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全球新一代测序市场报告(2012-2016年)

Global Next Generation Sequencing Market(2012-2016)
加工时间:2013-11-30 信息来源:EMIS 索取原文[119 页]
关键词:DNA测序;碱基顺序;生存发展;基本信息
摘 要:DNA sequencing is defined as the process of determining the nucleotide order of any specific DNA portion.DNA sequencing translates the essential information for any living organism to survive and evolve. Hence, determining the DNA sequence is essential in genome research. The DNA sequencing process is used to define the sequence of specific genes, clusters of operons, entire chromosomes, and genomes. Most of the DNA sequencing process has been executed using the chain termination method. These sequencing methods have limitations in throughput, speed, resolution, and scalability. To overcome these barriers, next-generation sequencing technology, an important breakthrough in the field of genomics, has been launched.Next-generation sequencing technology can sequence millions of small fragments of DNA concurrently. In this technology a software program is then used to link the millions to billions of reads to reconstruct the complete genome sequence. Accuracy for this technology has increased to levels up to 99.99 percent. These technologies have higher throughput, sensitivity, and specificity than microarrays. Next-generation sequencing finds its application in whole genome, exome, and transcriptome sequencing that provide a high-resolution and global view of the cancer genome. Next-generation sequencing coupled with bioinformatics tools has revolutionized cancer research, diagnosis, and therapy. This technology helps to track and trace the spread of disease and foreign contaminants in drugs.
目 录:

01. Executive Summary

02. Scope of the Report

02.1 Market Overview

02.2 Product Offerings

03. Market Research Methodology

03.1 Market Research Process

03.2 Research Design

03.3 Research Methodology

04. List of Abbreviations

05. Introduction

06. Market Landscape

06.1 Market Overview

06.2 Market Size and Forecast

06.3 Next-generation Sequencing Market in the US

06.3.1 Market Size and Forecast

06.4 Next-generation Sequencing Market in Europe

06.4.1 Market Size and Forecast

06.4.2 Top Five Next-generation Sequencing Instruments in Europe

06.5 Next-generation Sequencing Market in Japan

06.5.1 Market Size and Forecast

06.6 Five Forces Analysis

07. Market Segmentation by Application

08. Market Segmentation by Technology

08.1.1 Sequencing by Synthesis

08.1.2 Ion Semiconductor Sequencing

08.1.3 Sequencing by Ligation

08.1.4 Pyrosequencing

08.1.5 SMRT Sequencing

08.2 Comparison of Various Technologies

09. Market Segmentation by Product

09.1 Global Next-generation Sequencing Market by Product Snapshot

09.2 Global Next-generation Sequencing Market in the Reagents Segment

09.2.1 Market Size and Forecast

09.3 Global Next-generation Sequencing Market in the Instruments

Segment

09.3.1 Market Size and Forecast

09.3.2 Price of Next-generation Instruments

09.3.3 Market Segmentation

09.4 Global Next-generation Sequencing Market in the Services Segment

09.4.1 Market Size and Forecast

09.5 Global Next-generation Sequencing Market by Product Segmentation 2012-2016 (percentage)

09.6 Global Next-generation Sequencing Market by Product Growth Rate

10. Market Segmentation by End-users

10.1 Global Next-generation Sequencing Market by End-users Snapshot.

10.2 Global Next-generation Sequencing Market in the Academia Segment

10.2.1 Market Size and Forecast

10.3 Global Next-generation Sequencing Market in the Biopharma Segment

10.3.1 Market Size and Forecast

10.4 Global Next-generation Sequencing Market in the Applied Markets Segment

10.4.1 Market Size and Forecast

10.5 Global Next-generation Sequencing Market in the Clinical Customers Segment

10.5.1 Market Size and Forecast

10.6 Global Next-generation Sequencing Market by End-users Growth Rate

11. Geographical Segmentation

11.1 Global Next-generation Sequencing Market by Geographical Segmentation 2012-2016

11.2 Global Next-generation Sequencing Market by Geographical Segmentation Snapshot

11.3 Next-generation Sequencing Market in the Americas

11.3.1 Market Size and Forecast

11.4 Next-generation Sequencing Market in the EMEA Region

11.4.1 Market Size and Forecast

11.5 Next-generation Sequencing Market in the APAC Region

11.5.1 Market Size and Forecast

11.6 Global Next-generation Sequencing Market by Geographical Segmentation 2012-2016

12. Key Leading Countries

12.1 USA

12.2 UK

12.3 Japan

13. Buying Criteria

14. Market Growth Drivers

15. Drivers and their Impact

16. Market Challenges

17. Impact of Drivers and Challenges

18. Market Trends

19. Trends and their Impact

20. Vendor Landscape

20.1 Competitive Scenario

20.1.1 Key News

20.1.2 Mergers and Acquisitions

20.2 Market Share Analysis 2012

20.3 Other Prominent Vendors

21. Key Vendor Analysis

21.1 Beijing Genome Institute

21.1.1 Business Overview

21.1.2 Business Segmentation1

21.1.3 Key Information

21.1.4 SWOT Analysis

21.2 Illumina Inc

21.2.1 Business Overview

21.2.2 Business Segmentation

21.2.3 Specifications and Costs of Illumina Platforms and Associated Reagents 87

21.2.4 Key Information

21.2.5 SWOT Analysis

21.3 Life Technologies Corp. .

21.3.1 Business Overview

21.3.2 Business Segmentation

21.3.3 Specifications and Costs of Life Technologies Platforms and Associated Reagents

21.3.4 Key Information

21.3.5 SWOT Analysis

21.4 Pacific Biosciences of California Inc.

21.4.1 Business Overview

21.4.2 Business Segmentation

21.4.3 Key Information

21.4.4 SWOT Analysis

21.5 Qiagen N.V.

21.5.1 Business Overview8

21.5.2 Business Segmentation

21.5.3 Key Information

21.5.4 SWOT Analysis

21.6 Roche Holding AG

21.6.1 Business Overview

21.6.2 Business Segmentation

21.6.3 Specifications and Costs of Roche Platforms and Associated Reagents

21.6.4 Key Information

21.6.5 SWOT Analysis

22. Other Reports in this Series

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