The report titled “Global Next Generation Sequencing Market: Trends and Opportunities (2013-2018)” analyzes the potential opportunities and significant trends in the global Next Generation Sequencing market. For more mail me : info@daedal-research.com
This document provides an overview of next generation sequencing (NGS) technologies. It discusses the history and evolution of DNA sequencing, from early manual methods developed by Sanger to modern high-throughput NGS approaches. Key NGS methods described include Illumina sequencing by synthesis, Ion Torrent semiconductor sequencing, 454 pyrosequencing, and SOLiD ligation sequencing. Compared to Sanger, NGS allows massively parallel sequencing of many samples at lower cost and higher throughput. While NGS has advanced biological research, each method still has advantages and limitations related to read length, accuracy, and cost.
Global Next Generation Sequencing (NGS) Industry By Market Size & Forecast to...DavidClark206
This research report covers end-to-end market for NGS in terms of the workflow; presequencing, NGS platforms, consumables and services, sequencing services and bioinformatics market. From an insight perspective, this research report focuses on the qualitative data, market size, share, and growth of various segments and sub-segments, competitive landscape, and company profiles.
Inquire For Discount (Single User Report Price US $4650) @ http://www.reportsnreports.com/contacts/Discount.aspx?name=257153 .
Introduction to Next-Generation Sequencing (NGS) TechnologyQIAGEN
The continuous evolution of NGS technology has led to an enormous diversification in NGS applications and dramatically decreased the costs to sequence a complete human genome.
In this presentation, we will discuss the following major topics:
• Basic overview of NGS sequencing technologies
• Next-generation sequencing workflow
• Spectrum of NGS applications
• QIAGEN universal NGS solutions
This document provides an introduction to next generation sequencing (NGS) technologies. It begins with an outline of topics to be covered, including the evolution of NGS technologies, their descriptions and comparisons, bioinformatics challenges of NGS data analysis, and some aspects of NGS data analysis workflows and tools. The document then delves into explanations of specific NGS platforms, their performance characteristics, and the sequencing processes. It discusses the large computational infrastructure and data management needs of NGS, as well as quality control, preprocessing of NGS data, and popular analysis tools and workflows.
Next Generation Sequencing (NGS) in food safety-Game changer or just another ...ExternalEvents
http://tiny.cc/faowgsworkshop
The use of genome sequencing technology on food safety management. Presentation from the FAO expert workshop on practical applications of Whole Genome Sequencing (WGS) for food safety management - 7-8 December 2015, Rome, Italy.
“Next-Generation Sequencing (NGS) Global Market – Forecast To 2022”Vinay Shiva Prasad
Next Generation Sequencing (NGS) has revolutionized the way the human genomes are being sequenced now a days. The time and cost to sequence has tremendously reduced . In the last five years, the sequencing cost has rapidly reduced and this is supposed to have a huge impact on the NGS market in the coming years.
Next-generation sequencing technologies have rapidly advanced since 2005. Key developments include massively parallel sequencing reactions that enabled sequencing of entire human genomes for less than $1,000 by 2015. While Illumina dominates the market, other platforms like Ion Torrent and PacBio are increasing capabilities. Routine human whole genome sequencing is now used in research and medicine, enabling new opportunities like liquid biopsies and single-cell analysis. However, data storage and analysis remain challenges due to the large volumes of sequencing data.
This document provides an overview of next generation sequencing (NGS) technologies. It discusses the history and evolution of DNA sequencing, from early manual methods developed by Sanger to modern high-throughput NGS approaches. Key NGS methods described include Illumina sequencing by synthesis, Ion Torrent semiconductor sequencing, 454 pyrosequencing, and SOLiD ligation sequencing. Compared to Sanger, NGS allows massively parallel sequencing of many samples at lower cost and higher throughput. While NGS has advanced biological research, each method still has advantages and limitations related to read length, accuracy, and cost.
Global Next Generation Sequencing (NGS) Industry By Market Size & Forecast to...DavidClark206
This research report covers end-to-end market for NGS in terms of the workflow; presequencing, NGS platforms, consumables and services, sequencing services and bioinformatics market. From an insight perspective, this research report focuses on the qualitative data, market size, share, and growth of various segments and sub-segments, competitive landscape, and company profiles.
Inquire For Discount (Single User Report Price US $4650) @ http://www.reportsnreports.com/contacts/Discount.aspx?name=257153 .
Introduction to Next-Generation Sequencing (NGS) TechnologyQIAGEN
The continuous evolution of NGS technology has led to an enormous diversification in NGS applications and dramatically decreased the costs to sequence a complete human genome.
In this presentation, we will discuss the following major topics:
• Basic overview of NGS sequencing technologies
• Next-generation sequencing workflow
• Spectrum of NGS applications
• QIAGEN universal NGS solutions
This document provides an introduction to next generation sequencing (NGS) technologies. It begins with an outline of topics to be covered, including the evolution of NGS technologies, their descriptions and comparisons, bioinformatics challenges of NGS data analysis, and some aspects of NGS data analysis workflows and tools. The document then delves into explanations of specific NGS platforms, their performance characteristics, and the sequencing processes. It discusses the large computational infrastructure and data management needs of NGS, as well as quality control, preprocessing of NGS data, and popular analysis tools and workflows.
Next Generation Sequencing (NGS) in food safety-Game changer or just another ...ExternalEvents
http://tiny.cc/faowgsworkshop
The use of genome sequencing technology on food safety management. Presentation from the FAO expert workshop on practical applications of Whole Genome Sequencing (WGS) for food safety management - 7-8 December 2015, Rome, Italy.
“Next-Generation Sequencing (NGS) Global Market – Forecast To 2022”Vinay Shiva Prasad
Next Generation Sequencing (NGS) has revolutionized the way the human genomes are being sequenced now a days. The time and cost to sequence has tremendously reduced . In the last five years, the sequencing cost has rapidly reduced and this is supposed to have a huge impact on the NGS market in the coming years.
Next-generation sequencing technologies have rapidly advanced since 2005. Key developments include massively parallel sequencing reactions that enabled sequencing of entire human genomes for less than $1,000 by 2015. While Illumina dominates the market, other platforms like Ion Torrent and PacBio are increasing capabilities. Routine human whole genome sequencing is now used in research and medicine, enabling new opportunities like liquid biopsies and single-cell analysis. However, data storage and analysis remain challenges due to the large volumes of sequencing data.
This document provides an overview and comparison of popular next-generation sequencing platforms. It discusses the common sequencing pipeline including library preparation, massively parallel sequencing, and bioinformatics analysis. Popular platforms like Roche 454, Illumina, and SOLiD are described in detail focusing on their specific sequencing chemistries and performance characteristics. Newer third-generation platforms such as Ion Torrent, PacBio, and Oxford Nanopore are also introduced. A wide range of NGS applications from whole genome sequencing to RNA-seq are outlined.
NGS for Infectious Disease Diagnostics: An Opportunity for Growth Alira Health
Infectious diseases are a major public health concern causing over 3.5 million deaths worldwide. Diagnosing patients as quickly and effectively as possible is crucial for managing disease outbreaks. Next-generation sequencing (NGS) provides unique capabilities to understand the genetic profile of infectious disease patients that no other technology can match.
Whole-genome metagenomics allows clinicians to take a deeper dive into pathogens by generating big-data about their characteristics. This data can be rapidly analyzed using complex bioinformatics software algorithms to achieve clinical-grade diagnostic accuracy. In a healthcare system shifting towards personalized medicine, NGS can provide clinicians the tools that they need to prescribe individualized treatments to save patients who were previously untreatable. The result is improved quality of care, better treatment regimes, and cost-saving healthcare.
The field of next-generation sequencing (NGS) has been experiencing explosive growth over the past several years and shows little sign of slowing down. The increasing capabilities and dramatically lowered costs have expanded NGS's reach beyond that of the human genome into nearly every corner of biological research. An overview of the platforms on the market today, including an assessment of their relative strengths and weaknesses, will be presented. The presentation will conclude with a peek into where the technology is going and what will be available in the future.
This document discusses the use of next generation sequencing (NGS) technology for preimplantation genetic screening (PGS). It provides background on PGS and describes the timeline of technologies used, including fluorescence in situ hybridization (FISH), array comparative genomic hybridization (aCGH), SNP microarrays, and NGS. VeriSeq PGS is highlighted as an NGS assay developed by Illumina for PGS using embryos biopsied on day 3 or 5. Studies validating VeriSeq showed 100% consistency with aCGH and karyotyping in detecting chromosome abnormalities. NGS provides advantages over other methods like higher resolution, batch analysis to reduce costs, and ability to detect mosaicism.
Next generation sequencing (NGS) involves chemical assays other than traditional Sanger sequencing to sequence DNA. The basic steps of NGS are: 1) library preparation where DNA is fragmented and adapters are ligated, 2) clonal amplification where fragments are amplified, and 3) sequencing reactions using techniques like pyrosequencing or reversible dye terminators to determine the sequence. The sequenced fragments are then analyzed bioinformatically to map reads and assemble sequences.
Target enrichment enables researchers to focus their next generation sequencing (NGS) efforts on regions of interest, allowing them to obtain more sequencing data relevant to their study. In-solution target capture is a method of enrichment using oligonucleotide probes directed to specific regions within a genome. Target capture can be used to enrich multiple samples simultaneously, reducing the cost per sample, while using individually synthesized probes allows researchers to construct gene panels that can be optimized over time.
A different kettle of fish entirely: bioinformatic challenges and solutions f...Lex Nederbragt
The document discusses the bioinformatic challenges of whole genome assembly for Atlantic cod and Atlantic salmon using high-throughput sequencing techniques. It provides context on the developments in high-throughput sequencing technologies that have enabled increasing throughput and read lengths over time. The hierarchical structure of genome assembly is explained, from initial reads to longer contigs and scaffolds that are pieced together to reconstruct the original genome fragments.
Illumina is a global leader in genomic technologies that provides sequencing and microarray solutions. Their portfolio includes the MiSeq, NextSeq 500, HiSeq 2500, and HiSeq X Ten sequencing platforms. Illumina serves customers in human health, research, reproductive health, forensics, cancer, agriculture and more. Their reproductive and genetic health portfolio addresses the continuum from preconception to pregnancy to genetic conditions. Products highlighted include VeriSeq PGS for embryo screening, Karyomapping for inherited disorder screening, and their non-invasive prenatal testing solution in development. The NextSeq 550 was also introduced as a platform that enables both sequencing and array scanning applications on a single system.
NGS technologies - platforms and applicationsAGRF_Ltd
This document summarizes several next-generation sequencing platforms and applications. It describes the workflows and chemistries of 454, Illumina, SOLiD, and Ion Torrent platforms. These platforms have significantly reduced the cost of sequencing compared to Sanger sequencing. Common applications include whole genome sequencing, RNA sequencing, sequence capture, and amplicon sequencing. Library preparation requires fragmentation of DNA or RNA, addition of adapters, and amplification prior to sequencing.
The Application of Next Generation Sequencing (NGS) in cancer treatmentPremadarshini Sai
Next-generation sequencing (NGS) has several advantages for cancer treatment including high throughput sequencing, screening of multiple genes simultaneously, and decreased costs. NGS faces challenges from complex data analysis and validation of new technologies. Key clinical applications of NGS include whole genome sequencing, transcriptome analysis via RNA-seq, and sequencing of cell-free DNA. Future areas of development include immunotherapy, epigenetics research, and using circulating tumor cells to detect early relapse. More research is still needed to fully realize the potential of NGS in personalized cancer treatment.
This document provides an introduction and overview of next-generation sequencing (NGS) data analysis. It discusses the bioinformatics challenges posed by large NGS datasets, including the need for powerful computing infrastructure and data storage. The document outlines common NGS data analysis workflows and applications, such as quality control, metagenomics, de novo assembly, amplicon analysis and variant detection. It also compares different NGS platforms and provides examples of software tools used in NGS data analysis.
European Data Center Colocation Market: Size and Trends with Impact of COVID-...Daedal Research
The European data center colocation market in 2021 was valued at US$14.03 billion. The market is expected to reach US$29.37 billion by 2027. For more: info@daedal-research.com
Global Coding Bootcamp Market: Size and Trends with Impact of COVID-19 and Fo...Daedal Research
The global coding bootcamp market was valued at US$1.36 billion in 2021, and is predicted to grow to US$3.66 billion in 2027. For more: info@daedal-research.com
Global Digital Transformation Market: Size, and Trends with Impact of COVID-1...Daedal Research
In 2021, the global digital transformation market was valued at US$601.12 billion and is anticipated to grow to US$2065.47 billion by 2027. For more: info@daedal-research.com
Global Aluminum & Film Capacitor Market: Size and Trends with Impact of COVID...Daedal Research
The document provides an analysis of the global aluminum and film capacitor market from 2022-2027. It finds that the global aluminum electrolytic capacitor market was valued at $6.38 billion in 2021 and is expected to reach $9.08 billion by 2027, growing at a CAGR of 6.08%. The global film capacitor market was valued at $3.21 billion in 2021 and is anticipated to reach $4 billion by 2027, growing at a CAGR of 3.8%. The report segments both markets by type, voltage, application, end-users and region. It identifies growth drivers like increasing electric vehicle sales and challenges like high costs. The competitive landscape of major players is also examined.
Global Turbocharger Market: Size And Trends With Impact Of COVID-19 And Forec...Daedal Research
The global turbocharger market in 2021 was valued at US$16.55 billion. The market value is expected to reach US$24.38 billion by 2027. For more: info@daedal-research.com
Global Smart Learning Device Market: Size and Trends with Impact of COVID-19 ...Daedal Research
The global smart learning device market was valued at US$56.28 billion in 2021. The market value is projected to grow to US$154.16 billion by 2027. For more: info@daedal-research.com
Global Copper Market: Size and Trends with Impact of COVID-19 and Forecast up...Daedal Research
The global mined copper market production was 22.42 megatons in 2021. The mined copper production is expected to reach 29.19 megatons by 2027. For more: info@daedal-research.com
Global Quantum Computing Market: Size, and Trends with Impact of COVID-19 and...Daedal Research
In 2021, the global quantum computing market was valued at US$442.32 million> and is anticipated to grow to US$3295.97 million by 2027. For more: info@daedal-research.com
Global Light Vehicle Market with Focus on Premium Segment Size and Trends wit...Daedal Research
The global light vehicle market production in 2021 stood at 75.65 million units, and is likely to reach 135.33 million units by 2027. For more: info@daedal-research.com
The US Car Wash Market: Size and Trends with Impact of COVID-19 and Forecast ...Daedal Research
The report further provided the segmentation based on the following vehicle type: SUV, Sedan, Hatchbacks, and Others. For more: info@daedal-research.com
This document provides an overview and comparison of popular next-generation sequencing platforms. It discusses the common sequencing pipeline including library preparation, massively parallel sequencing, and bioinformatics analysis. Popular platforms like Roche 454, Illumina, and SOLiD are described in detail focusing on their specific sequencing chemistries and performance characteristics. Newer third-generation platforms such as Ion Torrent, PacBio, and Oxford Nanopore are also introduced. A wide range of NGS applications from whole genome sequencing to RNA-seq are outlined.
NGS for Infectious Disease Diagnostics: An Opportunity for Growth Alira Health
Infectious diseases are a major public health concern causing over 3.5 million deaths worldwide. Diagnosing patients as quickly and effectively as possible is crucial for managing disease outbreaks. Next-generation sequencing (NGS) provides unique capabilities to understand the genetic profile of infectious disease patients that no other technology can match.
Whole-genome metagenomics allows clinicians to take a deeper dive into pathogens by generating big-data about their characteristics. This data can be rapidly analyzed using complex bioinformatics software algorithms to achieve clinical-grade diagnostic accuracy. In a healthcare system shifting towards personalized medicine, NGS can provide clinicians the tools that they need to prescribe individualized treatments to save patients who were previously untreatable. The result is improved quality of care, better treatment regimes, and cost-saving healthcare.
The field of next-generation sequencing (NGS) has been experiencing explosive growth over the past several years and shows little sign of slowing down. The increasing capabilities and dramatically lowered costs have expanded NGS's reach beyond that of the human genome into nearly every corner of biological research. An overview of the platforms on the market today, including an assessment of their relative strengths and weaknesses, will be presented. The presentation will conclude with a peek into where the technology is going and what will be available in the future.
This document discusses the use of next generation sequencing (NGS) technology for preimplantation genetic screening (PGS). It provides background on PGS and describes the timeline of technologies used, including fluorescence in situ hybridization (FISH), array comparative genomic hybridization (aCGH), SNP microarrays, and NGS. VeriSeq PGS is highlighted as an NGS assay developed by Illumina for PGS using embryos biopsied on day 3 or 5. Studies validating VeriSeq showed 100% consistency with aCGH and karyotyping in detecting chromosome abnormalities. NGS provides advantages over other methods like higher resolution, batch analysis to reduce costs, and ability to detect mosaicism.
Next generation sequencing (NGS) involves chemical assays other than traditional Sanger sequencing to sequence DNA. The basic steps of NGS are: 1) library preparation where DNA is fragmented and adapters are ligated, 2) clonal amplification where fragments are amplified, and 3) sequencing reactions using techniques like pyrosequencing or reversible dye terminators to determine the sequence. The sequenced fragments are then analyzed bioinformatically to map reads and assemble sequences.
Target enrichment enables researchers to focus their next generation sequencing (NGS) efforts on regions of interest, allowing them to obtain more sequencing data relevant to their study. In-solution target capture is a method of enrichment using oligonucleotide probes directed to specific regions within a genome. Target capture can be used to enrich multiple samples simultaneously, reducing the cost per sample, while using individually synthesized probes allows researchers to construct gene panels that can be optimized over time.
A different kettle of fish entirely: bioinformatic challenges and solutions f...Lex Nederbragt
The document discusses the bioinformatic challenges of whole genome assembly for Atlantic cod and Atlantic salmon using high-throughput sequencing techniques. It provides context on the developments in high-throughput sequencing technologies that have enabled increasing throughput and read lengths over time. The hierarchical structure of genome assembly is explained, from initial reads to longer contigs and scaffolds that are pieced together to reconstruct the original genome fragments.
Illumina is a global leader in genomic technologies that provides sequencing and microarray solutions. Their portfolio includes the MiSeq, NextSeq 500, HiSeq 2500, and HiSeq X Ten sequencing platforms. Illumina serves customers in human health, research, reproductive health, forensics, cancer, agriculture and more. Their reproductive and genetic health portfolio addresses the continuum from preconception to pregnancy to genetic conditions. Products highlighted include VeriSeq PGS for embryo screening, Karyomapping for inherited disorder screening, and their non-invasive prenatal testing solution in development. The NextSeq 550 was also introduced as a platform that enables both sequencing and array scanning applications on a single system.
NGS technologies - platforms and applicationsAGRF_Ltd
This document summarizes several next-generation sequencing platforms and applications. It describes the workflows and chemistries of 454, Illumina, SOLiD, and Ion Torrent platforms. These platforms have significantly reduced the cost of sequencing compared to Sanger sequencing. Common applications include whole genome sequencing, RNA sequencing, sequence capture, and amplicon sequencing. Library preparation requires fragmentation of DNA or RNA, addition of adapters, and amplification prior to sequencing.
The Application of Next Generation Sequencing (NGS) in cancer treatmentPremadarshini Sai
Next-generation sequencing (NGS) has several advantages for cancer treatment including high throughput sequencing, screening of multiple genes simultaneously, and decreased costs. NGS faces challenges from complex data analysis and validation of new technologies. Key clinical applications of NGS include whole genome sequencing, transcriptome analysis via RNA-seq, and sequencing of cell-free DNA. Future areas of development include immunotherapy, epigenetics research, and using circulating tumor cells to detect early relapse. More research is still needed to fully realize the potential of NGS in personalized cancer treatment.
This document provides an introduction and overview of next-generation sequencing (NGS) data analysis. It discusses the bioinformatics challenges posed by large NGS datasets, including the need for powerful computing infrastructure and data storage. The document outlines common NGS data analysis workflows and applications, such as quality control, metagenomics, de novo assembly, amplicon analysis and variant detection. It also compares different NGS platforms and provides examples of software tools used in NGS data analysis.
European Data Center Colocation Market: Size and Trends with Impact of COVID-...Daedal Research
The European data center colocation market in 2021 was valued at US$14.03 billion. The market is expected to reach US$29.37 billion by 2027. For more: info@daedal-research.com
Global Coding Bootcamp Market: Size and Trends with Impact of COVID-19 and Fo...Daedal Research
The global coding bootcamp market was valued at US$1.36 billion in 2021, and is predicted to grow to US$3.66 billion in 2027. For more: info@daedal-research.com
Global Digital Transformation Market: Size, and Trends with Impact of COVID-1...Daedal Research
In 2021, the global digital transformation market was valued at US$601.12 billion and is anticipated to grow to US$2065.47 billion by 2027. For more: info@daedal-research.com
Global Aluminum & Film Capacitor Market: Size and Trends with Impact of COVID...Daedal Research
The document provides an analysis of the global aluminum and film capacitor market from 2022-2027. It finds that the global aluminum electrolytic capacitor market was valued at $6.38 billion in 2021 and is expected to reach $9.08 billion by 2027, growing at a CAGR of 6.08%. The global film capacitor market was valued at $3.21 billion in 2021 and is anticipated to reach $4 billion by 2027, growing at a CAGR of 3.8%. The report segments both markets by type, voltage, application, end-users and region. It identifies growth drivers like increasing electric vehicle sales and challenges like high costs. The competitive landscape of major players is also examined.
Global Turbocharger Market: Size And Trends With Impact Of COVID-19 And Forec...Daedal Research
The global turbocharger market in 2021 was valued at US$16.55 billion. The market value is expected to reach US$24.38 billion by 2027. For more: info@daedal-research.com
Global Smart Learning Device Market: Size and Trends with Impact of COVID-19 ...Daedal Research
The global smart learning device market was valued at US$56.28 billion in 2021. The market value is projected to grow to US$154.16 billion by 2027. For more: info@daedal-research.com
Global Copper Market: Size and Trends with Impact of COVID-19 and Forecast up...Daedal Research
The global mined copper market production was 22.42 megatons in 2021. The mined copper production is expected to reach 29.19 megatons by 2027. For more: info@daedal-research.com
Global Quantum Computing Market: Size, and Trends with Impact of COVID-19 and...Daedal Research
In 2021, the global quantum computing market was valued at US$442.32 million> and is anticipated to grow to US$3295.97 million by 2027. For more: info@daedal-research.com
Global Light Vehicle Market with Focus on Premium Segment Size and Trends wit...Daedal Research
The global light vehicle market production in 2021 stood at 75.65 million units, and is likely to reach 135.33 million units by 2027. For more: info@daedal-research.com
The US Car Wash Market: Size and Trends with Impact of COVID-19 and Forecast ...Daedal Research
The report further provided the segmentation based on the following vehicle type: SUV, Sedan, Hatchbacks, and Others. For more: info@daedal-research.com
Global Kettle Safety Controls Market: Size, Trends & Forecasts (2017-2021)Daedal Research
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The global flexible packaging market grew approximately __% from 2014 to 2015 due to factors like population growth, increasing small households, and e-commerce. The market is expected to continue growing due to reduced food waste, healthy snacking, and packaging innovation. Asia Pacific is the largest region. Plastic is the largest substrate, followed by paper and foil. The consumer flexible packaging segment is larger than industrial flexible packaging, with food as the largest end-user. Key companies profiled are Amcor, Berry Plastic Group, and Bemis.
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This PowerPoint compilation offers a comprehensive overview of 20 leading innovation management frameworks and methodologies, selected for their broad applicability across various industries and organizational contexts. These frameworks are valuable resources for a wide range of users, including business professionals, educators, and consultants.
Each framework is presented with visually engaging diagrams and templates, ensuring the content is both informative and appealing. While this compilation is thorough, please note that the slides are intended as supplementary resources and may not be sufficient for standalone instructional purposes.
This compilation is ideal for anyone looking to enhance their understanding of innovation management and drive meaningful change within their organization. Whether you aim to improve product development processes, enhance customer experiences, or drive digital transformation, these frameworks offer valuable insights and tools to help you achieve your goals.
INCLUDED FRAMEWORKS/MODELS:
1. Stanford’s Design Thinking
2. IDEO’s Human-Centered Design
3. Strategyzer’s Business Model Innovation
4. Lean Startup Methodology
5. Agile Innovation Framework
6. Doblin’s Ten Types of Innovation
7. McKinsey’s Three Horizons of Growth
8. Customer Journey Map
9. Christensen’s Disruptive Innovation Theory
10. Blue Ocean Strategy
11. Strategyn’s Jobs-To-Be-Done (JTBD) Framework with Job Map
12. Design Sprint Framework
13. The Double Diamond
14. Lean Six Sigma DMAIC
15. TRIZ Problem-Solving Framework
16. Edward de Bono’s Six Thinking Hats
17. Stage-Gate Model
18. Toyota’s Six Steps of Kaizen
19. Microsoft’s Digital Transformation Framework
20. Design for Six Sigma (DFSS)
To download this presentation, visit:
https://www.oeconsulting.com.sg/training-presentations
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Introduction
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Global Next Generation Sequencing Market: Trends & Opportunities (2013-2018) New Report by Daedal Research
1. Global Next Generation Sequencing (NGS) Market:
Trends & Opportunities (2013-2018)
February 2014
View Report Details
2. View Report Details
Scope of the Report
The report titled “Global Next Generation Sequencing Market: Trends and Opportunities (20132018)” analyzes the potential opportunities and significant trends in the global Next Generation
Sequencing market. The report also provides detailed analysis of the global next generation
sequencing market, the Sanger Sequencing market and provides specific focus on the clinical
diagnostic opportunities of the NGS technology. The report also profiles and analyzes the business
strategies of the leading companies operating in the segment.
Company Profiles
•
Illumina
•
Life Technology
•
Roche
•
Pacific Bioscience
3. Global Next Generation Sequencing Market
Executive Summary
Next Generation Sequencing (NGS) technology has emerged as a higher throughput and much cheaper alternative
of sequencing DNA than traditional Sanger Sequencing. NGS can be used primarily to identify genes responsible for
inherited skin disease, to detect mutations that play a role in diseases such as cancer and to determine RNA
expression level. The use of NGS technology in clinical research and genome functions is constantly increasing and
there
are
many
clinical
diagnostic
opportunities
for
next
generation
sequencing
such
as
in
oncology
screening, parental screening, Alzheimer diseases, multiple sclerosis etc.
The growth of the overall NGS market is driven by continuous innovations and developments in the market aimed
at higher throughput, increased accuracy, and affordable costs. However factors such as mismatch between
discovery and interpretation of samples, clinical translation of genomic discoveries, difficulty in finding samples to
sequence and storage of sequence data hinders the growth of the market. In addition, factors such as high
reliability on grants and funding from the government are still a challenge. The opportunities for the growth of this
market include developments in the pre-sequencing, cloud computing, and NGS bioinformatics solutions. Next
generation sequencing technology is set to revolutionize applied markets like diagnostics, drug discovery, biomarker
discovery, personalized medicine, agriculture and animals research in the near future.
4. Global Next Generation Sequencing Market: Overview
NGS platforms perform massively parallel sequencing, during which millions of fragments of DNA
from a single sample are sequenced in unison. Massively parallel sequencing technology facilitates
high-throughput sequencing, which allows an entire genome to be sequenced in less than one day.
Global Next Generation Sequencing
Global Next Generation Sequencing Market
Market: 2008 to 2012 (US$ Million)
Forecast: 2013-2018 (US$ Million)
2013
2007
2008
2009
2010
2011
2014
2015
2016
2017
2018
2012
• The industry grew at a CAGR of ………% during the period 2008-2012.
• Market size of next generation sequencing market in 2018 is expected to reach to US$
………..billion from US$ ……… billion in 2012 by growing at a CAGR of……%.
• Growth in the industry is due to ………….
5. Global Next Generation Sequencing Market Share
Market share of Global Genome Tool Industry
by Type (2012)
C
Global Market share of Global NGS Industry by
Company (2012)
D
C
DNA
Microarrays
Pacific
Bioscience
Other
PCR
B
Illumina
A
• Sequencing accounted for ….% share of total genome tool industry in the year 2012, while
the ………. accounts for ……..% of the market share.
• In 2012, around …….% of the total NGS market revenue was generated by…… whereas …….
generated ………%.
7. Table of Contents
1. Executive Summary
3.7 Most Limiting Aspects of Next Generation
2. Introduction
Sequencing Technologies to Workflow
2.1 Genomic
3.8 Funding Source of NGS Labs
2.1.1 Genome Analysis
2.2 Sanger Sequencing
4. Clinical Diagnostic Opportunity for Next Generation
2.2.1 Comparison between Sanger and Next Generation
Sequencing
Sequencing
4.1 NGS Based Test with Clinical Application
2.3 Next Generation Sequencing Methods
2.4 High Throughput Sequencing Technologies
5. Market Dynamics
2.5 Low Throughput Sequencing Technologies
5.1 Growth Drivers
5.1.1 Increasing Population
3. Global Market Size of Next Generation Sequencing
5.1.2 Global GDP
Industry: Analysis and Forecast
5.1.3 Increasing Count of Cancer Patients
3.1 Global Market Size of Genomic Tool Industry
5.2 Challenges
3.1.1 Market Share of Genomic Tools Industry by Segment
5.2.1 Discovery and Interpretation
3.2 Global Market Size of Sequencing Industry
5.2.2 Clinical Translation of Genomic Discoveries
3.3 Global Market Size of Sanger Sequencing Industry
5.2.3 Finding Samples to Sequence
3.3.1 Reasons for Declining Sanger Sequencing Capacity
5.2.4 Compute and Storage for Sequence Data
Utilization
5.3 Market Trends
3.4 Global Market Size of Next Generation Sequencing
5.3.1 Cloud Computing
Industry
5.3.2 NGS Bioinformatics
3.5 Next Generation Sequencing Technology Users
5.3.3 Development in Pre-Sequencing
3.6 Sequencing Cost per Genome
8. Table of Contents
6. Competitive Landscape: NGS Market
7.2 Life Technology
6.1 Comparison of High Throughput and Low Throughput 7.2.1 Business Overview
Platforms by Company
7.2.2 Financial Overview
6.2 Uses of Different Next Generation Systems
7.2.3 Business Overview
6.3 Revenue of the Companies in Next Generation
Sequencing Market
7.3 Roche
6.4 Next Generation Sequencing Market Share by
7.3.1 Business Overview
Company
7.3.2 Financial Overview
6.5 Next Generation Sequencing Market Share in Clinical 7.3.3 Business Strategy
Research Application by Company
6.6 Share of Company Products Used by NGS Labs
7.4 Pacific Biosciences of California Inc
6.7 Revenue Share of Companies’ Instruments and
7.4.1 Business Overview
Reagents
7.4.2 Financial Overview
6.8 Comparison of Next Generation Technologies
7.4.3 Business Strategy
6.9 Next Generation Sequencing Products Release
Timeline by Product Family
7. Company Profiles: NGS Market
7.1 Illumina Inc
7.1.1 Business Overview
7.1.2 Financial Overview
7.1.3 Business Strategy
9. List of Charts
Figure 1: Global Genomic Market Size: 2007 to 2012 (US$ Billion)
Figure 2: Global Genomic Market Size Forecast: 2013 to 2018 (US$ Billions)
Figure 3: Market Share of Genomic Tools Industry by Segment (2012)
Figure 4: Global Sequencing Market Size: 2007 to 2012 (US$ Million)
Figure 5: Global Sequencing Market Size Forecast: 2013 to 2018 (US$ Million)
Figure 6: Global Sanger Sequencing Market Size: 2007 to 2012 (US$ Million)
Figure 7: Global Sanger Sequencing Market Size Forecast: 2013 to 2018 (US$ Million)
Figure 8: Reasons for Declining Sanger Sequencing Capacity Utilization
Figure 9: Global Next Generation Sequencing Market Size: 2007 to 2012 (US$ Million)
Figure 10: Global Next Generation Sequencing Market Size Forecast: 2013 to 2018 (US$ million)
Figure 11: Next Generation Sequencing Technology Users (2013)
Figure 12: Forecasted Next Generation Technology Users
Figure 13: Sequencing Cost per Genome: 2007 to 2012 (US$ Thousand)
Figure 14: Sequencing Cost per Genome Forecasted: 2013 to 2018
Figure 15: Most Limiting Aspects of Next Generation Sequencing Technologies to Workflow
Figure 16: Funding Sources of NGS Labs (2012)
Figure 17: Population Growth by Region: 1990-2010
Figure 18: Global GDP: 2005 to 2012 (US$ Trillion)
Figure 19: Percentage of Deaths from Cancer by Region
Figure 20: Revenue’s of the Companies in NGS Market: 2007 to 2012 (US$ Million)
Figure 21: Next Generation Sequencing Market Share by Company (2012)
Figure 22: Next Generation Sequencing Market Share in Clinical Research Application by Company (2012)
10. List of Charts
Figure 23: Share of Company Products Used by NGS Labs
Figure 24: Revenue Share of Companies’ Instruments and Reagents: 2009 to 2012
Figure 25: Illumina Inc. Revenue: 2008 to 2012 (US$ Million)
Figure 26: Life Technology Revenue: 2008 to 2012 (US$ Billion)
Figure 27: Roche Revenue: 2008 to 2012 (US$ Billion)
Figure 28: Pacific Biosciences Revenue: 2008 to 2012 (US$ Thousands)
List of Tables
Table 1: Comparison of Next Generation Sequencing (NGS) and Sanger Sequencing
Table 2: Comparison of NGS vs. Traditional Sanger Sequencing on the Basis of Technology
Table 3: Comparison of Different Methods of Next Generation Sequencing
Table 4: Diagnostic Opportunity for Next Generation Sequencing
Table 5: NGS Based Test with Clinical Application
Table 6: Comparison of High Throughput and Low Throughput Cost by Company
Table 7: Comparison of High Throughput and Low Throughput Performance by Company
Table 8: Uses of Different Next Generation Systems
Table 9: Comparison of Next Generation Technologies
Table 10: Next Generation Sequencing Products Release Timeline by Product Family
11. Title: Global Next Generation Sequencing (NGS) Market: Trends & Opportunities (2013-18)
Published: February 2014
Pages: 72
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