Variable clinical expression of mutations in the P/Q-type calcium channel gene in familial hemiplegic migraine
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R. Ophoff | M. Ferrari | G. Terwindt | J. Haan | R. van Eijk | R. Frants | M. Vergouwe | M. Vergouwe | Roel A. Ophoff | Rune R. Frants | J. Haan | R. V. Eijk
[1] T. Klockgether,et al. SCA6 is caused by moderate CAG expansion in the alpha1A-voltage-dependent calcium channel gene. , 1997, Human molecular genetics.
[2] H. Kawakami,et al. Molecular features of the CAG repeats of spinocerebellar ataxia 6 (SCA6). , 1997, Human molecular genetics.
[3] R. Ophoff,et al. Towards a unified nomenclature describing voltage-gated calcium channel genes , 1997, Human Genetics.
[4] R. Griggs. Changes in policy for publishing manuscripts in Neurology , 1997, Neurology.
[5] M. Schmid,et al. Analysis of structural and numerical chromosome abnormalities in sperm of normal men and carriers of constitutional chromosome aberrations. A review , 1997, Human Genetics.
[6] T. Steiner. Verbal Scales in the Treatment of Migraine , 1997 .
[7] S. Nelson,et al. Familial episodic ataxia: Clinical heterogeneity in four families linked to chromosome 19p , 1997, Annals of neurology.
[8] E. Hess,et al. Migraines in Mice? , 1996, Cell.
[9] Richard Hawkes,et al. Absence Epilepsy in Tottering Mutant Mice Is Associated with Calcium Channel Defects , 1996, Cell.
[10] Dennis E Bulman,et al. Familial Hemiplegic Migraine and Episodic Ataxia Type-2 Are Caused by Mutations in the Ca2+ Channel Gene CACNL1A4 , 1996, Cell.
[11] S. Tsuji,et al. Identification of the spinocerebellar ataxia type 2 gene using a direct identification of repeat expansion and cloning technique, DIRECT , 1996, Nature Genetics.
[12] Yves Agid,et al. Cloning of the gene for spinocerebellar ataxia 2 reveals a locus with high sensitivity to expanded CAG/glutamine repeats , 1996, Nature Genetics.
[13] Georg Auburger,et al. Moderate expansion of a normally biallelic trinucleotide repeat in spinocerebellar ataxia type 2 , 1996, Nature Genetics.
[14] C. Allis,et al. Histone Acetylation and Chromatin Assembly: A Single Escort, Multiple Dances? , 1996, Cell.
[15] W. Catterall,et al. Isoform-specific interaction of the alpha1A subunits of brain Ca2+ channels with the presynaptic proteins syntaxin and SNAP-25. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[16] M. Ferrari,et al. Familial Hemiplegic Migraine: A Clinical Comparison of Families Linked and Unlinked to Chromosome 19 , 1996, Cephalalgia : an international journal of headache.
[17] S. Peroutka,et al. Familial hemiplegic migraine, nystagmus, and cerebellar atrophy , 1996, Annals of neurology.
[18] J. Nutt,et al. A locus for the nystagmus-associated form of episodic ataxia maps to an 11-cM region on chromosome 19p. , 1995, American journal of human genetics.
[19] J. Olesen,et al. Prevalence and sex-ratio of the subtypes of migraine. , 1995, International journal of epidemiology.
[20] R. Glass,et al. Frontometaphyseal dysplasia: neonatal radiographic diagnosis. , 1995, American journal of medical genetics.
[21] P. van Bogaert,et al. A gene for hereditary paroxysmal cerebellar ataxia maps to chromosome 19p , 1995, Annals of neurology.
[22] G. Ebers,et al. Mapping the gene for acetazolamide responsive hereditary paryoxysmal cerebellar ataxia to chromosome 19p. , 1995, Human molecular genetics.
[23] M. Ferrari,et al. Familial hemiplegic migraine in the Netherlands , 1994, Clinical Neurology and Neurosurgery.
[24] R. Ophoff,et al. Genetic heterogeneity of familial hemiplegic migraine. , 1994, Genomics.
[25] J. Weissenbach,et al. A gene for familial hemiplegic migraine maps to chromosome 19 , 1993, Nature Genetics.
[26] Huda Y. Zoghbi,et al. Expansion of an unstable trinucleotide CAG repeat in spinocerebellar ataxia type 1 , 1993, Nature Genetics.
[27] C. Cotman,et al. Programmed cell death: its possible contribution to neurotoxicity mediated by calcium channel antagonists , 1992, Brain Research.
[28] C. Hawkes. Familial paroxysmal ataxia: report of a family. , 1992, Journal of neurology, neurosurgery, and psychiatry.
[29] R. Langton Hewer,et al. Neurology in the United Kingdom. I: Historical development. , 1992, Journal of neurology, neurosurgery, and psychiatry.
[30] S. Keevil,et al. Familial periodic cerebellar ataxia: A problem of cerebellar intracellular pH homeostasis , 1992, Annals of neurology.
[31] A. Vighetto,et al. Magnetic resonance imaging in familial paroxysmal ataxia. , 1988, Archives of neurology.
[32] F. Tamanini,et al. Familial hemiplegic migraine. , 1955, The Lancet.
[33] William B. Dobyns,et al. Autosomal dominant cerebellar ataxia (SCA6) associated with small polyglutamine expansions in the α1A-voltage-dependent calcium channel , 1997, Nature Genetics.
[34] D. Sankoff,et al. Landmarks in the Rosetta Stone of mammalian comparative maps , 1997, Nature Genetics.
[35] A. Sano,et al. Dentatorubral and pallidoluysian atrophy expansion of an unstable CAG trinucleotide on chromosome 12p , 1994, Nature Genetics.
[36] O. Onodera,et al. Unstable expansion of CAG repeat in hereditary dentatorubral–pallidoluysian atrophy (DRPLA) , 1994, Nature Genetics.
[37] Shigenobu Nakamura,et al. CAG expansions in a novel gene for Machado-Joseph disease at chromosome 14q32.1 , 1994, Nature Genetics.
[38] J. Nutt,et al. Autosomal dominant episodic ataxia: A heterogeneous syndrome , 1986, Movement disorders : official journal of the Movement Disorder Society.
[39] J. Carney,et al. Bilateral adrenal medullary hyperplasia in multiple endocrine neoplasia, type 2: the precursor of bilateral pheochromocytoma. , 1975, Mayo Clinic proceedings.