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Automated Visual Field Analyzer Market Size to Touch US$ 365.5 Mn by 2030

The global Automated Visual Field Analyzer market size is expected to be worth around US$ 365.5 Mn by 2030, according to a new report by Vision Research Reports.

Automated Visual Field Analyzer Market (By Product: Static, Kinetic; By End-use: Hospitals, Ophthalmic Clinics, Others) – Global Industry Analysis, Size, Share, Growth, Trends, Revenue, Regional Outlook 2021 – 2030

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Report Coverage Details
Market Size US$ 365.5 Mn by 2030
Growth Rate CAGR of 10.0% From 2021 to 2030
Base year 2020
Historic Data 2017 to 2020
Forecast Period 2021 to 2030
Segments Covered Product, End use
Regional Scope North America, Europe, Asia Pacific, Latin America, Middle East & Africa (MEA)
Companies Mentioned Carl Zeiss; Haag-Streit AG; Elektron Eye Technology; Heidelberg Engineering; Kowa Company, Ltd.; Optopol; OCULUS ; Metrovision; MEDA Co., Ltd.; Topcon

Report Highlights

The static automated visual field analyzer dominated the market for automated visual field analyzer with around 81.8% share in 2020. The static perimeter is the most preferred method for assessing visual field quality, detecting glaucoma, and monitoring glaucoma-related changes in the visual field.  The outcomes of this exam are strongly influenced by the test taker. For that reason, it is usually done twice, and often three times, in a single session. Furthermore, the effective use of the static perimeter for visual field testing in glaucoma-affected children is expected to stimulate the growth of the segment.

The kinetic visual field analyzer segment is anticipated to exhibit the fastest growth rate of 7.28% during the forecast period. Some of the major advantages of kinetic visual field analyzers include their capacity to catch moving stimuli and provide accurate findings. Its primary benefits are improved spatial resolution, quicker peripheral testing, and even more interaction between the examiner and the patient.

The hospital segment held the largest revenue share of around 72.9% in 2020. The rising incidence of eye-related conditions and the technological advancements in the automated visual field analyzer are driving the segment growth. The increasing mergers and acquisitions between ophthalmic nonprofit organizations and hospitals are likely to boost demand for new installations in the coming years. Moreover, favorable reimbursement policies in developed countries, and improving healthcare facilities are factors contributing toward segment growth.

North America dominated the automated visual field analyzer market and accounted for the largest revenue share of around 56.6% in 2020. This can be attributable to the presence of many market players in the region and an increase in the prevalence of ophthalmic diseases. High adoption of latest technologies and favorable reimbursement policies are the factors driving the market for automated visual field analyzers.

Key Players

Market Segmentation

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The study objectives of this report are:

Table of Contents

Chapter 1.  Introduction

1.1.  Research Objective

1.2.  Scope of the Study

1.3.  Definition

Chapter 2.  Research Methodology

2.1.  Research Approach

2.2.  Data Sources

2.3.  Assumptions & Limitations

Chapter 3.  Executive Summary

3.1.  Market Snapshot

Chapter 4.  Market Variables and Scope

4.1.  Introduction

4.2.  Market Classification and Scope

4.3.  Industry Value Chain Analysis

4.3.1.    Raw Material Procurement Analysis

4.3.2.    Sales and Distribution Channel Analysis

4.3.3.    Downstream Buyer Analysis

Chapter 5.  Market Dynamics Analysis and Trends

5.1.  Market Dynamics

5.1.1.    Market Drivers

5.1.2.    Market Restraints

5.1.3.    Market Opportunities

5.2.  Porter’s Five Forces Analysis

5.2.1.    Bargaining power of suppliers

5.2.2.    Bargaining power of buyers

5.2.3.    Threat of substitute

5.2.4.    Threat of new entrants

5.2.5.    Degree of competition

Chapter 6.  Competitive Landscape

6.1.1.    Company Market Share/Positioning Analysis

6.1.2.    Key Strategies Adopted by Players

6.1.3.    Vendor Landscape

6.1.3.1.        List of Suppliers

6.1.3.2.        List of Buyers

Chapter 7.  Global Automated Visual Field Analyzer Market, By Product

7.1.  Automated Visual Field Analyzer Market, by Product, 2021-2030

7.1.1.    Static

7.1.1.1.        Market Revenue and Forecast (2016-2030)

7.1.2.    Kinetic

7.1.2.1.        Market Revenue and Forecast (2016-2030)

Chapter 8.  Global Automated Visual Field Analyzer Market, By End-use

8.1.  Automated Visual Field Analyzer Market, by End-use, 2021-2030

8.1.1.    Hospitals

8.1.1.1.        Market Revenue and Forecast (2016-2030)

8.1.2.    Ophthalmic Clinics

8.1.2.1.        Market Revenue and Forecast (2016-2030)

8.1.3.    Others

8.1.3.1.        Market Revenue and Forecast (2016-2030)

Chapter 9.  Global Automated Visual Field Analyzer Market, Regional Estimates and Trend Forecast

9.1.  North America

9.1.1.    Market Revenue and Forecast, by Product (2016-2030)

9.1.2.    Market Revenue and Forecast, by End-use (2016-2030)

9.1.3.    U.S.

9.1.3.1.        Market Revenue and Forecast, by Product (2016-2030)

9.1.3.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.1.4.    Rest of North America

9.1.4.1.        Market Revenue and Forecast, by Product (2016-2030)

9.1.4.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.2.  Europe

9.2.1.    Market Revenue and Forecast, by Product (2016-2030)

9.2.2.    Market Revenue and Forecast, by End-use (2016-2030)

9.2.3.    UK

9.2.3.1.        Market Revenue and Forecast, by Product (2016-2030)

9.2.3.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.2.4.    Germany

9.2.4.1.        Market Revenue and Forecast, by Product (2016-2030)

9.2.4.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.2.5.    France

9.2.5.1.        Market Revenue and Forecast, by Product (2016-2030)

9.2.5.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.2.6.    Rest of Europe

9.2.6.1.        Market Revenue and Forecast, by Product (2016-2030)

9.2.6.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.3.  APAC

9.3.1.    Market Revenue and Forecast, by Product (2016-2030)

9.3.2.    Market Revenue and Forecast, by End-use (2016-2030)

9.3.3.    India

9.3.3.1.        Market Revenue and Forecast, by Product (2016-2030)

9.3.3.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.3.4.    China

9.3.4.1.        Market Revenue and Forecast, by Product (2016-2030)

9.3.4.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.3.5.    Japan

9.3.5.1.        Market Revenue and Forecast, by Product (2016-2030)

9.3.5.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.3.6.    Rest of APAC

9.3.6.1.        Market Revenue and Forecast, by Product (2016-2030)

9.3.6.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.4.  MEA

9.4.1.    Market Revenue and Forecast, by Product (2016-2030)

9.4.2.    Market Revenue and Forecast, by End-use (2016-2030)

9.4.3.    GCC

9.4.3.1.        Market Revenue and Forecast, by Product (2016-2030)

9.4.3.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.4.4.    North Africa

9.4.4.1.        Market Revenue and Forecast, by Product (2016-2030)

9.4.4.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.4.5.    South Africa

9.4.5.1.        Market Revenue and Forecast, by Product (2016-2030)

9.4.5.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.4.6.    Rest of MEA

9.4.6.1.        Market Revenue and Forecast, by Product (2016-2030)

9.4.6.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.5.  Latin America

9.5.1.    Market Revenue and Forecast, by Product (2016-2030)

9.5.2.    Market Revenue and Forecast, by End-use (2016-2030)

9.5.3.    Brazil

9.5.3.1.        Market Revenue and Forecast, by Product (2016-2030)

9.5.3.2.        Market Revenue and Forecast, by End-use (2016-2030)

9.5.4.    Rest of LATAM

9.5.4.1.        Market Revenue and Forecast, by Product (2016-2030)

9.5.4.2.        Market Revenue and Forecast, by End-use (2016-2030)

Chapter 10.  Company Profiles

10.1.              Carl Zeiss

10.1.1.  Company Overview

10.1.2.  Product Offerings

10.1.3.  Financial Performance

10.1.4.  Recent Initiatives

10.2.              Haag-Streit AG

10.2.1.  Company Overview

10.2.2.  Product Offerings

10.2.3.  Financial Performance

10.2.4.  Recent Initiatives

10.3.              Elektron Eye Technology

10.3.1.  Company Overview

10.3.2.  Product Offerings

10.3.3.  Financial Performance

10.3.4.  Recent Initiatives

10.4.              Heidelberg Engineering

10.4.1.  Company Overview

10.4.2.  Product Offerings

10.4.3.  Financial Performance

10.4.4.  Recent Initiatives

10.5.              Kowa Company, Ltd

10.5.1.  Company Overview

10.5.2.  Product Offerings

10.5.3.  Financial Performance

10.5.4.  Recent Initiatives

10.6.              Optopol

10.6.1.  Company Overview

10.6.2.  Product Offerings

10.6.3.  Financial Performance

10.6.4.  Recent Initiatives

10.7.              OCULUS

10.7.1.  Company Overview

10.7.2.  Product Offerings

10.7.3.  Financial Performance

10.7.4.  Recent Initiatives

10.8.              Metrovision

10.8.1.  Company Overview

10.8.2.  Product Offerings

10.8.3.  Financial Performance

10.8.4.  Recent Initiatives

10.9.              MEDA Co., Ltd.

10.9.1.  Company Overview

10.9.2.  Product Offerings

10.9.3.  Financial Performance

10.9.4.  Recent Initiatives

10.10.           Topcon

10.10.1.               Company Overview

10.10.2.               Product Offerings

10.10.3.               Financial Performance

10.10.4.               Recent Initiatives

Chapter 11.  Research Methodology

11.1.              Primary Research

11.2.              Secondary Research

11.3.              Assumptions

Chapter 12.  Appendix

12.1.              About Us

Glossary of Terms

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