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What are the latest figures on the quantum computing in healthcare market’s size and projected CAGR?
The quantum computing in healthcare market size has grown exponentially in recent years. It will grow from $0.09 billion in 2024 to $0.12 billion in 2025 at a compound annual growth rate (CAGR) of 37.3%. The growth in the historic period can be attributed to expansion of high-speed networks, increasing preference for quantum computing, increasing patient engagement and adherence to individual-level treatments, increasing bandwidth, and strong integrity, increasing molecular interaction.
The quantum computing in healthcare market size is expected to see exponential growth in the next few years. It will grow to $0.42 billion in 2029 at a compound annual growth rate (CAGR) of 36.9%. The growth in the forecast period can be attributed to increasing investments in quantum computing, growing demand for precision medicine, demand for precision medicine rising, accelerating drug discovery, capacity to handle extensive data for personalized medicine. Major trends in the forecast period include discovery of new therapeutics, mRna research, biomedical research, enhanced imaging and diagnostics, technological advancements.
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What have been the primary factors driving the quantum computing in healthcare market’s growth?
The increasing availability of high-speed 5G or 6G networks is expected to propel the growth of quantum computing in the healthcare market going forward. High-speed 5G or 6G networks are advanced wireless communication technologies that provide significantly faster data transfer rates, lower latency, and greater connectivity than previous generations. The availability of high-speed 5G or 6G networks is increasing due to the growing demand for faster, more reliable connectivity to support advanced applications such as IoT, autonomous vehicles, and augmented reality. 5G networks can complement quantum computing in healthcare by enabling faster data transfer, supporting edge computing, facilitating remote healthcare services, and enhancing security and privacy. The integration of these technologies has the potential to revolutionize healthcare delivery, research, and innovation, leading to improved patient outcomes and healthcare outcomes. For instance, in March 2022, according to a report published by the GSM Association, a UK-based non-profit organization, the number of 5G connections is projected to increase from 1 billion in 2021 to 2 billion by 2025. Therefore, the increasing availability of high-speed 5G or 6G networks is driving the growth of quantum computing in the healthcare market.
What are the key segments within the quantum computing in healthcare market?
The quantum computing in healthcare market covered in this report is segmented –
1) By Component: Hardware, Software, Services
2) By Technology: Superconducting Qubits, Trapped Ions, Quantum Annealing, Other Technologies
3) By Deployment: On-Premise, Cloud
4) By Application: Drug Discovery And Development, Medical Diagnostics, Genomics And Precision Medicine, Radiotherapy, Risk Analysis, Other Applications
5) By End-User: Pharmaceutical And Biopharmaceutical Companies, Labs And Research Institutes, Healthcare Providers, Healthcare Payers
Subsegments:
1) By Hardware: Quantum Processors, Quantum Computers, Cryostats
2) By Software: Quantum Algorithms, Quantum Simulation Software, Data Analysis Software
3) By Services: Consulting Services, Cloud-Based Quantum Computing Services, Training And Support Services
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Which key players are shaping the quantum computing in healthcare market?
Major companies operating in the quantum computing in healthcare market are Google LLC, Microsoft Corporation, Tencent Holdings Limited, Intel Corporation, IBM Corporation, HoneyWell International Inc., Fujitsu Ltd., Toshiba Corp., Atos SE, Quantinuum, Cambridge Quantum Computing, IonQ Inc., 1QBit Co., Rigetti & Co Inc., Cambridge Quantum Computing, QC Ware Corp., D-Wave Systems Inc., Zapata Computing Inc., Algorithmiq, KETS Quantum Security Ltd., Anyon Systems Inc., ProteinQure Inc., Menten AI, Entropica Labs, Strangeworks
How will emerging trends drive the quantum computing in healthcare market throughout the forecast period?
Major companies operating in the quantum computing in healthcare market are developing advanced technologies, such as quantum computers, to analyze vast amounts of genomic data much faster than classical computers, to provide personalized treatment plans. Quantum computers potentially solve complex problems in cryptography, optimization, drug discovery, and material science much faster than classical computers. For instance, in January 2024, Cleveland Clinic, a US-based non-profit academic medical center, in collaboration with IBM Corporation, a US-based technology company, launched the first quantum computer dedicated to healthcare research. This computer, boasting over 1,000 qubits, promises to revolutionize healthcare research by significantly advancing drug discovery, genomic analysis, molecular modeling, and medical imaging techniques. Its unique technology and innovative approach to educating a high-tech workforce in data science and quantum computing is poised to propel understanding in the field to new heights.
How do regional factors impact the quantum computing in healthcare market, and which region is the largest contributor?
North America was the largest region in the quantum computing in healthcare market in 2023. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the quantum computing in healthcare market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.
What Does The Quantum Computing In Healthcare Market Report 2025 Offer?
The quantum computing in healthcare market research report from The Business Research Company offers global market size, growth rate, regional shares, competitor analysis, detailed segments, trends, and opportunities.
Quantum computing in healthcare refers to the utilization of quantum computing technology to enhance various aspects of the healthcare industry, including but not limited to drug discovery, medical imaging, genomics, personalized medicine, and healthcare optimization. This technology solves complex computational problems more efficiently than classical computers, accelerates research, improves patient care, and optimizes healthcare systems.
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