PubMed Health⌕ Search

Biomedical subjects

M A Kingston

Publications and source records attributed to M A Kingston.

6 recordsLinked to original sources

Penile fracture.

A wide range of patients present to genitourinary medicine (GUM) clinics with diverse conditions, many of which may not be infective. One such condition, albeit rare, is penile fracture. This is a traumatic rupture of the corpus cavernosum usually associated with blunt trauma to the erect penis. Prognosis and management issues are discussed.

Adult↗

The investigation of patients with HIV infection: 10 years of progress.

The past decade has seen great advances in the management of patients with HIV infection. The introduction of highly active antiretroviral therapy (HAART) has resulted in a decrease in opportunistic infections but the development of new clinical entities such as lipodystrophy and immune reconstitution illnesses. The use of investigations such as lipid profiles and dual energy X-ray absorptiometry (DEXA) scanning to assess lipodystrophy have been necessitated by these changes in the epidemic. Technological advances have resulted in new techniques such as viral resistance assays and single photon emission computed tomography (SPECT) scanning. The appropriate use of these investigations is subject to ongoing assessment.

Absorptiometry, Photon↗

Glucose sensor with improved haemocompatibilty.

A new biocompatible copolymer has been synthesised and used in an electrochemical enzyme-based glucose sensor. The copolymer incorporates three segments including a monomer with an electrically neutral phosphorylcholine head group that is able to reject protein adsorption and two segments that increase the affinity to polyurethane substrate. Peel and solution circulation tests showed that this material has high attachment to polyurethane. With the new copolymer as the outermost layer and the polyurethane as the diffusion-limiting membrane, the sensor showed extended linearity up to 50 mM glucose and stable output in bovine serum for 70 h. During in vivo tests, the sensor exhibited a steady current signal and a rapid transient response when the glucose concentration was raised. These results imply that the haemocompatibility of the glucose sensor coated with the new copolymer has been improved, which is crucial for a sensor used for clinical real-time monitoring. The material may also be suitable for application to other implantable devices.

Animals↗

Role of metabolic acidosis on cardiac mechanical performance during severe acute hypoxia and reoxygenation is small and transient.

OBJECTIVE: The aim was to determine whether the metabolic acidosis that develops during severe acute myocardial hypoxia improves or impairs the recovery of cardiac mechanical function during reoxygenation. METHODS: Isolated rat hearts performed external work against a model of the rat systemic vascular impedance. Four groups of 10 hearts were used for mechanical studies. In these experiments, the hearts were subjected to normoxic ventilation for 15 min, hypoxic ventilation for 20 min, and reoxygenation for 60 min. The perfusate pH was either allowed to drift downward due to metabolic acidosis, or it was corrected to 7.4 as hypoxia or reoxygenation began. Mechanical performance was assessed by measuring heart rate and model "aortic" pressure and flow and by computing left ventricular mean, pulsatile, and total hydraulic power output and stroke work. A further four groups of 10 hearts were used for biochemical studies. In these experiments, myocardial high energy phosphates and calcium content were measured at the end of the period of hypoxia. RESULTS: When no attempt was made to regulate the perfusate pH, it drifted downward from 7.40(SEM 0.01) to 7.33(0.01) during hypoxia and then to 7.25(0.02) during reoxygenation. All mechanical variables measured and computed were severely depressed by hypoxia, whether the pH was regulated or not. Left ventricular total hydraulic hydraulic power output decreased to less than 10% of the control value in all experiment groups and recovered to 86.7-91.2% of the control value after 60 min of reoxygenation. Mechanical recovery was most rapid when the correction of acidosis was delayed until reoxygenation was begun. After 5 min of reoxygenation, it had recovered to 65.5% of the control value compared with a 37.0% recovery when the pH was allowed to drift and 34.9% when the pH was corrected to 7.4 during hypoxia. However, the differences in power output became non-significant after 10 min of reoxygenation. Myocardial creatine phosphate and adenosine triphosphate concentrations were decreased by hypoxia whether the pH was corrected (63.0% and 26.9% relative to the control), or not (68.9% and 35.0% relative to the control) (not statistically significant), but total cell calcium was not affected. CONCLUSIONS: In the isolated rat heart, correction of the moderate metabolic acidosis that developed during severe acute myocardial hypoxia improved the rate of mechanical recovery, but the effect was small and not sustained.

Acidosis↗