High-risk GI Endoscopy Procedures Increase Possibility of COVID-19 Transmission
The virus stability characteristics and modes of transmission via fomites and air droplets make gastrointestinal (GI) endoscopy a high-risk procedure for COVID-19 transmission. This has led to the postponement and cancellation of medical procedures, which has ultimately slowed down revenue generation in the endoscopic camera systems market. Nevertheless, telehealth services and increasing number of mobile apps are helping medical practitioners and patients to prioritize important endoscopic procedures. Such findings are anticipated to revive market growth.
Companies in the endoscopic camera systems market are taking data-driven decisions before investing in new technologies and regions. They are maintaining stable supply of medical devices in order to improve medical outcomes during the pandemic. Mass vaccination programs and relaxations in lockdown restrictions are encouraging patients to seek professional medical assistance in endoscopic procedures. Stakeholders are establishing seamless communication with partners and robust after-sales services with clients and customers to ensure steady revenue flow.
4-mm High-definition 3D Endoscopes Hold Potentials in Overcoming Limitations in EES
Endoscopic ear surgery (EES) is starting to gain popularity with the release of high-definition camera systems with image quality, which is a thousand times more detailed than a standard camera. With respect to the microscopic size of middle ear structures and the presence of important neurovascular structures in a small space, the use of low-definition systems could negatively affect the performance and outcomes of EES. Thus, companies in the endoscopic camera systems market are capitalizing on this opportunity to unlock income sources for the management of middle ear disease.
Despite technical improvements, the lack of depth perception provided by the two-dimensional (2D) vision and the need to operate with only one hand are some of the most cited limitations in EES. Hence, companies should increase their research in 4-mm high-definition 3D endoscopes that hold promising potentials in overcoming the cited limitations in EES.
Preference for Low-cost Wireless Endoscope Cameras for Minimally Invasive Surgeries
The global endoscopic camera systems market is projected to reach US$ 6.9 Bn by 2031. Companies are working with researchers to innovate in low-cost wireless endoscope cameras. The technology currently used for surgical endoscopy is developed and manufactured in high-income economies. Thus, high cost of this equipment makes technology transfer to resource constrained environments difficult. This has led to the popularity of low-cost wireless endoscope cameras in resource-constrained economies.
Novel wireless endoscope cameras are grabbing the attention of companies in the endoscopic camera systems market and making minimally invasive surgery possible in resource-constrained environments.
Full HD Mobile Endoscope Camera Systems Contributing to Market Expansion
The endoscopic camera systems market is expected to expand at a CAGR of 5.7% during the forecast period. Demanding applications in the otolaryngology (ENT), gynecology, and urology sectors are creating revenue opportunities for med-tech companies. Firefly Global - a provider of wireless portable digital magnifying cameras, is marketing its Redfin R3800 Full HD Mobile Endoscope Camera System, which has powerful 1080p high definition video endoscopy system designed to handle the requirements in plastic surgery, ENT, and gynecology applications.
High quality optics and multiple console output options in next-gen mobile endoscope camera systems are generating income sources for manufacturers in the endoscopic camera systems market. These devices are increasing the possibility of full HD image to any commercial or medical grade monitor. Manufacturers are offering video consoles that are compatible with any standard video recorder.
Certified Refurbished Endoscopic Camera Systems Growing Popular for Delivering HD Images
Companies in the endoscopic camera systems market are anticipated to diversify their offerings in endoscopic video camera systems. Certified refurbished endoscopic camera systems are growing popular and suit the needs of budget-constrained healthcare facilities. The improved image quality is eliminating issues of eye fatigue, which can result from working with a monitor.
The Storz IMAGE1 HD Camera Head is being publicized for its high definition, three-CCD (charge-coupled device) chip in the camera head that captures images in 16:9 format. These cameras are coupled with robust monitors, which help to run a clear picture at a maximum resolution of 1920 x 1080 pixels. Manufacturers in the endoscopic camera systems market are boosting their production capabilities in these camera heads. High definition progressive scan systems help to deliver extremely stable images.
4K UHD Resolution in Camera Systems Align in Working with Large Monitors
Med-tech companies in the endoscopic camera systems market are increasing the production of devices that enable radical adjustments to the image generation systems. Scholly Fiber Optic GmbH - a medical technology manufacturer in Denzlingen, Germany, is gaining recognition for offering its FlexiVision camera platform that provides the basis for premium quality images.
Manufacturers in the endoscopic camera systems market are increasing the availability of camera systems based on state-of –the-art technologies and that can be modified with individual settings. 4K ultra HD (UHD) resolution is being preferred in camera systems that deploy 3840x2160 pixels image size, which is currently one of the highest standard for imaging. This makes it possible to work comfortably with large monitors. Such 4K camera heads offer high quality optical zoom in order to achieve the highest image quality in both circular and full-image endoscopy images.
Pulmonology, Cardiology Applications Triggering Demand for Endoscopic Camera Systems
Suppliers in the endoscopic camera systems market are increasing the availability of new and pre-owned world class surgical HD camera systems that are being used for endoscopy, arthroscopy, laparoscopy, veterinary purposes, and the likes. Improved clarity, focus, and sharpness make endoscopic camera systems ideal for gastroenterology, pulmonology, and cardiology applications. Manufacturers are developing camera systems with wireless transmission capabilities when used with wireless monitors.
Manufacturers are designing camera systems with fully programmable camera head buttons and touchscreen LCD interface. They are tapping incremental opportunities with full HD camera control units (CCU) that are being used for single-use endoscopy. Companies are providing both rigid and flexible full HD CCU platforms. The improved menu navigation is growing prominent in full HD CCU platforms, owing to the developments in the navigation interface.Analysts’ Viewpoint
Stakeholders in the endoscopic camera systems market are implementing comprehensive vendor reviews and making sure they have alternatives for sourcing medical raw materials amid the ongoing COVID-19 outbreak. Although HD camera systems have made technological improvements, the lack of depth of perception provided by the 2D vision and the need to operate with only one hand are some of the limitations associated with the endoscopic ear surgery. Hence, companies should increase R&D in 4-mm HD 3D endoscopes to overcome limitations in the endoscopic ear surgery. Superb image quality and innovative compact form factors are being considered before launching endoscopic camera systems.
Endoscopic Camera Systems Market: Overview
This report analyzes the current and future prospects of the global endoscopic camera systems market. Leading manufacturers of medical devices across the globe are increasing investments in product innovation in order to sustain their market share. Increase in investment by companies in medical research & development is a major factor responsible for continuous efforts toward innovation and new product launches. This, in turn, is estimated to drive the market.
The report provides an elaborate executive summary, which comprises a snapshot of the various segments of the global endoscopic camera systems products market. The report also provides information and data analysis of segments of the global endoscopic camera systems market based on product, sensor type, application, end-user, and region.
The overview section of the report provides detailed qualitative analysis of drivers and restraints affecting the global endoscopic camera systems market, along with opportunities in the global market
Additionally, the global endoscopic camera systems market report includes company profiles and competitive matrix, which provide data about their businesses, product portfolios, and competitive landscape in the global endoscopic camera systems market
The report includes data analysis on the global endoscopic camera systems market attractiveness by region and segments
The last section of the report provides quantitative and qualitative analysis on market share of key players operating in the global endoscopic camera systems market. It elaborates on the key competitive strategies adopted by major industry players, thereby presenting a thorough understanding of the competitive scenario in the global endoscopic camera systems market.
Key Segments
In terms of product, the global endoscopic camera systems market has been bifurcated into device and accessories. Increase in demand for microscopes for medical applications due to rise in the geriatric population suffering from various chronic diseases is likely to fuel the device segment.
Based on sensor type, the complementary metal oxide semiconductor (CMOS) refers to both a particular style of digital circuitry design and the family of processes. It is an extensively employed technology for interface integrated circuit design. It is a low-cost alternative to the expensive CCD chips. This, in turn, is projected to propel the segment.
In terms of application, the global endoscopic camera system market has been divided into gastroenterology, pulmonology, orthopedic surgery, cardiology, ENT surgery, gynecology, neurology, and urology
Based on end-user, the global endoscopic camera systems market has been divided into hospitals, diagnostic centers, and others
The market size and forecast for each of these segments have been provided from 2017 to 2031. The CAGR of respective segment has also been provided for the forecast period from 2021 to 2031, considering 2020 as the base year.
Regional Outlook
The report provides market size and forecast for each region and country/sub-region from 2017 to 2031. Compound annual growth rate (CAGR) of each of these regions and countries have also been provided and also covers the competitive scenario in the regions.
Companies Mentioned in Report
Key players in the global endoscopic camera systems market have been profiled based on key aspects such as company overview, product portfolio, financial overview, recent developments, and competitive business strategies
Key Questions Answered in Endoscopic Camera Systems Market Report
Endoscopic Camera Systems Market – Segmentation
Product
Sensor Type
Application
End-user
Region
1. Preface
1.1. Market Definition and Scope
1.2. Market Segmentation
1.3. Key Research Objectives
1.4. Research Highlights
2. Assumptions and Research Methodology
3. Executive Summary: Global Endoscopic Camera Systems Market
4. Market Overview
4.1. Introduction
4.1.1. Product Definition
4.1.2. Industry Evolution / Developments
4.2. Overview
4.3. Market Dynamics
4.3.1. Drivers
4.3.2. Restraints
4.3.3. Opportunities
4.4. Global Endoscopic Camera Systems Market Analysis and Forecast, 2017–2031
5. Key Insights
5.1. COVID-19 Pandemic Impact on Industry (value chain and short / mid / long term impact)
5.2. Key Industry Events (Mergers, Acquisitions, Partnerships, etc.)
5.3. Product Comparison
6. Global Endoscopic Camera Systems Market Analysis and Forecast, by Product
6.1. Introduction & Definition
6.1.1. Key Findings / Developments
6.2. Global Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
6.2.1. Device
6.2.2. Accessories
6.3. Global Endoscopic Camera Systems Market Attractiveness, by Product
7. Global Endoscopic Camera Systems Market Analysis and Forecast, by Sensor Type
7.1. Introduction & Definition
7.1.1. Key Findings / Developments
7.2. Global Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
7.2.1. Complementary Metal Oxide Semiconductor (CMOS)
7.2.2. Charge-coupled device (CCD)
7.3. Global Endoscopic Camera Systems Market Attractiveness, by Sensor Type
8. Global Endoscopic Camera Systems Market Analysis and Forecast, by Application
8.1. Introduction & Definition
8.1.1. Key Findings / Developments
8.2. Global Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
8.2.1. Gastroenterology
8.2.2. Pulmonology
8.2.3. Orthopedic Surgery
8.2.4. Cardiology
8.2.5. ENT Surgery
8.2.6. Gynecology
8.2.7. Neurology
8.2.8. Urology
8.3. Global Endoscopic Camera Systems Market Attractiveness, by Application
9. Global Endoscopic Camera Systems Market Analysis and Forecast, by End-user
9.1. Introduction & Definition
9.1.1. Key Findings / Developments
9.2. Global Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
9.2.1. Hospitals
9.2.2. Diagnostic Centres
9.2.3. Others
9.3. Global Endoscopic Camera Systems Market Attractiveness, by End-user
10. Global Endoscopic Camera Systems Market Analysis and Forecast, by Region
10.1. Key Findings
10.2. Global Endoscopic Camera Systems Market Value Forecast, by Region
10.2.1. North America
10.2.2. Europe
10.2.3. Asia Pacific
10.2.4. Latin America
10.2.5. Middle East & Africa
10.3. Global Endoscopic Camera Systems Market Attractiveness, by Country/Region
11. North America Endoscopic Camera Systems Market Analysis and Forecast
11.1. Introduction
11.1.1. Key Findings
11.2. North America Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
11.2.1. Device
11.2.2. Accessories
11.3. North America Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
11.3.1. Complementary Metal Oxide Semiconductor (CMOS)
11.3.2. Charge-coupled device (CCD)
11.4. North America Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
11.4.1. Gastroenterology
11.4.2. Pulmonology
11.4.3. Orthopedic Surgery
11.4.4. Cardiology
11.4.5. ENT Surgery
11.4.6. Gynecology
11.4.7. Neurology
11.4.8. Urology
11.5. North America Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
11.5.1. Hospitals
11.5.2. Diagnostic Centres
11.5.3. Others
11.6. North America Endoscopic Camera Systems Market Value Forecast, by Country, 2017–2031
11.6.1. U.S.
11.6.2. Canada
11.7. North America Endoscopic Camera Systems Market Attractiveness Analysis
11.7.1. By Product
11.7.2. By Sensor Type
11.7.3. By Application
11.7.4. By End-user
11.7.5. By Country
12. Europe Endoscopic Camera Systems Market Analysis and Forecast
12.1. Introduction
12.1.1. Key Findings
12.2. Europe Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
12.2.1. Device
12.2.2. Accessories
12.3. Europe Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
12.3.1. Complementary Metal Oxide Semiconductor (CMOS)
12.3.2. Charge-coupled device (CCD)
12.4. Europe Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
12.4.1. Gastroenterology
12.4.2. Pulmonology
12.4.3. Orthopedic Surgery
12.4.4. Cardiology
12.4.5. ENT Surgery
12.4.6. Gynecology
12.4.7. Neurology
12.4.8. Urology
12.5. Europe Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
12.5.1. Hospitals
12.5.2. Diagnostic Centres
12.5.3. Others
12.6. Europe Endoscopic Camera Systems Market Value Forecast, by Country/Sub-region, 2017–2031
12.6.1. Germany
12.6.2. U.K.
12.6.3. France
12.6.4. Spain
12.6.5. Italy
12.6.6. Rest of Europe
12.7. Europe Endoscopic Camera Systems Market Attractiveness Analysis
12.7.1. By Product
12.7.2. By Sensor Type
12.7.3. By Application
12.7.4. By End-user
12.7.5. By Country/Sub-region
13. Asia Pacific Endoscopic Camera Systems Market Analysis and Forecast
13.1. Introduction
13.1.1. Key Findings
13.2. Asia Pacific Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
13.2.1. Device
13.2.2. Accessories
13.3. Asia Pacific Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
13.3.1. Complementary Metal Oxide Semiconductor (CMOS)
13.3.2. Charge-coupled device (CCD)
13.4. Asia Pacific Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
13.4.1. Gastroenterology
13.4.2. Pulmonology
13.4.3. Orthopedic Surgery
13.4.4. Cardiology
13.4.5. ENT Surgery
13.4.6. Gynecology
13.4.7. Neurology
13.4.8. Urology
13.5. Asia Pacific Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
13.5.1. Hospitals
13.5.2. Diagnostic Centres
13.5.3. Others
13.6. Asia Pacific Endoscopic Camera Systems Market Value Forecast, by Country/Sub-region, 2017–2031
13.6.1. China
13.6.2. Japan
13.6.3. India
13.6.4. Australia & New Zealand
13.6.5. Rest of Asia Pacific
13.7. Asia Pacific Endoscopic Camera Systems Market Attractiveness Analysis
13.7.1. By Product
13.7.2. By Sensor Type
13.7.3. By Application
13.7.4. By End-user
13.7.5. By Country/Sub-region
14. Latin America Endoscopic Camera Systems Market Analysis and Forecast
14.1. Introduction
14.1.1. Key Findings
14.2. Latin America Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
14.2.1. Device
14.2.2. Accessories
14.3. Latin America Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
14.3.1. Complementary Metal Oxide Semiconductor (CMOS)
14.3.2. Charge-coupled device (CCD)
14.4. Latin America Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
14.4.1. Gastroenterology
14.4.2. Pulmonology
14.4.3. Orthopedic Surgery
14.4.4. Cardiology
14.4.5. ENT Surgery
14.4.6. Gynecology
14.4.7. Neurology
14.4.8. Urology
14.5. Latin America Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
14.5.1. Hospitals
14.5.2. Diagnostic Centres
14.5.3. Others
14.6. Latin America Endoscopic Camera Systems Market Value Forecast, by Country/Sub-region, 2017–2031
14.6.1. Brazil
14.6.2. Mexico
14.6.3. Rest of Latin America
14.7. Latin America Endoscopic Camera Systems Market Attractiveness Analysis
14.7.1. By Product
14.7.2. By Sensor Type
14.7.3. By Application
14.7.4. By End-user
14.7.5. By Country/Sub-region
15. Middle East & Africa Endoscopic Camera Systems Market Analysis and Forecast
15.1. Introduction
15.1.1. Key Findings
15.2. Middle East & Africa Endoscopic Camera Systems Market Value & Volume Forecast, by Product, 2017–2031
15.2.1. Device
15.2.2. Accessories
15.3. Middle East & Africa Endoscopic Camera Systems Market Value Forecast, by Sensor Type, 2017–2031
15.3.1. Complementary Metal Oxide Semiconductor (CMOS)
15.3.2. Charge-coupled device (CCD)
15.4. Middle East & Africa Endoscopic Camera Systems Market Value Forecast, by Application, 2017–2031
15.4.1. Gastroenterology
15.4.2. Pulmonology
15.4.3. Orthopedic Surgery
15.4.4. Cardiology
15.4.5. ENT Surgery
15.4.6. Gynecology
15.4.7. Neurology
15.4.8. Urology
15.5. Middle East & Africa Endoscopic Camera Systems Market Value Forecast, by End-user, 2017–2031
15.5.1. Hospitals
15.5.2. Diagnostic Centres
15.5.3. Others
15.6. Middle East & Africa Endoscopic Camera Systems Market Value Forecast, by Country/Sub-region, 2017–2031
15.6.1. GCC Countries
15.6.2. South Africa
15.6.3. Rest of Middle East & Africa
15.7. Middle East & Africa Endoscopic Camera Systems Market Attractiveness Analysis
15.7.1. By Product
15.7.2. By Sensor Type
15.7.3. By Application
15.7.4. By End-user
15.7.5. By Country/Sub-region
16. Competition Landscape
16.1. Market Player – Competition Matrix (By Tier and Size of companies)
16.2. Company Profiles
16.2.1. Olympus
16.2.1.1. Company Description
16.2.1.2. Business Overview
16.2.1.3. Strategic Overview
16.2.1.4. SWOT Analysis
16.2.2. Stryker
16.2.2.1. Company Description
16.2.2.2. Business Overview
16.2.2.3. SWOT Analysis
16.2.3. Shenzhen Mindray Bio-Medical Electronics Co., Ltd.
16.2.3.1. Company Description
16.2.3.2. Strategic Overview
16.2.3.3. SWOT Analysis
16.2.4. SCHÖLLY FIBEROPTIC GMBH
16.2.4.1. Company Description
16.2.4.2. Strategic Overview
16.2.4.3. SWOT Analysis
16.2.5. Gimmi GmbH
16.2.5.1. Company Description
16.2.5.2. SWOT Analysis
16.2.6. B. Braun Melsungen AG
16.2.6.1. Company Description
16.2.6.2. Business Overview
16.2.6.3. Strategic Overview
16.2.6.4. SWOT Analysis
16.2.7. KARL STORZ
16.2.7.1. Company Description
16.2.7.2. Strategic Overview
16.2.7.3. SWOT Analysis
16.2.8. Xuzhou AKX Electronic Science And Technology Co., Ltd.
16.2.8.1. Company Description
16.2.8.2. SWOT Analysis
16.2.9. MEDIT INC
16.2.9.1. Company Description
16.2.9.2. SWOT Analysis
16.2.10. Richard Wolf GmbH
16.2.10.1. Company Description
16.2.10.2. Strategic Overview
16.2.10.3. SWOT Analysis