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Primary cutaneous perivascular epithelioid cell tumors: two cases and a review of the literature
Report _Case Presentation _Photo Vignette _Letter Authors declare that the contents of this article are their own original unpublished findings. Title: Primary cutaneous perivascular epithelioid cell tumors: two cases and a review of the literature Authors: Jennifer Wong1 DO, Jason Mammino2 DO, Jennifer Seyffert3 DO, Kristen Schmits4 MD, Etan Marks4 MD, Daniel Rivlin3 MD Affiliations: 1Department of Dermatology, LECOM- Larkin Community Hospital, Miami, Florida, USA, 2Department of Dermatology, KCUMB - Advanced Dermatology and Cosmetic Surgery, Orlando, Florida, USA, 3Department of Dermatology, LECOM- Skin and Cancer Associates, Miami Beach, Florida, USA, 4Department of Dermatopathology Advanced Dermatology and Cosmetic Surgery Pathology Laboratory, Delray Beach, Florida, USA Corresponding Author: Jennifer Seyffert DO, 4308 Alton Road, Suite 510, Miami Beach, FL 33140, Tel: 305-674-8865, Fax: 305-674-1459, Email: [email protected] Abstract: Perivascular epithelioid cell tumors, also known as PEComas, are mesenchymal neoplasms which uncommonly originate within the skin, with only 23 cases documented within the literature. These rare neoplasms classically display epithelioid cells composed of granular or clear cytoplasm arranged in sheets, nests, or cords. Their immunoreactivity for melanocytic and smooth muscle markers makes these tumors distinct and unique.[1] We herein present two cases of primary cutaneous PEComas that clinically mimic other common cutaneous neoplasms and illustrate the necessity for clinical-pathologic correlation. A literature review is also presented to compare the different clinical and histological presentations of cutaneous PEComas
A prospective study of loss of consciousness in epilepsy using virtual reality driving simulation and other video games
Patients with epilepsy are at risk of traffic accidents when they have seizures while driving. However, driving is an essential part of normal daily life in many communities, and depriving patients of driving privileges can have profound consequences for their economic and social well-being. In the current study, we collected ictal performance data from a driving simulator and two other video games in patients undergoing continuous video/EEG monitoring. We captured 22 seizures in 13 patients and found that driving impairment during seizures differed in terms of both magnitude and character, depending on the seizure type. Our study documents the feasibility of a prospective study of driving and other behaviors during seizures through the use of computer-based tasks. This methodology may be applied to further describe differential driving impairment in specific types of seizures and to gain data on anatomical networks disrupted in seizures that impair consciousness and driving safety