An overview of conceptual frameworks, analytical approaches of the micromanipulator market is the main objective of the report, which further consists the market opportunity and insights of the data involved in the making of the respective market. Micromanipulator market is expected to grow with significant rate in the near future.
The global micromanipulator market in 2020 is estimated for more than US$ 130.8 Mn and expected to reach a value of US$ 807.7 Mn by 2028 with a significant CAGR of 25.6%.
Micromanipulator is a medical device, which serves its utility to perform complicated processes or manipulate minuscule specimens using a microscope. The healthcare sector is having the largest application for the micromanipulation device, consisting of transgenics, IVF, and electrophysiology fields. Micromanipulation device is used to communicate materially with a specimen under a microscope.
Owing to the requirement to perform the manipulation of a specimen under the microscope has slated for the evolution of precision micro tools such as injectors, cutting tools, and holding tubes. In order to precisely observe or micro-manipulate the specimen, it requires the development of a special micro-tools with the alterations and modifications in the design of microscope.
The micromanipulation device comprises many advanced instruments such as the micromanipulator, microinjection systems, micropipette bevellers and pullers, which enables a lab to produce its own micropipettes. Usually, micromanipulators are used with a microscope which is equipped with an input joystick.
In addition to that, for carrying out micromanipulation processes, a stable and vibration-free pace and environment is required as it involves precision work. Micromanipulation can be performed using both inverted microscopes and upright microscopes.
Micromanipulation is also used in the semiconductor industry, genetic engineering, cell biology, in-vitro fertilization, and virology. By the same token, micromanipulators offer a broad variety of applications ranging from cell micromanipulation to industrial micromanipulation, embodying electronic and semiconductors industries and others.
The enormous technological advancements in the healthcare industry and medical activities is one of the primary driving factors that is projected to give breakthrough to the growth of the global micromanipulator market in the near future.
In addition, the escalating need to perform precise manipulation of a specimen is also resulting in the evolution of precision micromanipulators such as injectors, cutting tools, and pipettes, thereby boosting the growth of the global micromanipulator market.
Noticeably, intracytoplasmic sperm injection (ICSI) is one of the most common applications of cell micromanipulation methods in humans. Therefore, the growing incidence of infertility cases across the globe is also acting as a major driving factor propelling the adoption rate for acquiring swift results in IVF-ICSI procedures, ultimately giving a positive push to the growth of the global micromanipulator market in the upcoming years.
Furthermore, a rising count of research institutes, fertility clinics, and fertility tourism across the world is further generating new growth opportunities for the players in the micromanipulators market, thus confirming significant growth of the global micromanipulator market in the coming years.
The global micromanipulator market is segmented on the basis of product type, end user, and by region.
On the basis of product type, the global micromanipulator market is segmented into
• Electrical Micromanipulator
• Hydraulic Micromanipulator
• Manual Micromanipulator
While on the basis of end user the market can be segmented into
• Hospitals
• Semiconductor manufacturers
• Electronic manufacturers
• Fertility centres
• Specialty Clinics
On the basis of Region, the global micromanipulator market is segmented into
• North America (U.S., Canada)
• Latin America (Brazil, Mexico, Argentina, Rest of Latin America)
• Europe (U.K., Germany, Italy, France, Spain, Russia, Poland, BENELUX, NORDIC)
• Asia Pacific (China, India, Japan, Australia and New Zealand, South Korea, ASEAN, Rest of Asia)
• Middle East (GCC Countries, Israel, Oman, Rest of Middle East)
• Africa (South Africa, Egypt, North Africa, Rest of Africa)
Some of the key participating players in the micromanipulator market are Nikon Healthcare, Micro Control Instruments, Leica Microsystems, GmbH, Micromanipulators Company, Meyer Instruments Inc., Singer Instruments, Imina Technologies SA, Zeiss, and Unisense.
The non-identical approach of Meridian Market Consultants stands with conceptual methods backed up with the data analysis. The novel market understanding approach makes up the standard of the assessment results that give better opportunity for the customers to put their effort.
A research report on the Micromanipulator market by Meridian Market Consultants is an in-depth and extensive study of the market based on the necessary data crunching and statistical analysis. It provides a brief view of the dynamics flowing through the market, which includes the factors that supports market and the factors that are acting as impedance for the growth of the market.
Furthermore, the report includes the various trends and opportunities in the respective market in different regions for a better understanding of readers that helps to analyze the potential of the market. The report is titled as ‘Micromanipulator Market: Opportunity Analysis and Future Assessment 2020-2028’.
Various factors that are benchmarked while estimating the market growth includes (but not restricted to):
New product designs and launches
Current product compliance
Reimbursement
Concerns for use of Micromanipulator
Advantages of Micromanipulator
Actions taken by the manufacturer and respective regulatory authorities also impact the market growth of the segment. These factors are understood at regional level and in major countries globally for providing regional insights of the product segment in the report. This helps our clients to take informed decision.
A mix of top-down and bottom-up approach is followed to arrive and validate our market value estimations. For a product segment like wherein one/two manufacturer(s) dominates the market, it’s products sales, previous growth rates and market expansion plans are considered to generate market share in the global market.
1. Global Micromanipulator Market Report Overview
1.1. Introduction
1.2. Report Description
1.3. Methodology
2. Global Micromanipulator Market Overview
2.1. Introduction
2.1.1. Market Definition
2.1.2. Market Taxonomy
2.2. Executive Summary
2.3. Global Micromanipulator Market Snapshot
2.4. Global Micromanipulator Market Size and Forecast, 2020–2028
2.4.1. Introduction
2.4.2. Market Value Forecast and Annual Growth Rate (AGR) Comparison (2020–2028)
2.5. Global Micromanipulator Market Dynamics
2.5.1. Drivers
2.5.2. Restraints
2.5.3. Opportunity
2.5.4. Trends
2.6. Key Regulations
2.7. Porter’s Five Forces Model
3. Global Micromanipulator Market, By Product type
3.1. Introduction
3.1.1. Annual Growth Rate Comparison, By Product type
3.1.2. BPS Analysis, By Product type
3.2. Market Revenue (US$Mn) Forecast, By Product type
3.2.1. Electrical Micromanipulator
3.2.2. Hydraulic Micromanipulator
3.2.3. Manual Micromanipulator
3.3. Global Micromanipulator Market Attractiveness Index, By Product type
4. Global Micromanipulator Market, By End User
4.1. Introduction
4.1.1. Annual Growth Rate Comparison, By End User
4.1.2. BPS Analysis, By End User
4.2. Market Revenue (US$Mn) Forecast, By End User
4.2.1. Hospitals
4.2.2. Semiconductor manufacturers
4.2.3. Electronic manufacturers
4.2.4. Fertility centres
4.2.5. Specialty Clinics
4.3. Global Micromanipulator Market Attractiveness Index, By End User
5. Global Micromanipulator Market, By Region
5.1. Introduction
5.1.1. Annual Growth Rate Comparison, By Region
5.1.2. BPS Analysis, By Region
5.2. Market Revenue (US$Mn) Forecast, By Region
5.2.1. North America
5.2.2. Latin America
5.2.3. Europe
5.2.4. Asia Pacific
5.2.5. Middle East
5.2.6. Africa
5.3. Global Micromanipulator Market Attractiveness Index, By Region
6. North America Micromanipulator Market Analysis and Forecast, 2020–2028
6.1. Introduction
6.1.1. Annual Growth Rate Comparison, By Country
6.1.2. BPS Analysis, By Country
6.2. Market Revenue (US$Mn) Forecast, By Country
6.2.1. U.S. Micromanipulator Market
6.2.2. Canada Micromanipulator Market
6.3. North America Micromanipulator Market, By Product type
6.3.1. Electrical Micromanipulator
6.3.2. Hydraulic Micromanipulator
6.3.3. Manual Micromanipulator
6.4. North America Micromanipulator Market, By End User
6.4.1. Hospitals
6.4.2. Semiconductor manufacturers
6.4.3. Electronic manufacturers
6.4.4. Fertility centres
6.4.5. Specialty Clinics
6.5. North America Micromanipulator Market Attractiveness Index
6.5.1. By Country
6.5.2. By Product type
6.5.3. By End User
7. Latin America Micromanipulator Market Analysis and Forecast, 2020–2028
7.1. Introduction
7.1.1. Annual Growth Rate Comparison, By Country
7.1.2. BPS Analysis, By Country
7.2. Market (US$Mn) Forecast, By Country
7.2.1. Brazil Micromanipulator Market
7.2.2. Mexico Micromanipulator Market
7.2.3. Argentina Micromanipulator Market
7.2.4. Rest of Latin America Micromanipulator Market
7.3. Latin America Micromanipulator Market, By Product type
7.3.1. Electrical Micromanipulator
7.3.2. Hydraulic Micromanipulator
7.3.3. Manual Micromanipulator
7.4. Latin America Micromanipulator Market, By End User
7.4.1. Hospitals
7.4.2. Semiconductor manufacturers
7.4.3. Electronic manufacturers
7.4.4. Fertility centres
7.4.5. Specialty Clinics
7.5. Latin America Micromanipulator Market Attractiveness Index
7.5.1. By Country
7.5.2. By Product type
7.5.3. By End User
8. Europe Micromanipulator Market Analysis and Forecast, 2020–2028
8.1. Introduction
8.1.1. Annual Growth Rate Comparison, By Country
8.1.2. BPS Analysis, By Country
8.2. Market (US$Mn) Forecast, By Country
8.2.1. U.K. Micromanipulator Market
8.2.2. Germany Micromanipulator Market
8.2.3. Italy Micromanipulator Market
8.2.4. France Micromanipulator Market
8.2.5. Spain Micromanipulator Market
8.2.6. Russia Micromanipulator Market
8.2.7. Poland Micromanipulator Market
8.2.8. BENELUX Micromanipulator Market
8.2.9. NORDIC Micromanipulator Market
8.2.10. Rest of Europe Micromanipulator Market
8.3. Europe Micromanipulator Market, By Product type
8.3.1. Electrical Micromanipulator
8.3.2. Hydraulic Micromanipulator
8.3.3. Manual Micromanipulator
8.4. Europe Micromanipulator Market, By End User
8.4.1. Hospitals
8.4.2. Semiconductor manufacturers
8.4.3. Electronic manufacturers
8.4.4. Fertility centres
8.4.5. Specialty Clinics
8.5. Europe Micromanipulator Market Attractiveness Index
8.5.1. By Country
8.5.2. By Product type
8.5.3. By End User
9. Asia Pacific Micromanipulator Market Analysis and Forecast, 2020–2028
9.1. Introduction
9.1.1. Annual Growth Rate Comparison, By Country
9.1.2. BPS Analysis, By Country
9.2. Market (US$Mn) Forecast, By Country
9.2.1. China Micromanipulator Market
9.2.2. India Micromanipulator Market
9.2.3. Japan Micromanipulator Market
9.2.4. Australia and New Zealand Micromanipulator Market
9.2.5. South Korea Micromanipulator Market
9.2.6. ASEAN Micromanipulator Market
9.2.7. Rest of Asia Pacific Micromanipulator Market
9.3. Asia Pacific Micromanipulator Market, By Product type
9.3.1. Electrical Micromanipulator
9.3.2. Hydraulic Micromanipulator
9.3.3. Manual Micromanipulator
9.4. Asia Pacific Micromanipulator Market, By End User
9.4.1. Hospitals
9.4.2. Semiconductor manufacturers
9.4.3. Electronic manufacturers
9.4.4. Fertility centres
9.4.5. Specialty Clinics
9.5. Asia Pacific Micromanipulator Market Attractiveness Index
9.5.1. By Country
9.5.2. By Product type
9.5.3. By End User
10. Middle East Micromanipulator Market, By Region
10.1. Introduction
10.1.1. Annual Growth Rate Comparison, By Country
10.1.2. BPS Analysis, By Country
10.2. Market (US$Mn) Forecast, By Country
10.2.1. GCC Countries Micromanipulator Market
10.2.2. Israel Micromanipulator Market
10.2.3. Oman Micromanipulator Market
10.2.4. Rest of Middle East Micromanipulator Market
10.3. Middle East Micromanipulator Market, By Product type
10.3.1. Electrical Micromanipulator
10.3.2. Hydraulic Micromanipulator
10.3.3. Manual Micromanipulator
10.4. Middle East Micromanipulator Market, By End User
10.4.1. Hospitals
10.4.2. Semiconductor manufacturers
10.4.3. Electronic manufacturers
10.4.4. Fertility centres
10.4.5. Specialty Clinics
10.5. Middle East Micromanipulator Market Attractiveness Index
10.5.1. By Country
10.5.2. By Product type
10.5.3. By End User
11. Africa Micromanipulator Market, By Region
11.1. Introduction
11.1.1. Annual Growth Rate Comparison, By Country
11.1.2. BPS Analysis, By Country
11.2. Market (US$Mn) Forecast, By Country
11.2.1. South Africa Micromanipulator Market
11.2.2. Egypt Micromanipulator Market
11.2.3. North Africa Micromanipulator Market
11.2.4. Rest of Africa Micromanipulator Market
11.3. Africa Micromanipulator Market, By Product type
11.3.1. Electrical Micromanipulator
11.3.2. Hydraulic Micromanipulator
11.3.3. Manual Micromanipulator
11.4. Africa Micromanipulator Market, By End User
11.4.1. Hospitals
11.4.2. Semiconductor manufacturers
11.4.3. Electronic manufacturers
11.4.4. Fertility centres
11.4.5. Specialty Clinics
11.5. Africa Micromanipulator Market Attractiveness Index
11.5.1. By Country
11.5.2. By Product type
11.5.3. By End User
12. Recommendation
12.1. Market Strategy
13. Competitive Landscape
13.1. Competition Dashboard
13.2. List and Company Overview of Global Key Players
13.3. Company Profiles
13.3.1. Nikon Healthcare
13.3.1.1. Company Overview
13.3.1.2. Financial Overview
13.3.1.3. Product Portfolio
13.3.1.4. Key Developments
13.3.1.5. Business Strategies
13.3.2. Micro Control Instruments
13.3.3. Leica Microsystems GmbH
13.3.4. Micromanipulators Company
13.3.5. Meyer Instruments Inc.
13.3.6. Singer Instruments
13.3.7. Imina Technologies SA
13.3.8. Zeiss
13.3.9. Unisense
14. Acronyms