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Natural Language Computer Assisted Coding and SOA Healthcare Application Industrial Trend and Market Demand Strategies, Shares and Forecasts, Worldwide, 2010-2016

08-02-2017 01:33 PM CET | Business, Economy, Finances, Banking & Insurance

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Natural Language Computer Assisted Coding and SOA Healthcare

"Natural Language Computer Assisted Coding and SOA Healthcare Application Market Strategies, Shares and Forecasts, Worldwide, 2010-2016" The Report covers current Industries Trends, Worldwide Analysis, Global Forecast, Review, Share, Size, Growth, Effect.

Description-

Natural Language Computer Assisted Coding and SOA Healthcare Application Market Strategies, Shares and Forecasts, Worldwide, 2010-2016. Computer assisted coding markets come together to make information technology delivery a system that supports the efficient and affordable patient treatment environment. CodeRyte is a vendor with advanced systems evolution. Other vendors are achieving ICD-10 capability.

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Computer assisted Coding represents a utility using SOA to manage web services and transport code modules from one application to another, from one facility to another. IBM is the market leader in SOA application middleware with 75% market share.

Coders identify diagnoses and related procedures. These events must have codes assigned to them for use in billing and performance measurement programs. Coders use one system to research medical codes and another to create encoded documents. Inefficiencies in medical coding add $8 billion in administrative costs to the health care system, result in billing and payment errors and slow payments to health care providers.

Computer assisted coding markets are merging with electronic patient record systems. The ability to code medical records depends on the ability to read the chart automatically, creating a need for the coding systems to be part of the electronic records systems. Automated coding of medical records provides significant efficiency to the healthcare delivery system.

Automated process is an essential aspect of business process efficiency. Computer assisted coding represents the most significant aspect of achieving insurance efficiency. At the same time quality of care delivery improves by a quantum amount.

Computer assisted coding of medical information uses natural language solutions to link the physician notes in an electronic patient record to the codes used for billing Medicare, Medicaid, and private insurance companies. Natural language is used determine the links to codes. 80% of the coding can occur automatically without properly designed natural language processing (NLP) solutions do not require physicians to change the way they work. They can dictate in a free flowing fashion, consistent with the way they think, and are not limited to structured inputs that may or may not fully capture the unique circumstances of each patient encounter.

Matching codes generated from physician notes to standard treatment protocols promises to improve health care delivery. Accompanying the more advanced computer generated types of physician patient management coding with measures of best practice promises to revolutionize health care delivery.

The ability to further check as to whether the recommendations for follow up made by radiologists and matching the recommendations with the actual follow up holds significant promise of vastly improved health care delivery.

Systems are implemented with natural language pattern recognition. These patterns are linked to rules and encoded with systems that learn from their mistakes, creating self healing adjustments to how a particular physician works. In order to assign appropriate billing codes based on the language, the context in which those patterns of language occur is buttressed with statistical analysis and rules developed at the outset of using a system.

The Centers for Medicare & Medicaid Services (CMS) requires all health care organizations to use the Statistical Classification of Disease and Related Health Problems (ICD-10) when encoding medical documentation by October 1, 2013. ICD-10 is a sophisticated index of more than 155,000 codes that describe medical conditions and their severity. It will replace ICD-9, which had just 17,000 codes.

According to CMS, ICD-10 will facilitate better analysis of disease patterns, severity and treatment outcomes, and support health care quality improvement efforts. vastly expanded code sets increase the time required to process documentation and the potential for errors, which lead to rejected claims and higher administrative costs.

Markets at $150 million in 2010 are anticipated to reach $2.6 billion by 2016. This growth comes as the electronic patient record is adopted worldwide and as automated process works in combination with sophisticated medical testing and imaging to provide superior, and less expensive healthcare delivery.

Medical testing speeds diagnosis and exposes treatment options faster. Testing is far less expensive than physician and clinician labor. The ability to wring the labor costs out of the healthcare delivery system is what brings efficiency from automated process. This is not so good for the jobs market, but it does vastly improve healthcare delivery.

SOA supports on demand systems providing scale to meet the needs of users. As cloud markets evolve and users only pay for the capacity they use., SOA becomes a significant aspect of all markets going forward. SOA strategies relate to providing a middleware to manage different application access in ways that position software with a more flexible capability. The 2010 SOA study has 650 pages, 206 tables and figures.

The popularity of the on-demand deployment model has increased significantly. Systems provide security, response time, and service availability. SaaS software as a service application is widely known by the salesforce.com computing model illustrates. Business applications and computing models have matured and adoption has become an issue for every IT department. Platform as a service (PaaS) and infrastructure as a service (IaaS) have joined SaaS as compelling aspects of cloud computing applications and infrastructure services.

Table Of Content

Computer Assisted Coding Executive Summary
Computer Assisted Coding Market Driving Forces
Natural Language Computer Assisted Coding Market Shares
Computer Assisted Coding Market Forecasts
Centers for Medicare & Medicaid Services (CMS) CAC to
Ease Transition to ICD-10
SOA For Healthcare Market Shares
Services Oriented Architecture (SOA) Healthcare Market Forecasts

1. Computer Assisted Coding Market Description and Market Dynamics
1.1 Standardized Application Of Coding Guidelines
1.2 Clinical Modification/Procedure Coding System (ICD-10)
1.2.1 Adopting an Electronic Query Process in CDI
1.3 Coding Challenge
1.3.1 Computer Assisted Coding (CAC)
1.3.2 Advances In Natural Language Processing And Informatics
1.4 Computer-Assisted Coding Technology
1.5 Computer-assisted Coding
1.5.1 Industry Forces Affecting Development of CAC
1.5.2 Application of CAC Technology
1.6 Development of a CAC Tool For Hospital Inpatient Use
1.6.1 CAC Impact on the Coding Workflow
1.6.2 Computers Replace Human Coders
1.7 Healthcare Industry Largest In United States
1.7.1 Building a Safer Health System
1.7.2 Facilitating the Use of Technology in the Healthcare Industry
1.7.3 Medicare Prescription Drug Improvement and Modernization Act
1.8 Medical Necessity and Medical Necessity Errors
1.9 Electronic Coding Technologies
1.9.1 Electronic Coding Integrated Database
1.10 Natural Language Solutions
1.10.1 State Of Language Technology Evaluation
1.11 Computerized Workflow System
1.11.1 Confidence Assessment Module
1.11.2 Researching Electronic Coding Products:

2. Computer Assisted Coding Market Shares and Forecasts
2.1 Computer Assisted Coding Market Driving Forces
2.1.1 Computer Assisted Coding of Medical Information Natural Language Market Driving Forces
2.1.2 Medical Best Practice Linking
2.1.3 Best Practice Using NLP Computer Assisted Coding
2.1.4 Natural Language Computer Assisted Coding Medical Information Solutions
2.1.5 Natural Language Coding Solutions
2.2 Natural Language Computer Assisted Coding Market Shares
2.2.1 Ingenix / A-Life Medical, Inc.
2.2.2 Ingenix / A-Life Medical Physician Solutions Computer-Assisted Coding
2.2.3 CodeRyte
2.2.4 CodeRyte’s NLP Engine Built For Compliance
2.2.5 Picis LYNX Pressure On, Observations Up, Admissions Down
2.2.6 LYNX
2.2.7 Cerner / LingoLogix
2.2.8 Med2020
2.2.9 Craneware's Chargemaster Large Multi-Hospital Systems
2.2.10 Craneware Bill Analyzer
2.3 Computer Assisted Coding Market Forecasts
2.3.1 Centers for Medicare & Medicaid Services (CMS) CAC to Ease-Transition to ICD-10
2.4 SOA For Healthcare Market Shares
2.5 Services Oriented Architecture (SOA) Healthcare Market Forecasts
2.6 Computer Assisted Coding Regional Market Segments

3. Computer Assisted Coding Product Description
3.1 Medical Coders Use CAC Software As They Move To ICD-10
3.2 A-Life Medical Physician Solutions Computer-Assisted Coding
3.2.1 A-Life MedicalCoding Services
3.2.2 A-Life MedicalReal-time Coding Integration
3.2.3 A-Life Medical Auditing
3.2.4 A-Life Medical Reconciliation
3.2.5 A-Life Medical Hospital Computer-Assisted Coding Solutions
3.3 CodeRyte
3.3.1 Coderyte Supports Coding In ICD-10
3.3.2 CodeRyte Computer Assisted Coding
3.3.3 CodeRyte CodeAssist
3.3.4 CodeRyte CodeComplete
3.3.5 CodeRyte DataScout
3.3.6 CodeRyte Patterns of Care Recognition
3.3.7 CodeRyte Medical Coding Process Solutions
3.3.8 CodeRyte Multi-Specialty Clinics
3.3.9 CodeRyte Supports Single-Specialty Physician Groups
3.3.10 CodeRyte Support for Billing Companies
3.3.11 CodeRyte Serves Hospitals With Computer Assisted Coding
3.3.12 3M Teams With CodeRyte To Offer Advanced Computer-Assisted Coding Software For ICD 10
3.4 3M Health Information Systems Specializes in Computer Assisted Coding
3.4.1 3M Population Based Tools
3.4.2 3M Health Information Management
3.4.3 3M Health Information Exchange
3.4.4 3M Document Management
3.4.5 3M ChartFact
3.4.6 3M Health Information Systems
3.4.7 3M Open System Architecture
3.4.8 3M Health Information Systems Medical Coding Process
3.4.9 3M™ Ambulatory Revenue Management Software (ARMS)
3.4.10 3M™ APC Editing and Compliance Software
3.4.11 3M™ APC Grouper Plus Software
3.4.12 3M™ APCfinder™ Software
3.4.13 3M™ APCfinder™ Software for TRICARE
3.4.14 3M Grouping Logic
3.4.15 3M Editing
3.4.16 3M Reimbursement
3.4.17 3M™ APCfinder™ Software with Medical Necessity Validation
3.4.18 3M™ APR DRG Classification System
3.4.19 3M™ APR DRG Software

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