Advanced Methods of Cryopreservation Show Potential in Avoiding Passage of COVID-19

The onset of the COVID-19 pandemic has altered business processes in the global centrifugation-free sperm separation systems market. The risk of cross-contamination in cryobanks and IVF (In Vitro Fertilization) centers has surged due to the ongoing pandemic. As such, there is lack of any reported cases that suggest the production of a disease or the novel infection in a patient or a recipient of donor reproductive tissue.

Companies in the centrifugation-free sperm separation systems market are increasing awareness about their advanced methods for IVF and cryopreservation, which have the potential to avoid the passage of COVID-19 via fertility treatment. There is a growing awareness about the fact that ova and embryos are poor vectors for diseases. Moreover, liquid nitrogen sterilization methods hold promising potentials for minimizing viral exposure risks during cryostorage.

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Continuous R&D Necessary to Improve Microfluidics for Sperm Sorting

Microfluidic systems are playing an important role in the democratization of sperm sorting technologies, whilst improving the results of current sorting techniques. However, there is a lack of study and evidence that shows better outcome of IVF with sperm cells selected with a microfluidic sperm sorter. This explains why the centrifugation-free sperm separation systems market is slated to register a modest CAGR of ~4% during the assessment period. The ongoing research by companies is paving the way for paradigm shifts in sperm sorting technologies.

Active and passive selection methods are growing popular in microfluidic sperm sorters (MFSSs). This technique is increasingly replacing current technologies that are time consuming and help to meet growing demand for assisted reproductive technologies (ARTs).

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PMMA-based Microdevices Help in High-quality Sperm Selection

The selection of high-quality sperm is essential for successful IVF. This has led to the popularity of polymethyl methacrylate (PMMA)-based microdevice, which is being designed and fabricated for efficient sperm evaluation & screening. As human cervical mucus has high viscosity, but without enough swimming persistence, the human sperm clouds cannot arrive at the ampulla to fertilize the egg. Hence, companies in the centrifugation-free sperm separation systems market are increasing their focus in PMMA-based microdevices that help to evaluate the swimming capability of human sperm clouds and analyze their persistence in a viscous environment. Companies in the centrifugation-free sperm separation systems market are suggesting this device can achieve a one-stop procedure for high-quality sperm selection.

MS-based Sperm Processing Associated with Improved Motility in Sperm Fraction

The migration sedimentation (MS) of spermatozoa is expected to avoid the deleterious effects of centrifugation. Since MS is associated with improved motility in sperm fraction, companies in the centrifugation-free sperm separation systems market are taking cues from devices such as the one developed by Menicon Life Science, Japan. Companies are gaining a strong research base in devices made of transparent bio-compatible Cyclo olefin polymer made by the company.

Companies in the centrifugation-free sperm separation systems market are increasing the availability for MS-based sperm processing, which offers an alternative to traditional sperm selection techniques. This involves isolating enriched fraction of spermatozoa from an unprocessed ejaculate.

Isolation of Non-motile Sperm from Background Cell Contaminants Gains Importance

The rising trend of infertility worldwide is creating research opportunities for companies in the centrifugation-free sperm separation systems market. This is resulting in the demand for microfluidic technologies that show promising opportunities for male infertility treatment and growing demand for ARTs. Medical conditions such as obstructive azoospermia (OA) and non-obstructive azoospermia (NOA) are acting as key drivers for the expansion of the centrifugation-free sperm separation systems market.

Companies are developing motility-based sperm selection devices to enable laminar flow boundaries, chemotaxis, and rheotaxis in order to achieve effective sperm selection. As such, there is a growing need for methods and devices that focus on the isolation of non-motile sperm from background cell contaminants.

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Analysts’ Viewpoint

The MS is gaining popularity in assisted fertilization programs. However, its benefits to apply in assisted fertilization are not established with the adequate fundamental scientific evidence. Hence, companies are increasing their R&D efforts to develop disposable devices that are relatively inexpensive and intended to use without the need for special technical skills or equipment.

For men who undergo testicular surgery due to azoospermia, companies in the centrifugation-free sperm separation systems market are developing a microfluidic, 3D (3 dimensional) printed sperm separation device. This technology is gaining increased attention, since it allows technicians to recover sperm from biopsied tissue suspensions within few minutes. This helps to eliminate the hassles of human error associated with extended sample microscopy.

Centrifugation-free Sperm Separation Systems Market: Overview

  • Centrifugation-free sperm separation system is a simple, centrifugation-free, sperm-sorting device, which eliminates the risk of centrifugation in the swim-up method, while maintaining functional competence and DNA integrity of selected spermatozoa
  • Centrifugation-free sperm separation systems help to prevent centrifugation-induced damage to sperm. Based on motility and with the help of gravity, sperm cells can sediment at the bottom of a tube without centrifugation. Different types of technique used for centrifugation-free sperm separation are migration-sedimentation (MS), microfluidic sperm sorters (MFSSs), and others.
  • Increase in incidence of infertility in men and women, and rise in in-vitro fertilization procedures are projected to drive the global centrifugation-free sperm separation systems market
  • Incidence of infertility in men and women is gradually increasing across the globe. Several factors are responsible for infertility, including high alcohol consumption, smoking cigarettes, hormone imbalance, chronic diseases such as diabetes, lupus, arthritis, hypertension, and asthma; genetic problems, and others. Infertility affects millions of people of reproductive age globally and has an impact on their families and communities. According to the WHO, 90 million couples and 186 million individuals live with infertility globally.
  • Increase in in-vitro fertilization procedures drives the demand for centrifugation-free sperm separation systems. Rise in number of men and women with infertility increases the number of in-vitro fertilization procedures. Surge in demand for good quality sperm for in vitro fertilization procedures is likely to boost the growth of the market. According to the WHO, over 8 million children have been born through IVF globally, and around 2.5 million cycles are being performed every year, resulting in over 500,000 deliveries annually.

Market Segmentation: Centrifugation-free Sperm Separation Systems Market

  • In terms of technique, the global centrifugation-free sperm separation systems market has been classified into migration-sedimentation (MS), microfluidic sperm sorters (MFSSs), and others
  • Based on end user, the global centrifugation-free sperm separation systems market has been divided into hospitals & clinics, cryobanks, IVF centers, and others
  • Each of the segments has been analyzed in detail for centrifugation-free sperm separation systems trends, recent trends & developments, drivers, restraints, opportunities, and useful insights. The centrifugation-free sperm separation systems market report provides current and future revenue (US$ Mn) for each of these segments for the period from 2017 to 2031, considering 2019 as the base year. The compound annual growth rate (% CAGR) has been provided for each segment and market from 2021 to 2031 along with market size estimations.

Regional Overview: Centrifugation-free Sperm Separation Systems Market

  • In terms of region, the global centrifugation-free sperm separation systems market has been divided into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa. The regions have been divided into major countries and sub-regions.
  • North America accounted for the largest share of the global centrifugation-free sperm separation systems market in 2019. The trend is expected to continue during the forecast period. Growth of the centrifugation-free sperm separation systems market in North America can be primarily ascribed to presence of major players, significant healthcare expenditure, early availability of new techniques, and increase in research activities across the country.
  • Asia Pacific is projected to gain market share during the forecast period. Product launches, acquisitions, distribution agreements, alliances, and geographical expansion by local players, especially in China and India, are expected to propel the centrifugation-free sperm separation systems market in the region. High infertility rate in countries such as India and China and rise in demand for centrifugation-free sperm separation systems drive the market in the region.
  • The current and future market sizes in terms of value (US$ Mn) of these regional markets and major countries have been provided in the report for the period from 2017 to 2031, along with CAGRs for the period from 2021 to 2031
  • The study also offers a list of recommendations, highlights, and useful insights of the market, which are estimated to help new companies willing to enter the market and existing companies to increase market share and in the decision-making process

Centrifugation-free Sperm Separation Systems Market Players

  • The report concludes with the company profiles section that includes key information about the major players in the global centrifugation-free sperm separation systems market
  • Leading players analyzed in the report are
    • CooperSurgical, Inc.
    • Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc.
    • Memphasys Ltd.
    • DxNow
    • SAR Healthline Pvt. Ltd.
    • Lotus Bio
    • other prominent players
  • Each of these players has been profiled in the report based on parameters such as company overview, financial overview, business strategies, product portfolio, business segments, and recent developments

Centrifugation-free Sperm Separation Systems Market – Segmentation

TMR’s study on the global centrifugation-free sperm separation systems market includes information divided into three segments: technique, end user, and region. Changing industry trends and other crucial market dynamics associated with these segments of the global centrifugation-free sperm separation systems market are discussed in detail.

Technique
  • Migration-sedimentation (MS)
  • Microfluidic Sperm Sorters (MFSSs)
  • Others
End User
  • Hospitals & Clinics
  • Cryobanks
  • IVF Centers
  • Others
Region
  • North America
  • Europe
  • Asia Pacific
  • Latin America
  • Middle East & Africa

Frequently Asked Questions

Centrifugation-free sperm separation systems market to reach valuation of ~US$ 200 Mn by 2031

Centrifugation-free sperm separation systems market is slated to register a modest CAGR of ~4% during 2021-2031

Centrifugation-free sperm separation systems market is driven by increase in incidence of infertility in men and women and surge in number of IVF centers across the globe

North America dominated the global centrifugation-free sperm separation systems market and the trend is anticipated to continue during the forecast period

Key players operating in the global centrifugation-free sperm separation systems market include CooperSurgical, Inc., Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc., Memphasys Ltd., DxNow, SAR Healthline Pvt. Ltd., and Lotus Bio.

1. Preface

    1.1. Report Scope and Market Segmentation 

    1.2. Research Highlights

2. Assumptions and Research Methodology

    2.1. Assumptions and Acronyms Used

    2.2. Research Methodology

3. Executive Summary

4. Market Overview

    4.1. Introduction

    4.2. Market Dynamics

        4.2.1. Drivers

        4.2.2. Restraints

        4.2.3. Opportunity

    4.3. Global Centrifugation-free Sperm Separation Systems Market Forecast

    4.4. Global Centrifugation-free Sperm Separation Systems Market Outlook

5. Market Outlook

    5.1. Technological Advancement

    5.2. Infertility Prevalence & Incidence Rate Globally with Key Countries

    5.3. Key Brands in Market 

    5.4. Impact of COVID-19 Pandemic

6. Global Centrifugation-free Sperm Separation Systems Market Analysis, by Technique

    6.1. Introduction 

    6.2. Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique

    6.3. Global Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        6.3.1. Migration-sedimentation (MS)

        6.3.2. Microfluidic Sperm Sorters (MFSSs)

        6.3.3. Others

    6.4. Global Centrifugation-free Sperm Separation Systems Market Analysis, by Technique

    6.5. Global Centrifugation-free Sperm Separation Systems Market Attractiveness Analysis, by Technique

7. Global Centrifugation-free Sperm Separation Systems Market Analysis, by End-user

    7.1. Introduction

    7.2. Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user

    7.3. Global Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        7.3.1. Hospitals & Clinics

        7.3.2. Cryobanks

        7.3.3. IVF Centers

        7.3.4. Others

    7.4. Global Centrifugation-free Sperm Separation Systems Market Analysis, by End-user

    7.5. Global Centrifugation-free Sperm Separation Systems Market Attractiveness Analysis, by End-user

8. Global Centrifugation-free Sperm Separation Systems Market Analysis, by Region

    8.1. Global Centrifugation-free Sperm Separation Systems Market Analysis, by Region

    8.2. Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Region

    8.3. Global Centrifugation-free Sperm Separation Systems Market Forecast, by Region

        8.3.1. North America

        8.3.2. Europe

        8.3.3. Asia Pacific

        8.3.4. Latin America

        8.3.5. Middle East & Africa

9. North America Centrifugation-free Sperm Separation Systems Market Analysis

    9.1. North America Centrifugation-free Sperm Separation Systems Market Overview

    9.2. North America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Country

    9.3. North America Centrifugation-free Sperm Separation Systems Market Forecast, by Country

        9.3.1. U.S.

        9.3.2. Canada

    9.4. North America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Technique

    9.5. North America Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        9.5.1. Migration-sedimentation (MS)

        9.5.2. Microfluidic Sperm Sorters (MFSSs)

        9.5.3. Others

    9.6. North America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by End-user

    9.7. North America Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        9.7.1. Hospitals & Clinics

        9.7.2. Cryobanks

        9.7.3. IVF Centers

        9.7.4. Others

10. Europe Centrifugation-free Sperm Separation Systems Market Analysis

    10.1. Europe Centrifugation-free Sperm Separation Systems Market Overview

    10.2. Europe Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Country/Sub-region

    10.3. Europe Centrifugation-free Sperm Separation Systems Market Forecast, by Country/Sub-region

        10.3.1. Germany

        10.3.2. France

        10.3.3. U.K.

        10.3.4. Italy

        10.3.5. Spain

        10.3.6. Rest of Europe

    10.4. Europe Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Technique

    10.5. Europe Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        10.5.1. Migration-sedimentation (MS)

        10.5.2. Microfluidic Sperm Sorters (MFSSs)

        10.5.3. Others

    10.6. Europe Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by End-user

    10.7. Europe Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        10.7.1. Hospitals & Clinics

        10.7.2. Cryobanks

        10.7.3. IVF Centers

        10.7.4. Others

11. Asia Pacific Centrifugation-free Sperm Separation Systems Market Analysis

    11.1. Asia Pacific Centrifugation-free Sperm Separation Systems Market Overview

    11.2. Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Country/Sub-region

    11.3. Asia Pacific Centrifugation-free Sperm Separation Systems Market Forecast, by Country/Sub-region

        11.3.1. Japan

        11.3.2. China

        11.3.3. India

        11.3.4. Australia & New Zealand

        11.3.5. Rest of Asia Pacific

    11.4. Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Technique

    11.5. Asia Pacific Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        11.5.1. Migration-sedimentation (MS)

        11.5.2. Microfluidic Sperm Sorters (MFSSs)

        11.5.3. Others

    11.6. Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by End-user

    11.7. Asia Pacific Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        11.7.1. Hospitals & Clinics

        11.7.2. Cryobanks

        11.7.3. IVF Centers

        11.7.4. Others

12. Latin America Centrifugation-free Sperm Separation Systems Market Analysis

    12.1. Latin America Centrifugation-free Sperm Separation Systems Market Overview

    12.2. Latin America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Country/Sub-region

    12.3. Latin America Centrifugation-free Sperm Separation Systems Market Forecast, by Country/Sub-region

        12.3.1. Brazil

        12.3.2. Mexico

        12.3.3. Rest of Latin America

    12.4. Latin America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Technique

    12.5. Latin America Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        12.5.1. Migration-sedimentation (MS)

        12.5.2. Microfluidic Sperm Sorters (MFSSs)

        12.5.3. Others

    12.6. Latin America Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by End-user

    12.7. Latin America Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        12.7.1. Hospitals & Clinics

        12.7.2. Cryobanks

        12.7.3. IVF Centers

        12.7.4. Others

13. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Analysis

    13.1. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Overview

    13.2. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Country/Sub-region

    13.3. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Forecast, by Country/Sub-region

        13.3.1. GCC Countries

        13.3.2. South Africa

        13.3.3. Rest of Middle East & Africa

    13.4. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value Share and Attractiveness Analysis, by Technique

    13.5. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Forecast, by Technique

        13.5.1. Migration-sedimentation (MS)

        13.5.2. Microfluidic Sperm Sorters (MFSSs)

        13.5.3. Others

    13.6. Middle East & Africa Centrifugation-free Sperm Separation Systems Market Forecast, by End-user

        13.6.1. Hospitals & Clinics

        13.6.2. Cryobanks

        13.6.3. IVF Centers

        13.6.4. Others

14. Competition Landscape

    14.1. Competition Matrix 

    14.2. Company Profiles

    14.3. Company Profiles

        14.3.1. CooperSurgical, Inc.

            14.3.1.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.1.2. Financial Overview

            14.3.1.3. Product Portfolio

            14.3.1.4. SWOT Analysis

            14.3.1.5. Strategic Overview

        14.3.2. Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc. 

            14.3.2.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.2.2. Product Portfolio

            14.3.2.3. SWOT Analysis

            14.3.2.4. Strategic Overview

        14.3.3. Memphasys Ltd.

            14.3.3.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.3.2. Product Portfolio

            14.3.3.3. SWOT Analysis

            14.3.3.4. Strategic Overview

        14.3.4. DxNow

            14.3.4.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.4.2. Product Portfolio

            14.3.4.3. SWOT Analysis

            14.3.4.4. Strategic Overview

        14.3.5. SAR Healthline Pvt. Ltd.

            14.3.5.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.5.2. Product Portfolio

            14.3.5.3. SWOT Analysis

            14.3.5.4. Strategic Overview

        14.3.6. Lotus Bio

            14.3.6.1. Company Overview (HQ, Business Segments, Employee Strength)

            14.3.6.2. Product Portfolio

            14.3.6.3. SWOT Analysis

            14.3.6.4. Strategic Overview

List of Tables

Table 01: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2018–2030

Table 02: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2018–2030

Table 03: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Region, 2017–2031

Table 04: North America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Country, 2017–2031

Table 05: North America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2017–2031

Table 06: North America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2017–2031

Table 07: Europe Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Country/Sub-region, 2017–2031

Table 08: Europe Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2017–2031

Table 09: Europe Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2017–2031

Table 10: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Country/Sub-region, 2017–2031

Table 11: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2017–2031

Table 12: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2017–2031

Table 13: Latin America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Country/Sub-region, 2017–2031

Table 14: Latin America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2017–2031

Table 15: Latin America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2017–2031

Table 16: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Country/Sub-region, 2017–2031

Table 17: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by Technique, 2017–2031

Table 18: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, by End-user, 2017–2031

Table 19: CooperSurgical, Inc., Company Details

Table 20: CooperSurgical, Inc., Business Overview

Table 21: CooperSurgical, Inc., SWOT Analysis

Table 22: Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc., Company Details

Table 23: Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc., Business Overview

Table 24: Koek Biotechnology Bioengineering and Medical Services Industry & Trade, Inc., SWOT Analysis

Table 25: Memphasys Ltd., Company Details

Table 26: Memphasys Ltd., Business Overview

Table 27: Memphasys Ltd., SWOT Analysis

Table 28: DxNow, Company Details

Table 29: DxNow, Business Overview

Table 30: DxNow, SWOT Analysis

Table 31: SAR Healthline Pvt. Ltd., Company Details

Table 32: SAR Healthline Pvt. Ltd., Business Overview

Table 33: SAR Healthline Pvt. Ltd., SWOT Analysis

Table 34: Lotus Bio, Company Details

Table 35: Lotus Bio, Business Overview

Table 36: Lotus Bio, SWOT Analysis

List of Figures

Figure 01: Global Centrifugation-free Sperm Separation Systems Market, Research Methodology

Figure 02: Global Centrifugation-free Sperm Separation Systems Market Share, by Technique 

Figure 03: Global Centrifugation-free Sperm Separation Systems Market Share, by End-user

Figure 04: Global Centrifugation-free Sperm Separation Systems Market Share, by Region

Figure 05: North America Centrifugation-free Sperm Separation Systems Market Revenue Projection

Figure 06: Europe Centrifugation-free Sperm Separation Systems Market Revenue Projection

Figure 07: Asia Pacific Centrifugation-free Sperm Separation Systems Market Revenue Projection

Figure 08: Latin America Centrifugation-free Sperm Separation Systems Market Revenue Projection

Figure 09: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Revenue Projection

Figure 10: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast, 2017–2031

Figure 11: Global Centrifugation-free Sperm Separation Systems Market Value Share, by Technique, 2019

Figure 12: Global Centrifugation-free Sperm Separation Systems Market Value Share, by End-user, 2019

Figure 13: Global Centrifugation-free Sperm Separation Systems Market Value Share, by Region, 2019

Figure 14: Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 15: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Migration-sedimentation (MS), 2017–2031

Figure 16: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Microfluidic Sperm Sorters (MFSSs), 2017–2031

Figure 17: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Others, 2017–2031

Figure 18: Global Centrifugation-free Sperm Separation Systems Market Attractiveness Analysis, by Technique, 2021–2031

Figure 19: Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 20: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Hospitals & Clinics, 2017–2031

Figure 21: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Cryobanks, 2017–2031

Figure 22: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by IVF Centers, 2017–2031

Figure 23: Global Centrifugation-free Sperm Separation Systems Market Value (US$ Mn), by Others, 2017–2031

Figure 24: Global Centrifugation-free Sperm Separation Systems Market Attractiveness Analysis, by End-user, 2021–2031

Figure 25: Global Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Region, 2019 and 2030

Figure 26: Global Centrifugation-free Sperm Separation Systems Market Analysis, by Region

Figure 27: North America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast and Y-o-Y Growth (%) Projection, 2017–2031

Figure 28: North America Centrifugation-free Sperm Separation Systems Market Value Share (%), by Country, 2019 and 2031

Figure 29: North America Centrifugation-free Sperm Separation Systems Market Attractiveness, by Country, 2021–2031

Figure 30: North America Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 31: North America Centrifugation-free Sperm Separation Systems Market Attractiveness, by Technique, 2021–2031

Figure 32: North America Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 33: North America Centrifugation-free Sperm Separation Systems Market Attractiveness, by End-user, 2021–2031

Figure 34: Europe Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast and Y-o-Y Growth (%) Projection, 2017–2031

Figure 35: Europe Centrifugation-free Sperm Separation Systems Market Value Share (%), by Country/Sub-region, 2019 and 2031

Figure 36: Europe Centrifugation-free Sperm Separation Systems Market Attractiveness, by Country/Sub-region, 2021–2031

Figure 37: Europe Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 38: Europe Centrifugation-free Sperm Separation Systems Market Attractiveness, by Technique, 2021–2031

Figure 39: Europe Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 40: Europe Centrifugation-free Sperm Separation Systems Market Attractiveness, by End-user, 2021–2031

Figure 41: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast and Y-o-Y Growth (%) Projection, 2017–2031

Figure 42: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share (%), by Country/Sub-region, 2019 and 2031

Figure 43: Asia Pacific Centrifugation-free Sperm Separation Systems Market Attractiveness, by Country/Sub-region, 2021–2031

Figure 44: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 45: Asia Pacific Centrifugation-free Sperm Separation Systems Market Attractiveness, by Technique, 2021–2031

Figure 46: Asia Pacific Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 47: Asia Pacific Centrifugation-free Sperm Separation Systems Market Attractiveness, by End-user, 2021–2031

Figure 48: Latin America Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast and Y-o-Y Growth (%) Projection, 2017–2031

Figure 49: Latin America Centrifugation-free Sperm Separation Systems Market Value Share (%), by Country/Sub-region, 2019 and 2031

Figure 50: Latin America Centrifugation-free Sperm Separation Systems Market Attractiveness, by Country/Sub-region, 2021–2031

Figure 51: Latin America Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 52: Latin America Centrifugation-free Sperm Separation Systems Market Attractiveness, by Technique, 2021–2031

Figure 53: Latin America Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 54: Latin America Centrifugation-free Sperm Separation Systems Market Attractiveness, by End-user, 2021–2031

Figure 55: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value (US$ Mn) Forecast and Y-o-Y Growth (%) Projection, 2017–2031

Figure 56: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value Share (%), by Country/Sub-region, 2019 and 2031

Figure 57: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Attractiveness, by Country/Sub-region, 2021–2031

Figure 58: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by Technique, 2019 and 2031

Figure 59: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Attractiveness, by Technique, 2021–2031

Figure 60: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Value Share Analysis, by End-user, 2019 and 2031

Figure 61: Middle East & Africa Centrifugation-free Sperm Separation Systems Market Attractiveness, by End-user, 2021–2031

Figure 62: CooperSurgical, Inc., R & D Expenses (US$ Mn) and Y-o-Y Growth (%), 2017–2020

Figure 63: CooperSurgical, Inc., Revenue (US$ Mn) and Y-o-Y Growth (%), 2017–2020

Figure 64: CooperSurgical, Inc., Breakdown of Net Sales (%), by Business Segment, 2020

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Centrifugation-free Sperm Separation Systems Market