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Biomedical subjects

W P Porter

Publications and source records attributed to W P Porter.

At least 19 recordsLinked to original sources

Behavioral and neurochemical changes associated with chronic exposure to low-level concentration of pesticide mixtures.

In order to assess behavioral and neurochemical changes resulting from pesticide exposure, food-restricted male weanling rats were exposed for 90 d to low doses (1 ppb-10,000 ppb range) of individual pesticides (aldicarb, metribuzin, or methomyl) or mixtures of them. During exposure, rats were trained to run a T-maze and tested for spatial discrimination reversal learning. At sacrifice, three brain regions (cortex, hippocampus, and neostriatum) were assayed for the neurotransmitters dopamine, acetylcholine, and serotonin. Animals treated with a mixture of two insecticides and one herbicide were found to have slower speeds in maze-running (motor control) and also had altered levels of choline in their neostriatums. Rats treated with one herbicide compound (metribuzin) took longer to learn on two reversals; this group also had a significantly lower acetylcholine/choline ratio in their hippocampus.

Aldicarb

The effect of haemolysis on certain canine serum chemistry parameters.

Haemolysis has been known to cause artefacts in certain canine serum chemistry parameters. These parameters are often used by researchers to detect toxicity in certain studies; haemolysis, therefore, can make serum chemistry interpretation very difficult. In order to determine whether a relationship existed between the level of haemolysis and certain canine serum chemistry parameters, haemolysis was artificially induced by adding a haemolysate of known haemoglobin concentration to serum specimens. A routine clinical chemistry profile was performed on each specimen. Statistical analyses were performed on the results to examine the relationship between level of haemolysis and serum chemistry results. Interpretation of serum chemistry results of haemolysed canine sera paralleled, in most cases, human historical data.

Animals

Critical radius of endotherms.

The critical radius effect for insulation, well known in the engineering literature, was used by other authors to explain the lack of insulation on newborn endotherms. If that effect existed in small animals, they would lose less heat if nude than if fur or feathers were present. We show 1) that the previous analysis, although incomplete, yields the same result as a solid insulation model with the required sophistication and 2) that a proper model of fur is a porous media model. Neither of two porous media versions yield a critical radius effect. No critical radius effect occurs because simultaneous heat transfer by conduction and radiation makes it impossible to obtain the required logarithmic increase in thermal resistance with increasing insulation radius in a porous medium.

Animals

Heat loss from deer mice (Peromyscus): evaluation of seasonal limits to thermoregulation.

This paper investigates the influence of seasonal adaptations to thermoregulatory heat loss for deer mice (Peromyscus) during summer and winter. A general, mechanistic model of heat transfer through fur was evaluated for the structural properties of the fur of deer mice. The model was validated against heat production determined from mice exposed to a range of radiative (wall) temperatures (tr) at air temperatures (ta) of 15, 27 and 34 degrees C. Calculated heat loss from the appendages was subtracted from the measured heat production to yield heat loss from the furred torso. This calculated torso heat loss agreed closely with the predicted fur heat loss for all conditions, as shown by a regression slope near 1 (0.99). Simulations using models of fur and appendage heat loss reveal that the winter increase in thermogenic (heat production) capacity has a greater effect than changes in fur properties in expanding the limits to thermoregulation. Both wind and a clear night sky increase heat loss and can limit thermoregulation to air temperatures above those found in deer mice habitats during winter (-25 degrees C). Thus, despite seasonal adaptations, these simulations indicate that thermoregulation is not possible under certain winter conditions, thereby restricting deer mice to within the protected environment of the leaf litter or snow tunnels.

Acclimatization

Heat loss regulation: role of appendages and torso in the deer mouse and the white rabbit.

Thermal conductance was subdivided into the component conductances of the appendages and torso using a heat transfer analysis for the deer mouse, Peromyscus maniculatus, and the white rabbit, Oryctolagus cuniculus. Our analysis was based on laboratory measurements of skin temperature and respiratory gas exchange made between air temperatures of 8 and 34 degrees C for the deer mouse, and from published data for the white rabbit. Two series conductances to heat transfer for each appendage and torso were evaluated: internal (hin), for blood flow and tissue conduction to the skin surface, and external (hex), for heat loss from the skin surface to the environment. These two series conductances were represented in a single, total conductance (htot). The limit to htot was set by hex and was reached by the torso htot of both animals. The increase in torso htot observed with air temperature for the mouse suggests that a pilomotor change in fur depth occurred. A control of htot below the limit set by hex was achieved by the hin of each appendage. Elevation of mouse thermal conductance (C) resulted from increases in feet, tail, and torso htot. In contrast, the rabbit showed no change in torso htot between 5 and 30 degrees C and ear htot exclusively increased C over these air temperatures. We suggest that the hyperthermia reported for the rabbit at 35 degrees C resulted from C reaching the physical limit set by torso and near hex. Thus the ear alone adjusted rabbit C, whereas the feet, tail, and the torso contributed to the adjustment of mouse C.

Animals

A comparison of subcutaneous and intraperitoneal oxytetracycline injection methods for control of infectious disease in the rat.

After receiving once daily intraperitoneal (i.p.) or subcutaneous (s.c.) injections of oxytetracycline (15 mg/100 g bodyweight) for 7 days, laboratory rats had significantly different oxytetracycline serum levels depending on the method of injection. Regardless of injection method, the biological half-life of the antibiotic was 4.25 h and serum antibiotic levels never fell below therapeutic levels for certain rat pathogens during 24 h post-injection. Severe peritonitis and cellulitis were found in rats whether injected s.c. or i.p. and some animals lost bodyweight. It appeared that either injection method would be an effective treatment for certain infectious diseases of laboratory rats but tissue damage, probably from oxytetracycline's acidity, made both methods unattractive.

Animals

Absence of therapeutic blood concentrations of tetracycline in rats after administration in drinking water.

Because of ease of administration and broad antibacterial spectrum, tetracycline often is administered in drinking water to control infectious diseases of rats. Assay of serum after a gavage bolus of tetracycline (300 mg/kg body weight) revealed little absorption of tetracycline by this route. Rats were given water containing tetracycline at several concentrations (400 mg/liter, 4g/liter, and 4 g tetracycline plus 50 g sucrose/liter) ad libitum and serum concentrations of tetracycline were monitored. Bioassay of serum samples from these animals, taken during 72 hours of water medication, revealed no detectable tetracycline concentrations (greater than 0.2 mcg/ml) in the 400 mg and 4 g/liter groups. Two of eighteen serum samples from the group given 4 g tetracycline with 50 g sucrose/liter had minimal therapeutic tetracycline concentrations (0.3 mcg/ml) effective for Mycoplasma pulmonis. Some of the animals given tetracycline ad libitum in drinking water drank very little and lost weight compared to control animals. These findings indicate that the practice of adding tetracycline to drinking water of rats may be ineffective in controlling systemic diseases, and also be detrimental to the treated animals.

Administration, Oral

Surgical correction of genital prolapse in three rhesus monkeys.

Three adult female rhesus monkeys (Macaca mulatta) in a breeding colony of approximately 75 adult females developed a clinical condition characterized by protrusion of the cervix through the vulva during pregnancy and/or following parturition. The Gilliam round-ligament uterine ventro-suspension procedure (hereafter called the Gilliam uterine suspension or uterine suspension procedure) was used to return the cervix to a normal anatomical position. Following the procedure, one female delivered a normal live infant, but reprolapsed. After a second suspension procedure, she again became pregnant and delivered a normal live infant without a reoccurrence of the prolapse. A second animal never became pregnant despite repeated breedings to different males for two years. The third animal became pregnant twice following the procedure. The first pregnancy terminated in abortion at two months of gestation, while the second pregnancy ended in an apparent dystocia, necessitating a cesarean section and delivery of a dead fetus. The animal died post-operatively. This surgical procedure successfully salvaged one of these animals which otherwise had no reproductive future.

Animals

Toxicant-disease-environment interactions associated with suppression of immune system, growth, and reproduction.

The effects of marginal malnourishment , infections, and environmental chemicals on growth and reproductive success in Swiss-Webster white mice and wild deer mice were studied with fractional factorial designs. Interaction effects were discovered. For example, malnourished mice were more sensitive to virus exposure and environmental chemicals (a plant growth regulator or polychlorinated biphenyls). Since several commercial plant growth regulators also appear to suppress the immune system, these results cast doubt on the adequacy of current toxicity testing procedures in which factors are studied individually and not in combination.

Animals

Theoretical and experimental studies of energy exchange from jackrabbit ears and cylindrically shaped appendages.

Convection properties of jackrabbit ears were examined in a wind tunnel and in the field in an attempt to study the possible thermal role of the large ears. This work was part of a study on energy exchange of appendages. Cylindrical copper models of various shapes, aluminum castings of domestic and jackrabbit ears, and an amputated jackrabbit ear were studied in a wind tunnel (a) to define the range for convective heat loss for appendages of various shapes, and (b) to study the effect on convection of model shape and orientation to the wind. Shape, i.e. length and closure, proved important. Orientation to the wind produced no consistent or significant variation in the convection coefficient. The convection coefficients from the ear castings fell within the range generated from the cylindrical models. The convection coefficients for the amputated rabbit ear fell partially within the range. Net thermal radiation loss at midday from the jackrabbit ears was found to be small. Convection from the ears, however, could account for the loss of over 100% of the animal's metabolic heat at an air temperature of 30 degrees C. If air temperature exceeds body temperature, the animal must either store heat or resort to the evaporation of water.

Animals

Thermal radiation in metabolic chambers.

Emissivities and ratios of surface areas of metabolic chambers and their contents have been usually ignored in studies of the metabolic rates of animals. Failure to take these factors into account can lead to errors in the interpretation of results.

Animals