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L Dickerson

Publications and source records attributed to L Dickerson.

5 recordsLinked to original sources

A wavelet packet model of evoked potentials.

The standard methods for decomposition and analysis of evoked potentials are bandpass filtering, identification of peak amplitudes and latencies, and principal component analysis (PCA). We discuss the limitations of these and other approaches and introduce wavelet packet analysis. Then we propose the "single-channel wavelet packet model," a new approach in which a unique decomposition is achieved using prior time-frequency information and differences in the responses of the components to changes in experimental conditions. Orthogonal sets of wavelet packets allow a parsimonious time-frequency representation of the components. The method allows energy in some wavelet packets to be shared among two or more components, so the components are not necessarily orthogonal. The single-channel wavelet packet model and PCA both require constraints to achieve a unique decomposition. In PCA, however, the constraints are defined by mathematical convenience and may be unrealistic. In the single-channel wavelet packet model, the constraints are based on prior scientific knowledge. We give an application of the method to auditory evoked potentials recorded from cats. The good frequency resolution of wavelet packets allows us to separate superimposed components in these data. Our present approach yields estimates of component waveforms and the effects of experiment conditions on the amplitude of the components. We discuss future extensions that will provide confidence intervals and p values, allow for latency changes, and represent multichannel data.

Animals↗

The silent deceiver.

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Decision Making, Organizational↗

Antibiotic resistance and the need for the rational use of antibiotics.

Antibiotic resistance has increased dramatically over the past 10 years. In many countries, penicillin resistance to Streptococcus pneumoniae is nearly 50% with resistance to other drugs rising as well. One of the mechanisms responsible for the development of resistance is the widespread use of antibiotics in the primary care setting, chiefly for the treatment of respiratory disorders. Reduction in antibiotic prescribing for respiratory diseases in primary care has been associated with decreases in drug resistance in Streptococcus pneumoniae. This article will review common reasons for overuse of antibiotics in primary care settings and some strategies for reducing injudicious antibiotic prescribing.

Anti-Bacterial Agents↗