【レポートの概要(一部)】
Table Of Contents
1 Introduction (Page No. – 21)
1.1 Key Take Aways
1.2 Report Description
1.3 Markets Covered
1.4 Stakeholders
1.5 Research Methodology
1.5.1 Market Size
1.5.2 Market Share
1.5.3 Key Data Points From Secondary Sources
1.5.4 Key Data Points From Primary Sources
1.5.5 Assumptions
2 Executive Summary (Page No. – 28)
3 Market Overview (Page No. – 31)
3.1 Introduction
3.1.1 Lab Automation Standards
3.2 Evolution
3.3 Market Segmentation
3.4 Market Dynamics
3.4.1 Drivers
3.4.1.1 Miniaturization Of The Process Leading To Low Reagent Cost And High Productivity
3.4.1.2 Progressing Drug Discovery And Clinical Diagnostics
3.4.1.3 Higher Reproducibility And Accuracy
3.4.1.4 Large Workforce Demand And Supply Gap
3.4.1.5 Greater Productivity And Reduction In Costs
3.4.1.6 Better Personnel Safety
3.4.1.7 Smaller Volumes Of Sample And Reagent Required
3.4.2 Restraints
3.4.2.1 Lack Of Planning For Technology Development
3.4.2.2 Automation Not A Priority For Small-Medium Labs
3.4.2.3 IndeFInite Data Interchange/Communication Standards
3.4.3 Opportunities
3.4.3.1 Aging Population Leading To Increase In Number Of Diagnostic Tests Performed In A Lab
3.4.3.2 Wide Scope And Emerging Adoption In Microbiology
3.4.3.3 Need For Flexible And Integrated Solutions
3.4.3.4 Automation In Cancer Research For Early Cancer Detection And Reduction In Cost Of Cancer
3.4.3.5 Biobanking Applications
3.4.3.6 GROWing Automation Need In Various Segments
3.4.4 Challenges
3.4.4.1 Survival For Smaller Players
3.4.4.2 Cost Challenges
3.4.4.3 Changing User Mindset From Manual Operation Towards Automation
3.4.4.4 To Deliver Systems Compatible Across The Labware
3.5 Upcoming Technologies
3.5.1 Introduction
3.5.1.1 Multi-Dimensional Workflow
3.5.1.2 Digital Dispensing Technology
3.5.1.3 Wi-FI Communication In The Lab
3.5.1.4 Semantic Technology
3.5.1.5 Merging Microfluidics/Lab-On-A-Chip Technology (LOC) With Lab Automation Systems
3.6 Market Share Analysis, By Key Players
4 Global Lab Automation Market, By Equipment & Software (Page No. – 53)
4.1 Introduction
4.2 Automated Liquid Handling
4.2.1 Pipetting Systems
4.2.2 Reagent Dispensers
4.2.3 Microplate Washers
4.2.4 Automated Workstations (Multi-Purpose Liquid Handling)
4.2.5 Others
4.3 Microplate Readers
4.3.1 Single-Mode Microplate Readers
4.3.1.1 Absorbance Detection
4.3.1.2 Fluorescence Intensity (FI) Detection
4.3.1.3 Luminescence Detection
4.3.1.4 Others
4.3.2 Multi-Mode Microplate Readers
4.3.2.1 Monochromator-Based Readers
4.3.2.2 FIlter-Based Readers
4.3.2.3 Hybrid Readers
4.4 Stand Alone Robots
4.4.1 Robotic Arms
4.4.2 Track Robot Systems
4.5 Automated Storage & Retrieval Systems (ASRS)
4.6 Software & Informatics
4.6.1 Workstation/Unit Automation Software
4.6.2 Lab Information Management Systems (LIMS)
4.6.3 Electronic Laboratory Notebook (Eln)
4.6.4 ScientiFIc Data Management Systems (SDMS)
4.6.5 Others
4.7 Others
5 Global Lab Automation Market, By Application (Page No. – 95)
5.1 Introduction
5.2 Clinical Diagnostics
5.2.1 Pre-Analytics/Sample Preparation
5.2.2 Sample Distribution, Splitting & Archiving
5.2.3 Elisa
5.2.4 Others
5.3 Drug Discovery
5.3.1 Adme Screening
5.3.2 High Throughput Screening (HTS)
5.3.3 Compound Weighing & Dissolution
5.4 Genomics Solutions
5.4.1 Genotyping
5.4.2 Next Generation Sequencing (NGS) Sample Preparation
5.4.3 Dna/Rna QuantiFIcation & Normalization
5.4.4 Pcr Applications
5.5 Proteomics Solutions
5.5.1 Protein PuriFIcation & Crystallography
5.5.2 Maldi Plate Spotting
6 Global Lab Automation Market, By Type Of Automation (Page No. – 122)
6.1 Introduction
6.2 Modular Automation
6.2.1 Pre-Analytical Automation Systems
6.2.2 Post-Analytical Automation Systems
6.2.3 Unit Automation Solutions
6.3 Total Lab Automation (TLA)
7 Global Lab Automation Market, By End-Users (Page No. – 131)
7.1 Introduction
7.2 Biotechnology & Pharmaceuticals
7.3 Hospitals & Private Labs
7.4 Academics
7.5 Research Institutes
8 Geographic Analysis (Page No. – 140)
8.1 Introduction
8.2 North America
8.3 Europe
8.4 Asia
8.5 Rest Of The World (ROW)
9 Competitive Landscape (Page No. – 178)
9.1 Introduction
9.2 Most Preferred Strategic Approach
9.2.1 Maximum Developments In 2012
9.2.2 Tecan Group Ltd: Overall Most Active Company
9.3 Mergers & Acquisitions
9.4 Agreements, Partnerships, Collaborations & Joint Ventures
9.5 New Product Launch
9.6 Other Developments
10 Company Profiles (Overview, Financials, Products & Services, Strategy, & Developments)* (Page No. – 207)
10.1 ABBOTT Diagnostics
10.2 Agilent Technologies
10.3 Aurora Biomed Inc.
10.4 Biomérieux Sa
10.5 Biotek Instruments, Inc
10.6 Beckman Coulter Inc. (A Subsidiary Of Danaher))
10.7 Eppendorf Ag
10.8 Hamilton Robotics, Inc.
10.9 Labware, Inc.
10.10 Perkinelmer, Inc.
10.11 Qiagen N.V.
10.12 Roche Holding Ag
10.13 Siemens Healthcare (Subsidiary Of Siemens AG)
10.14 Tecan Group Ltd
10.15 Thermo FIsher ScientiFIc, Inc.
*Details On FInancials, Product & Services, Strategy, & Developments Might Not Be Captured In Case Of Unlisted Companies.
【レポート販売概要】
■ タイトル:世界の実験室(研究室)オートメーション市場■ 英文:Lab Automation Market by Equipment & Software (Automated Liquid Handling & Robotics, Microplate Readers, LIMS and Automated Storage), and Applications (Drug Discovery, Clinical Diagnostics, Genomics, Proteomics) - Trends & Global Forecasts to 2017
■ 発行日:2013年6月
■ 調査会社:MarketsandMarkets
■ 商品コード:MD 2023
■ 調査対象地域:グローバル
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