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Mass Spectrometry: Opportunities in the Life Science Market
BioInformatics, LLC, April 2005, Pages: 226

  Description  

  Table of Contents  
  Methodology  
    
    
   
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Section 1. Analysis and Interpretation of Survey Results

Market Profile: Uses and Applications

- User Profile
- Sample Prep
- Instrument Configuration
- Applications

Market Share

- Current Users and Projected Growth Trend
- Throughput
- Current Suppliers
- Future Purchases

Competitive Dynamics

- Leading Suppliers
- Purchase Motivation
- Data Analysis

Future Directions

- Desired Mass Spectrometer Features
- Quantitative Proteomics Use
- Methods of Quantitative Proteomics
- Multiplexing
- Future Developments in Quantitative Proteomics

Customer Loyalty and Satisfaction

- Loyalty
- Satisfaction


Section 2. Study Methodology and Demographics

- Methodology
- Definition of Terms
- Demographics
- Questionnaire

Section 3. Presentation of Survey DataUsage and Applications (Respondents=653)

- Use of mass spectrometry in research
- Types of scientists*
- Applications for which mass spectrometry is performed
- Applications for which there are plans to perform mass spectrometry*
- Origins of the primary sample studied using mass spectrometry*
- Most significant advantages of identifying proteins using mass spectrometry
- Ways in which protein samples are prepared for mass spectrometer analysis
- Complexity of the samples analyzed by mass spectrometry
- Locations of the mass spectrometers used most often
- Future plans to purchase mass spectrometers
- Timeframe for purchasing new mass spectrometers**
- Suppliers from which new mass spectrometers are most likely to be purchased**

Throughput (Respondents=380)

- Average number of mass spectrometer analyses performed per month
- Change in number of analyses performed over the next 12 months

Mass Spectrometer Instruments (Respondents=380)

- Number of accessible mass spectrometers
- Suppliers of accessible mass spectrometers and suppliers of the newest mass spectrometers
- Ionization sources used in mass spectrometry
- Ion detectors used in mass spectrometry
- Instrument configurations used in mass spectrometry

Most Recently Purchased Mass Spectrometers (Respondents=380)

- When the newest mass spectrometers were purchased
- Reasons why mass spectrometers were purchased from particular suppliers
- Types of software used to analyze the data obtained from the most recently purchased mass spectrometers
- Types of information provided by the software used to analyze the spectral data from the most recently purchased mass spectrometers
- Satisfaction with specific features of the most recently purchased mass spectrometers
- Overall satisfaction with the most recently purchased mass spectrometers
- Change in opinion of most recent supplier
- Likelihood to purchase a mass spectrometer again from the same suppliers
- Likelihood to purchase other equipment from the most recent suppliers
- Likelihood to recommend a mass spectrometer from the most recent suppliers
- Most important features of a new mass spectrometer

Quantitative Proteomics (Respondents=99)

- Familiarity with methods to quantify protein expression
- Planned use of methods to quantify protein expression
- Satisfaction with specific characteristics of the method used for protein quantification
- Overall satisfaction with the method used for protein quantification
- Performance of multiplexing
- Most important areas of development to increase the widespread use of quantitative proteomics
- Greatest challenges with regards to the adoption of mass spectrometry

Section 4. Appendices

- Insights and Perspectives
- Cross
- Tabulations of Survey Data
- Other Recent Publications
- About BioInformatics
- Our Valued Clients* Based on the responses of 653 scientists who currently use MS in their research and 197 scientists who plan to use MS.** Based on the responses of 125 scientists who have plans to purchase a mass spectrometer.


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