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L Nazar

Publications and source records attributed to L Nazar.

9 recordsLinked to original sources

Polymyalgia rheumatica preceding small-vessel vasculitis: changed spots or misdiagnosis?

BACKGROUND: Systemic small-vessel vasculitis (SVV) is increasing in incidence and age of diagnosis. Presenting features may mimic those of polymyalgia rheumatica (PMR), a common disease of the elderly. AIM: To test the hypotheses that SVV is frequently misdiagnosed as PMR in elderly patients, that this results in a delay in diagnosis and appropriate treatment, and that the natural history and clinical features are different. DESIGN: Retrospective case-control study. METHODS: Cases of glomerulonephritis due to SVV at a single centre over a 12-year period were analysed, comparing those treated previously for PMR (PMR(+)) to the remainder of the cohort (PMR(-)). RESULTS: Of 86 patients with complete follow-up, 13% had been treated previously for PMR. PMR(+) patients had a longer duration of symptoms prior to SVV diagnosis (396 vs. 107 days, p = 0.001) and were less likely to be dialysis-dependent at diagnosis (36% vs. 68%, p < 0.05). Despite the delay in diagnosis, there was a trend towards lower serum creatinine (392 vs. 591 micro M), lower relapse rate (0.04 versus 0.15 episodes/patient-year) and lower incidence of death/end-stage renal failure (27% vs. 53%) in the PMR(+) group. DISCUSSION: SVV is frequently misdiagnosed as PMR, especially in those patients with indolent disease, although this did not appear to adversely affect outcome. We recommend that all patients suspected of suffering from PMR undergo careful urinalysis to look for haematuria or proteinuria, and that a low threshold for ANCA testing is maintained.

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In vitro evaluation of the dehydration characteristics of silicone hydrogel and conventional hydrogel contact lens materials.

PURPOSE: This study investigated the in vitro dehydration performance of silicone hydrogel and conventional hydrogel contact lens materials. METHODS: In vitro dehydration was assessed using a gravimetric method. The mass loss over time of Focus Night&Day, PureVision, Optima, Acuvue and Proclear Compatibles was measured as the ambient temperature increased from room temperature to 34 degrees C under varying airflow and humidity conditions. RESULTS: Dehydration data demonstrated a typical ogival form. The results were best fitted with a double exponential, non-linear regression model, which accounted for at least 99% of the variance. Regardless of material, increased airflow had a greater impact on dehydration rate than increased humidity (P<0.05). Relative dehydration amounts were strongly correlated with initial water content (r(2)=0.92), with higher water content materials dehydrating to a greater extent. CONCLUSIONS: In vitro dehydration studies of conventional and novel silicone-containing hydrogel materials indicated that evaporation rates from materials are predominantly water content related, with only subtle differences between materials of similar water contents being seen. Environmental conditions have a significant impact on in vitro dehydration, with increased airflow having a greater impact than reduced humidity on increasing dehydration rates. In vitro dehydration is closely related to bulk water diffusion rates and, as a result of their low water content, silicone-containing hydrogel materials exhibit low levels of dehydration compared with high water content hydrogel contact lens materials. Further, in vivo studies are necessary to see if the in vitro dehydration behaviour of silicone hydrogel materials is predictive of in-eye performance.

Journal Article↗