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Motor neurone disease / Molecular biology / Laboratory techniques / Polymerase chain reaction / SMN1 / Survival of motor neuron / Microsatellite / Spinal muscular atrophies / Real-time polymerase chain reaction / Biology / Science / Genetics


ISSNBiopolymers and CellVol. 26. N 1 Implementation of the quantitative Real-Time PCR for the molecular-genetic diagnostics of spinal muscular atrophy O. O. Soloviov, G. B. Livshits, S. S. Podlesnaya
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Document Date: 2010-05-05 09:05:21


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City

L. A. / Kyiv / New York / /

Company

THE MOLECULAR-GENETIC DIAGNOSTICS / Hryshchenko N. V. / BIO-RAD / Fig / /

Country

United States / Lithuania / Ukraine / /

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Facility

L. A. Livshits Institute of Molecular Biology / Ó Institute of Molecular Biology / /

IndustryTerm

heterozygous carrier / heterozygous carrier frequency / carrier screening / gene product / deletion carrier / nonspecific products / fluorescence-based carrier testing / high carrier frequency / amplification product / control / postPCR processing / /

MedicalCondition

spinal muscular atrophy / palsy / disease / Charcot-Marie-Tooth disease type 1A / hereditary neuropathy / Kugelberg-Welander disease / spinal muscular atrophy O. O. Soloviov / proximal spinal muscular atrophy / muscular atrophy / spinal muscular atrophies / common autosomal recessive diseases / /

Organization

Cold Spring Harbor Lab. / L. A. Livshits Institute of Molecular Biology / Institute of Molecular Biology / /

Person

Gene Patient / Wilson R. B. Spinal / A. Polyakov / Nat / Jung S. C. Rapid / V. Baranov / Wilson R. B. Heteroduplex / /

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Position

Schmittgen T. D. Analysis / /

ProvinceOrState

Alabama / /

PublishedMedium

Molecular Biology / /

Technology

gene amplification / gene expression / cloning / /

SocialTag