scholarly article | Q13442814 |
P50 | author | Ulrich J Krull | Q88642451 |
P2093 | author name string | Sandeep Raha | |
Nathalie H Gendron | |||
James H Watterson | |||
Sarah C Jantzi | |||
Alex E Mackenzie | |||
Christopher C Kotoris | |||
Christopher C Wust | |||
Farhad Gharabaghi | |||
Nicole K Haynes | |||
Paul A E Piunno | |||
P2860 | cites work | Predicting DNA duplex stability from the base sequence | Q24629471 |
High density synthetic oligonucleotide arrays | Q29616560 | ||
A single nucleotide in the SMN gene regulates splicing and is responsible for spinal muscular atrophy | Q29617367 | ||
Feature extraction and normalization algorithms for high-density oligonucleotide gene expression array data | Q30673320 | ||
The effect of surface probe density on DNA hybridization | Q34004596 | ||
Use of hybridization kinetics for differentiating specific from non-specific binding to oligonucleotide microarrays | Q34291397 | ||
Quantitative analyses of SMN1 and SMN2 based on real-time lightCycler PCR: fast and highly reliable carrier testing and prediction of severity of spinal muscular atrophy | Q34353103 | ||
Parallel thermodynamic analysis of duplexes on oligodeoxyribonucleotide microchips | Q34658591 | ||
Parallel genotyping of human SNPs using generic high-density oligonucleotide tag arrays | Q35028100 | ||
Identification of proximal spinal muscular atrophy carriers and patients by analysis of SMNT and SMNC gene copy number | Q35250646 | ||
Steric factors influencing hybridisation of nucleic acids to oligonucleotide arrays | Q38347749 | ||
Robust and accurate single nucleotide polymorphism genotyping by dynamic allele-specific hybridization (DASH): design criteria and assay validation | Q40414773 | ||
Resequencing and mutational analysis using oligonucleotide microarrays | Q40827778 | ||
Quantification of PCR bias caused by a single nucleotide polymorphism in SMN gene dosage analysis. | Q41098351 | ||
Correlation between severity and SMN protein level in spinal muscular atrophy | Q41102726 | ||
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Implementation of SMA carrier testing in genetic laboratories: comparison of two methods for quantifying theSMN1gene | Q61806620 | ||
Effect of oligonucleotide truncation on single-nucleotide distinction by solid-phase hybridization | Q64387938 | ||
Improved nearest-neighbor parameters for predicting DNA duplex stability | Q71099199 | ||
Optical melting of 128 octamer DNA duplexes. Effects of base pair location and nearest neighbors on thermal stability | Q72167542 | ||
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Expression profiling using cDNA microarrays | Q77895878 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | single-nucleotide polymorphism | Q501128 |
spinal muscular atrophy | Q580290 | ||
biosensor | Q669391 | ||
muscular atrophy | Q2844600 | ||
P304 | page(s) | e18 | |
P577 | publication date | 2004-01-23 | |
P1433 | published in | Nucleic Acids Research | Q135122 |
P1476 | title | Rapid detection of single nucleotide polymorphisms associated with spinal muscular atrophy by use of a reusable fibre-optic biosensor | |
P478 | volume | 32 |
Q37482329 | Colorimetric Assay for Exon 7 SMN1/SMN2 Single Nucleotide Polymorphism Using Gold Nanoprobes |
Q58860484 | Fiber-Optic High-Resolution Genetic Screening Using Gold-Labeled Gene Probes |
Q79776286 | Fluorescence resonance energy transfer and complex formation between thiazole orange and various dye-DNA conjugates: implications in signaling nucleic acid hybridization |
Q30472282 | Interfacial chemistry and the design of solid-phase nucleic acid hybridization assays using immobilized quantum dots as donors in fluorescence resonance energy transfer |
Q36972067 | Optical-fiber bundles |
Q35948439 | Overview of electrochemical DNA biosensors: new approaches to detect the expression of life |
Q53548734 | Paper-based DNA detection using lanthanide-doped LiYF4 upconversion nanocrystals as bioprobe. |
Q30484152 | Real-time DNA microarray analysis |
Q36303838 | Resonance Energy Transfer-Based Nucleic Acid Hybridization Assays on Paper-Based Platforms Using Emissive Nanoparticles as Donors |
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