نتایج جستجو برای: periodic paralysis

تعداد نتایج: 101463  

Journal: :Journal of neurology, neurosurgery, and psychiatry 2004
C H Tengan A C Antunes A A Gabbai G M Manzano

OBJECTIVE To evaluate exercise test responses in hypokalaemic periodic paralysis (HPP), to determine its value as a diagnostic tool and the factors that could affect the responses. METHODS 22 subjects were studied from two families with HPP caused by R528H mutation, four patients with thyrotoxic periodic paralysis, 15 normal controls, and four controls with hyperthyroidism. All family members...

Journal: :The Malaysian journal of pathology 2005
Pavai Sthaneshwar Ramesh Prathibha Sook Fan Yap

UNLABELLED Thyrotoxic periodic paralysis (TPP) is a medical emergency characterised by sudden onset of muscle weakness with hypokalemia that resolves with the treatment of hyperthyroidism. We report three cases of thyrotoxic periodic paralysis seen at the Accident and Emergency Care Department, University of Malaya Medical Centre in a period of four months. We also review the clinical presentat...

Journal: :Postgraduate Medical Journal 1965

Journal: :Journal of Endocrinology and Metabolism 2020

Journal: :Annals of Saudi Medicine 2004

Journal: :Journal of the Endocrine Society 2020

Journal: :Journal of Neurology, Neurosurgery & Psychiatry 2002

Journal: :The Journal of clinical investigation 2000
S Bendahhou T R Cummins A F Hahn S Langlois S G Waxman L J Ptácek

Hyperkalemic periodic paralysis (HyperKPP) is an autosomal dominant skeletal muscle disorder caused by single mutations in the SCN4A gene, encoding the human skeletal muscle voltage-gated Na(+) channel. We have now identified one allele with two novel mutations occurring simultaneously in the SCN4A gene. These mutations are found in two distinct families that had symptoms of periodic paralysis ...

2014
James R. Groome Frank Lehmann-Horn Chunxiang Fan Markus Wolf Vern Winston Luciano Merlini Karin Jurkat-Rott

Hypokalaemic periodic paralysis is typically associated with mutations of voltage sensor residues in calcium or sodium channels of skeletal muscle. To date, causative sodium channel mutations have been studied only for the two outermost arginine residues in S4 voltage sensor segments of domains I to III. These mutations produce depolarization of skeletal muscle fibres in response to reduced ext...

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