro-computed tomography with accurate 3D representation. In this study we show that PU4ii has physical characteristics that make it a multi-purpose material that allows at the same breath an excellent gross visualization of the architecture of cadaveric blood vessels as well as a detailed evaluation of casts by modern microscopic and or radiologic tools. Thus, the new polyurethane elastomer PU4ii is in many respects superior to the widely used silicone rubber and can be strongly recommended as a visualization material for a comprehensive evaluation of cadaveric blood vessels in microsurgery.

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Entomofauna of buried bodies in northern France.

Autopsies of exhumed cadavers can reveal important evidence for clarification of medical insurance and social issues. This study concerns insects sampled on 22 exhumed cadavers in the Lille area. For each corpse, the species and the stages of development were noted, as well as the time elapsed after burial, the location of the cemetery, the stage of decay and possible preservation treatment. A total of eight Diptera and two Coleoptera species were sampled on the corpses. The relationships between entomofauna and conditions of burial are discussed. Three species were regularly found because of their preference for underground environments or closed environments: Conicera tibialis, typically associated with buried bodies, Leptocera caenosa which is known to be associated with human faeces, water closets, caves and cracked soil pipes, and Ophyra capensis, sometimes found on human bodies kept indoors for several months, where blowflies have not had access. Triphleba hyalinata, which is associated with human bodies in wooden coffins, was found only twice.

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