Our Research
A Legacy of Firsts Shaping Fertility Care
Since its founding in 1964, CHA has combined world-class healthcare with cutting-edge research to transform reproductive medicine. Over six decades, our institutions have pioneered advances that became global standards:
Our Key Milestones
Why Our Research Matters Globally
Commitment to Ongoing Innovation
Today, CHA’s research agenda continues to lead globally through:
Harnessing artificial intelligence to improve embryo grading accuracy and outcomes.
Expanding genetic testing to identify chromosomal abnormalities, hereditary conditions, and optimize embryo transfer.
Leveraging CHA Biotech’s breakthroughs to explore future fertility and reproductive health therapies.
Partnerships with universities, medical centers, and biotech leaders worldwide ensure CHA remains at the cutting edge.
CHA University’s international programs and conferences train fertility specialists and researchers across Asia–Pacific and beyond.
Creating Tomorrow’s Fertility Care
Unlike many fertility networks, CHA does more than deliver treatment, it creates the science that defines the future of fertility care.
Every discovery in our labs and institutes is designed with one purpose: to help more patients achieve the dream of family.
We show our committment by reducing the environmental impact of labs by [XX], [XX], [XX]
A network that integrates hospitals, research labs, and biotech under one vision.
By building global accessibility for fertility treatments, we strive to create not only healthier families, but a healthier, more equitable world.
Redefining Fertility, Delivering Breakthroughs.
As fertility challenges rise worldwide, CHA’s mission remains clear:
to redefine the boundaries of reproductive medicine and deliver those breakthroughs directly to patients. For more than six decades, CHA’s research has turned possibility into reality. For the future, it promises to bring even greater hope with ongoing R&D into menopause, POI and complex issues to further expand
every prospective parent’s biological
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Journal of Sustainable Engineering, 2025 This paper explores efficient integration methods for solar and wind energy systems in densely populated areas. It presents a novel algorithm to maximize energy yield while minimizing infrastructure footprint.
See Our Research
Optimizing Renewable Energy Systems for Urban Environments
Journal of Sustainable Engineering, 2025 This paper explores efficient integration methods for solar and wind energy systems in densely populated areas. It presents a novel algorithm to maximize energy yield while minimizing infrastructure footprint.
Optimizing Renewable Energy Systems for Urban Environments
Journal of Sustainable Engineering, 2025 This paper explores efficient integration methods for solar and wind energy systems in densely populated areas. It presents a novel algorithm to maximize energy yield while minimizing infrastructure footprint.