PubMed Health⌕ Search

Biomedical subjects

S Reese

Publications and source records attributed to S Reese.

At least 19 recordsLinked to original sources

Immunopathology of recurrent uveitis in spontaneously diseased horses.

Equine recurrent uveitis (ERU) is the most serious eye disease in horses worldwide. Despite the fact that ERU is generally considered to be immune mediated, a detailed description of the histopathology of the posterior part of ERU eyes is lacking. Here, we examined sections of paraffin-embedded eyes using histological and immunhistological methods. Twenty seven eyes of 20 horses with ERU and 30 eyes of 15 healthy control horses were included in this study. We could consistently demonstrate an involvement of the retina and the choroid in all examined eyes of horses with spontaneous ERU. In eyes with minimal histopathological changes, the infiltrates consisted almost exclusively of T-cells. Histopathological changes start with the destruction of the photoreceptor outer segments, which often leads to focal retinal detachment. In more severely affected eyes, there is additional disintegration of the ganglion cell layer and the inner nuclear layer. In almost all examined eyes, lymphoid follicle formation could be demonstrated. Typical localizations of these follicles were the iris stroma and the choroid underneath the transition zone of the retina without photoreceptor cells to the region containing photoreceptor cells. These follicles consist of a T-cell rich periphery with a small center of CD3-negative lymphocytes. In cases with extreme histopathological changes, the retinal architecture is widely disintegrated with massive infiltration of the retina, the choroid, and the ciliary body by several types of inflammatory cells. Necrotic remnants of the retina are end-stage findings and there is only a minor inflammatory infiltration left. This study provides clear evidence that the retina is involved in all stages of ERU. Inflammation is mainly driven by T-cells as T-cells were demonstrated in mild stages of the disease and are also the predominating cell type in all other stages of ERU.

Animals↗

Topography, structure and function of the patella and the patelloid in marsupials.

The patella is a sesamoid bone that is found in most mammals and is regularly located in the insertion tendon of the quadriceps femoris muscle. Up to now, only a little has been known about the topography, structure and function of the patella in marsupials. Therefore the stifles of 61 marsupials of 30 different species were studied by radiography, necropsy and light microscopy. It was found that only the family of bandicoots (Peramelidae) possessed a typical patella. The other species revealed a patelloid consisting of fibrocartilage. The structure of the patelloid revealed common characteristic features in the following families of marsupials: (1) Dasyuridae, Phalangeridae. Pseudocheriidae, and Potoroidae; (2) Burramyidae; (3) Phascolarctidae, Vombatidae, and Dendrolagus; and (4) Superfamily Macropodoidea (except Dendrolagus and Potoroidae). Our results imply that the degree of differentiation in the fibrocartilage of the patelloid was strongly correlated to the mechanical forces acting on the patelloid which are a result of the specific kind of locomotion and the way of life. Generally the bony patella does not belong to the phylogenetic programme of the marsupials--with the exception of the bandicoots which are very closely related to the subclass of placental mammals (Eutheria).

Animals↗

Preservation of canine and feline corneoscleral tissue in Optisol GS.

OBJECTIVE: The objective of the research was to determine whether preservation of corneal tissue of dogs and cats in Optisol GS (OGS, Bausch & Lomb Surgical, Irvine, CA, USA) is feasible for subsequent use in penetrating keratoplasty. ANIMALS: The study subjects were 33 dogs and 31 cats with no gross corneal pathology, which had been euthanised by pentobarbital overdose for reasons unrelated to this project. PROCEDURE: One cornea of each pair was evaluated immediately and the other was evaluated after storage in Optisol GS for either 5, 10, 15 or 20 days. The most important criterion was the preservation of the endothelial cell layer. RESULTS: Corneoscleral tissue of cats survived longer, when preserved in Optisol GS at 4 degrees C, than that of dogs. Light and scanning electron microscopy revealed good preservation of the endothelial cell layer for up to 10 days in dogs and up to 15 days in cats.

Animals↗

Defined contribution, the undefined concept.

A new method for financing employee health benefits is said by many to be the hope of the future, but lack of understanding and a heavy dose of employer paternalism have kept the discussion theoretical.

Attitude to Health↗