PubMed Health⌕ Search

Biomedical subjects

P Cady

Publications and source records attributed to P Cady.

10 recordsLinked to original sources

An epidemiological case-control study of migraine and its associated comorbid conditions.

BACKGROUND: The economic impact of migraine to society has been well documented. However, few studies have identified the risk of migraine-specific comorbid conditions to explain the higher healthcare resource utilization by migraineurs. Because comorbidity has the potential to increase treatment costs, estimating its risks and its economc impact becomes imperative.OBJECTIVES: To estimate the risk for migraine by presence of a defined set of comorbidities, and to quantify the association of estimated healthcare costs between the case-control groups with and without comorbidity.METHODS: A matched case-control was designed using data from 1998 Idaho Medicaid claims. Cases were identified by physician-diagnoses and migraine-specific medication use. A 1:1 matching was performed on age, race, gender, and residence. Presence of comorbidity was determined by ICD-9 diagnostic categories. Total healthcare resource utilization was estimaed for all physician, hospital (inpatient and outpatient), and emergency services, including prescription medicines paid by Idaho Medicaid. Multivariate logistic regression was used to compute the odds ratio controlling for the matching variables. Multiple-regression models were used to quantify the association of total healthcare costs.RESULTS: Migraine patients were approximately five times more likely (Odds Ratio = 5.34; Confidence Interval(95%)-4.38 to 6.52) than their controls to be diagnosed with comorbid condition(s). A model with variables of age, gender, presence of comorbidity and migraine, explained approximately 21% of the variance in healthcare utilization (p < 0.05).CONCLUSIONS: Migraine patients are at a higher risk for defined comorbid conditions resulting in significantly higher healthcare costs as compared to non-migraine patients.

Journal Article↗

Atropine and ephedrine adsorption to syringe plastic.

The purpose of this study was to compare daily changes in the concentration of atropine or ephedrine sulfate solutions that had been stored up to 4 days in plastic or glass syringes. Sets of three plastic and one glass syringe were used for each drug; the glass syringes acted as controls. Each set of syringes was labeled as day 0, 1, 2, 3, or 4. Syringes with medication were laid horizontally, had needles attached, and were stored in the dark at an ambient temperature. Each day, the assigned set of syringes was analyzed by high-performance liquid chromatography. Results showed that the change in the ephedrine sulfate concentration in the plastic syringes from day 0 to day 4 was less than 1.4%. Atropine sulfate decreased 52% over 4 days, with the largest single drop occurring during the first 24 hours. It can be concluded that the two brands of ephedrine sulfate stored up to 4 days at ambient temperature in the brand of syringe used do not significantly decrease in concentration. However, this was not the case with the brand of atropine sulfate studied. The practice of storing atropine sulfate in plastic syringes should be discouraged, because of the possibility of loss of potency due to medication adsorption to syringe plastic.

Adsorption↗

Electrical impedance measurements: rapid method for detecting and monitoring microorganisms.

A conceptually simple and east-to-use technique is described that uses continuous impedance measurements for automated monitoring of microbial growth and metabolism. The method has been applied to a wide range of microorganisms. Optical clarity is not required. The sensitivity and reproducibility of the method are demonstrated. The mechanism whereby microbial growth alters the impedance of the medium is discussed, as well as potential applications of the method to clinical microbiology.

Aspergillus niger↗

Impedimetric screening for bacteriuria.

A rapid, automated instrumental procedure for distinguishing urine cultures containing greater than 10(5) organism per ml is described. The method is based upon the measurement of changes in impedance that take place as microorganisms alter the chemical composition of the medium. The time required to detect impedance change is inversely related to the initial concentration of microorganisms in the sample. By defining an impedance-positive culture as one that gives detectable impedance change within 2.6 h, 95.8% of 1,133 urine cultures tested were correctly classified as containing more than or fewer than 10(5) organisms per ml. Selection of a longer detection time decreases false negative results at the cost of increased false positive results. Impedance screening is compared with screening data reported in the literature using adenosine-5'-triphosphate detection, microcalorimetry, electrochemical measurements, and optical microscopy.

Bacteriological Techniques↗

Rapid detection of microbial contamination in frozen vegetables by automated impedance measurements.

Automated impedance measurements can be used to rapidly assess whether a sample of frozen vegetables contains greater or less than 10(5) organisms per g. Microorganisms growing pureed food samples cause a change in the impedance of the medium when the organisms reach a threshold concentration of between 10(6) and 10(7) organisms per ml. Estimates of the concentration of microorganisms initially present in the food sample can be made by recording the time required for the organisms in the sample to replicate to threshold levels. In this study, the detection times for 357 samples of frozen vegetables were compared with standard plate counts for each sample. The agreement between the two methods in distinguishing samples containing more than 10(5) organisms per g was 92.6% for 257 assorted frozen vegetables and somewhat higher (93 to 96%) when separate cutoff times were used for each type of vegetable. The time required for analysis was about 5 h, compared to the 48 to 72 h required for standard plate counts.

Bacteria↗