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Rapid Cycle Real-Time PCR

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Cover of 'Rapid Cycle Real-Time PCR'

Table of Contents

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    Book Overview
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    Chapter 1 Rapid Cycle Real-Time PCR: Methods and Applications
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    Chapter 2 Mutation Detection by Fluorescent Hybridization Probe Melting Curves
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    Chapter 3 Quantification on the LightCycler
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    Chapter 4 Selection of Hybridization Probes for Real-Time Quantification and Genetic Analysis
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    Chapter 5 Using the Nearest Neighbor Model for the Estimation of Matched and Mismatched Hybridization Probe Melting Points and Selection of Optimal Probes on the LightCycler
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    Chapter 6 Quantification of Human Papilloma Virus Type 16 Using Quantitative Competitive PCR on the LightCycler
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    Chapter 7 Use of TaqStart Antibody to Increase the Sensitivity of Herpesvirus Quantitative PCR on the LightCycler
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    Chapter 8 High-Speed Detection of α 1 -Antitrypsin Deficiency Alleles Pi*S and Pi*Z on the LightCycler
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    Chapter 9 High-Speed Methylenetetrahydrofolate Reductase C → T 677 Mutation Detection on the LightCycler
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    Chapter 10 Dual Color Detection of Splice Variants of the c-erbA α (Thyroid Hormone Receptor α) Gene
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    Chapter 11 Detection of Three Major Polymorphisms in the N -Acetyltransferase 2 Gene by Melting Peak Analysis Using Fluorogenic Hybridization Probes
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    Chapter 12 Genotyping of Cytochrome P450 2D6*4 Mutation with Fluorescent Hybridization Probes Using LightCycler
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    Chapter 13 Fluorescent Hybridization Probe Detection of the F508del Cystic Fibrosis Allele on the LightCycler
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    Chapter 14 Genotyping β-globin Mutations (Hb S, Hb C, Hb E) by Multiplexing Probe Color and Melting Temperature
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    Chapter 15 Simultaneous Detection of C282Y and H63D Hemochromatosis Mutations Using LCRed 640 and LCRed 705 Labeled Hybridization Probes
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    Chapter 16 Genotyping of Angiotensin-Converting Enzyme and Angiotensinogen Polymorphisms with the LightCycler System
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    Chapter 17 Genotyping of the Most Common Thiopurine Methyltransferase Mutations with the LightCycler
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    Chapter 18 Detection of the Mitochondrial DNA Mutation MELAS3243 Using Hybridization Probes
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    Chapter 19 Detection of p53 Allele Deletions in Human Cancer by Quantification of Genomic Copy Number
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    Chapter 20 Monitoring of Residual Disease in Patients with Chronic Myelogenous Leukemia Using Specific Fluorescent Hybridization Probes for Real-Time Quantitative RT-PCR
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    Chapter 21 Development of Quantitative RT-PCR for the Expression of Wilms’ Tumor WT1 Suppressor Gene in Leukemia on the LightCycler
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    Chapter 22 Real-Time Detection of Minimal Residual Disease by Amplifying Immunoglobulin Genes in Acute Lymphoblastic Leukemia on the LightCycler
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    Chapter 23 HER2/ neu Gene Amplification Quantified by PCR and Melting Peak Analysis Using a Single Base Alteration Competitor as an Internal Standard
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    Chapter 24 Quantification of Residual Tumor Cells in Monoclonal B-cell Lymphoma
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    Chapter 25 Development of PCR-Based Assays for the Detection of Chromosomal Translocations Using SYBR Green I
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    Chapter 26 Relative Quantification of the HER2/ neu Oncogene Using SYBR Green I
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    Chapter 27 Development of Quantitative RT-PCR Tests for the Expression of Cytokine Genes on the LightCycler
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    Chapter 28 Quantitative RT-PCR for the Detection of T Cell Receptor Transcripts in T Lymphocytes Populations Using LightCycler Technology
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    Chapter 29 Rapid, Homogeneous Genotyping of Human Platelet Antigen 1 by Fluorescence Resonance Energy Transfer and Probe Melting Curves
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    Chapter 30 Development and Validation of an Externally Standardised Quantitative Insulin-like Growth Factor-1 RT-PCR Using LightCycler SYBR Green I Technology
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    Chapter 31 An Application of Melting Curve Analysis to Large-Scale Genetic Analysis in Atherosclerotic Disease: Two Linked Polymorphisms of Glycoprotein la Gene and Myocardial Infarction in Japanese
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    Chapter 32 Genotype-Specific Analysis of Hepatitis B Virus DNA on the LightCycler
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    Chapter 33 Rapid and Specific Detection of Bordetella pertussis in Clinical Specimens by LightCycler PCR
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    Chapter 34 Rapid and Specific Detection of Helicobacter pylori by LightCycler PCR
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    Chapter 35 Qualitative Detection of Herpes Simplex Virus DNA on the LightCycler
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    Chapter 36 Quantitative Detection of Cryptosporidium parvum after In Vitro Excystation by LightCycler PCR
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    Chapter 37 Quantitative Analysis of CMV in Infected Mice on the LightCycler System
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    Chapter 38 Detection and Differentiation of Equine Herpes Virus Type 1 and Type 4 on the LightCycler
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    Chapter 39 Rapid and Quantitative Detection of Toxoplasma gondii by PCR — A LightCycler Application in Prenatal Diagnosis
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    Chapter 40 Development of Quantitative PCR Tests for the Detection of the Orthopox Virus Adsorption Protein Gene (ORF D8L) on the LightCycler
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    Chapter 41 Quantification of Genetically Modified Soybeans in Food with the LightCycler System
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    Chapter 42 Real-Time PCR Monitoring of Estuarine Water Samples for Pfiesteria piscicida : A Dinoflagellate Associated with Fish Kills and Human Illness
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    Chapter 43 Quantification of Retrotransposon XIR-2.5 Copy Number in Genomes of Poeciliidae Species
Attention for Chapter 3: Quantification on the LightCycler
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Chapter title
Quantification on the LightCycler
Chapter number 3
Book title
Rapid Cycle Real-Time PCR
Published by
Springer, Berlin, Heidelberg, January 2001
DOI 10.1007/978-3-642-59524-0_3
Book ISBNs
978-3-54-066736-0, 978-3-64-259524-0
Authors

Randy Rasmussen, Rasmussen, Randy

Twitter Demographics

The data shown below were collected from the profile of 1 tweeter who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 224 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 2 <1%
Germany 1 <1%
France 1 <1%
Czechia 1 <1%
Brazil 1 <1%
Spain 1 <1%
United Kingdom 1 <1%
Unknown 216 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 55 25%
Researcher 37 17%
Student > Master 28 13%
Student > Doctoral Student 25 11%
Student > Bachelor 16 7%
Other 36 16%
Unknown 27 12%
Readers by discipline Count As %
Agricultural and Biological Sciences 104 46%
Biochemistry, Genetics and Molecular Biology 41 18%
Medicine and Dentistry 12 5%
Immunology and Microbiology 5 2%
Chemistry 4 2%
Other 22 10%
Unknown 36 16%