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Danielle Perry

Publications and source records attributed to Danielle Perry.

2 recordsLinked to original sources

Zosteriform lichen planus.

A 95-year-old woman presented with a 4-month history of a pruritic eruption involving her trunk, medial thighs, and lesions limited to the C5 dermatome of the left upper extremity. Punch biopsy supported a clinical diagnosis of zosteriform lichen planus. Linear lichen planus refers to lichen planus with a unilateral linear distribution. This variant may present as an example of the Wolf isotopic response, or more rarely, a de novo eruption on previously-normal skin. In very rare instances linear lichen planus presents in a segmental fashion corresponding to a dermatome and is termed zosteriform lichen planus.

Aged, 80 and over↗

Classification of the extracellular fields produced by activated neural structures.

BACKGROUND: Classifying the types of extracellular potentials recorded when neural structures are activated is an important component in understanding nerve pathophysiology. Varying definitions and approaches to understanding the factors that influence the potentials recorded during neural activity have made this issue complex. METHODS: In this article, many of the factors which influence the distribution of electric potential produced by a traveling action potential are discussed from a theoretical standpoint with illustrative simulations. RESULTS: For an axon of arbitrary shape, it is shown that a quadrupolar potential is generated by action potentials traveling along a straight axon. However, a dipole moment is generated at any point where an axon bends or its diameter changes. Next, it is shown how asymmetric disturbances in the conductivity of the medium surrounding an axon produce dipolar potentials, even during propagation along a straight axon. Next, by studying the electric fields generated by a dipole source in an insulating cylinder, it is shown that in finite volume conductors, the extracellular potentials can be very different from those in infinite volume conductors. Finally, the effects of impulses propagating along axons with inhomogeneous cable properties are analyzed. CONCLUSION: Because of the well-defined factors affecting extracellular potentials, the vague terms far-field and near-field potentials should be abandoned in favor of more accurate descriptions of the potentials.

Action Potentials↗