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市场调查报告书
商品编码
1284231
到2028医疗保健预测Metaverse市场-全球按组件(人工智能,智能,区块链,物联网,数位双胞胎),应用程序(医疗诊断,数位治疗,其他应用程序),最终用户,区域分析Metaverse in Healthcare Market Forecasts to 2028 - Global Analysis By Component (Artificial, Intelligence, Blockchain, IoT and Digital Twin), Application (Medical Diagnostics, Digital Therapeutics and Other Applications), End User and By Geography |
根据 Stratistics MRC 的数据,2022 年全球医疗保健元宇宙市场规模将达到 73 亿美元,预计到 2028 年将达到 352 亿美元,预测期内增长 30.0%。预计将以復合年增长率增长
Metaverse 是一个与我们的物理现实共存的大型数位宇宙。 Metaverse 只不过是一个虚拟环境的集合,个人可以在其中交流,社交,玩游戏和购物。 在虚拟世界(VR)中,人工智能(AI),增强现实(AR)和虚拟现实(VR)三大技术趋势正在融合,医疗设备性能的提升和患者与医疗保健专业人员之间沟通的改善正在成为现实。带动市场的扩张。
根据 QSS Technosoft(美国)发布的一份报告,到 2023 年构建虚拟宇宙的成本可能在 25,000 美元到 100 万美元之间。 对于医疗保健,Metaverse 软件的开发成本预计在 80,000 美元到 100 万美元之间。
医疗保健企业正在利用混合现实 (MR) 在手术期间通过免提界面向外科医生提供关键信息。 MR 帮助医护人员简化医疗程序并确保患者安全。 医疗保健已成为采用 MR 的主要行业,包括手术模拟,恐惧症治疗,机器人培训和专家培训。 机器人辅助微创手术可帮助外科医生以更高的精度和灵活性执行困难的手术。 医疗实践要求外科医生具有高度的精确性,注意力和分析能力。
虽然自动化医疗保健技术的使用越来越多,提高了医疗保健服务的可访问性和效率,但随着访问范围的扩大,安全威胁也在增加。 网络罪犯通常以医疗保健企业为目标进行黑客攻击,以利用和更改数据。 此外,随着患者数量的增加,患者数据量也随之增加。 儘管 Metaverse 应用程序的初步发现很乐观,但 Metaverse 技术尚未产生实质性影响。 公众对数据隐私问题的认识不断提高,迫使政府通过更严格的隐私法规。 然而,Metaverse,虚拟现实和增强现实等新兴技术将使数据隐私法规在未来越来越难以执行,从而阻碍市场增长。
未来几年,教育领域的元界市场有望快速扩张。 XR 在教育中的应用前景广阔,EdTech 公司在元宇宙中取得成功的潜力巨大。 新兴市场进入者正在通过进入生态系统和拥抱数位化转型来推动市场发展。 它的主要优点是易用性和便利性,以及模拟现实生活事件的能力,以提高在职和在职培训的有效性,帮助学生更快,更有信心地学习。 它还为提高技能提供反馈和分析,深入了解患者对药物的反应,手术结果,潜在的药物问题等。 XR 使医学生能够在虚拟环境中练习虚拟手术指导,而成本仅为在尸体上进行手术的一小部分。 XR 使临床医生能够记录他们自己的医疗实践,从而改变了侵入性手术。 因此,上述所有因素都推动了市场的增长。
要成功有效地采用 Metaverse,医疗保健提供者必须进行大量投资。 为了从 Metaverse 中获益,我们需要更新我们的技术基础设施,尤其是在发展中国家。 这将需要对基础设施进行大量投资。 从持续高速 (5G) 互联网连接到可穿戴设备等创新技术,都需要大量支出。 Metaverse 包括增强用户体验的技术,如 AR,VR,AI,HMD,区块炼和物联网。 因此,元宇宙的开发成本高是肯定的。 构建元宇宙的成本取决于所需的功能,所需的技术堆栈以及团队的规模和专业知识。
COVID-19 大流行增加了人们对提供在线医疗保健的兴趣,而疾病则减少了社交业务约会。 因此,主要参与者和医疗保健行业正在采用 Metaverse 等创新技术。 2020 年 8 月发表在国家医学图书馆的一项研究发现,使用 MR 设备 HoloLens2 可将员工照顾 COVID-19 患者的时间减少 51.5%,并将每天所需的 PPE 数量减少 83.1%。 这种 MR 技术有可能在 COVID-19 流行期间和之后改变医疗保健。
硬件部分预计将实现有利可图的增长,因为它是医疗保健领域的最大贡献者。 硬件有望主导市场,因为增强现实和虚拟现实耳机的开发是为了获得更好的效果和易用性。 尝试创建最先进的触觉元宇宙设备也促进了这一细分市场的增长。 该芯片可以维持将 Metaverse 带入生活所需的大量计算能力。 VR/AR商品的出现有望加速最重要的部件——处理器的开发。
在预测期内,医学教育和外科培训领域预计将以最高复合年增长率增长。 由于 Metaverse 扩展在医疗和外科培训中的广泛使用以及创建三维学习体验的能力,医疗培训和教育模块部分占据了市场主导地位。 这些工具可帮助患者了解手术并改善医疗服务。
由于医疗保健基础设施的快速发展和数位技术的利用,预计北美在预测期内将占据最高的市场份额。 这是由于商业模式专注于元宇宙的公司集中,医疗保健领域基础设施的快速发展,AR 和 VR 平台的整合,以及对 AR 商品和服务的投资增加。硬件和软件等 Metaverse 可以治疗许多心理健康障碍,包括恐惧症,焦虑症,幻觉和妄想。 技术进步使我们可以在感到不知所措时向同事,朋友,家人和医疗专业人员寻求帮助。 因此,该行业有望在该地区实现增长。
预计欧洲在预测期内的复合年增长率最高,因为它包括中国,日本,印度等。 由于该国在医疗保健行业的技术进步,该地区正在发展。 Metaverse 技术公司与医疗保健行业之间的合作正在推动增长,以及将这项技术集成到医疗设备中的重大投资。
2023 年 3 月,NVIDIA Corporation(美国)将与 Microsoft(美国)合作,该合作伙伴关係将连接 Microsoft 365 应用程序和 NVIDIA Omniverse,数位化运营,致力于工业元宇宙,生成 AI 等。实现高级模型训练。
2023 年 2 月,Wipro(印度)将推出 Decentralized Identity,为当前或未来的医疗保健和金融服务提供商和教育机构启用防篡改和自我验证的数位证书保险和验证。并宣布了 Credential Exchange (DICE) ID。
2022 年 11 月,GE Healthcare(美国)与 MediviewXR(美国)合作。 此次合作的目的是开发医学图像处理系统“OmnifyXR”。
According to Stratistics MRC, the Global Metaverse in Healthcare Market is accounted for $7.3 billion in 2022 and is expected to reach $35.2 billion by 2028 growing at a CAGR of 30.0% during the forecast period. The metaverse is a large digital cosmos that coexists with our physical reality. The metaverse is nothing more than a collection of virtual environments in which individuals may communicate, socialise, play games, and shop. In the metaverse (VR), three important technology trends converge intelligence (AI), augmented reality (AR), and virtual reality (VR), the increasing integration of artificial intelligence, augmented reality, and robots in the healthcare business, Better patient outcomes, improved medical equipment performance, and improved communication between patients and healthcare professionals are all driving market expansion.
According to a report published by QSS Technosoft (US), the cost of building a metaverse in 2023 might range between USD 25,000 to USD 1 million. For healthcare, the cost of developing metaverse software is projected to be between USD 80,000 and USD 1 million.
In the healthcare business, mixed reality (MR) is being utilised to communicate critical information to operating surgeons via a hands-free interface. MR assists healthcare practitioners in simplifying medical procedures while also keeping patients safe. Healthcare is a major industry for the introduction of MR, which comprises, among other things, surgical simulation, phobia therapy, robot training, and expert training. Robot-assisted minimally invasive surgeries can help surgeons conduct difficult treatments with better precision and flexibility. During medical treatments, surgeons must be highly precise, attentive, and analytical.
The growing usage of automated healthcare technology expands the accessibility and efficiency of healthcare delivery while posing substantial security threats due to the larger access provided. Cybercriminals routinely target the healthcare business with hacks in order to exploit and alter data. In addition, as the number of patients grows, so does the volume of patient data. Despite optimistic first discoveries of metaverse applications, metaverse technologies have yet to have a substantial influence. The increased public awareness of data privacy problems has put governments under pressure to pass stronger privacy regulations. However, emerging technologies such as the metaverse, virtual reality, and augmented reality will make it increasingly difficult to enforce data privacy regulations in the future which hinder the growth of the market.
The market for metaverse in education is predicted to expand rapidly in the future years. The use of XR in education has a bright future, and EdTech firms have a great potential to thrive in the metaverse. Leading market participants are entering the ecosystem and adopting digital transformation, driving market development. Their primary benefits include ease of use and convenience, as well as the ability to boost the efficacy of on-the-job and on-campus training by simulating real-life events, allowing students to learn more quickly and confidently. It also provides feedback and analyses skill improvement, as well as insights regarding a patient's response to medicines, surgical outcomes, Potential issues with medicinal items, among other things. XR allows medical students to practise substantial surgical instruction in a virtual environment at a fraction of the expense of operating on cadavers. XR changes invasive operations by allowing clinicians to record themselves doing medical procedures hence all the above factors drive the growth of the market.
To successfully and effectively incorporate the metaverse into its procedures, the healthcare business must invest considerably. To realise the benefits of the metaverse, technical infrastructure, particularly in developing nations, must be updated. This would demand a significant investment in infrastructure. Everything from a continuous high-speed (5G) internet connection to innovative technologies like wearables necessitates a significant expenditure. The metaverse includes technologies such as AR, VR, AI, HMDs, blockchain, IoT, and others to improve the user experience. As a result, the metaverse's development costs are guaranteed to be expensive. The cost of building a metaverse varies based on the features requested, the technological stack required, and the team size and expertise.
As the disease-driven world reduces social business encounters, the COVID-19 pandemic has raised people's interest in online healthcare delivery. As a result, important players and healthcare sectors are increasingly adopting innovative technologies such as metaverse. According to a research published in The National Library of Medicine in August 2020, the usage of the HoloLens2 MR device resulted in a 51.5% decrease in time spent by personnel caring for COVID-19 patients and an 83.1% decrease in the quantity of PPE required each day. This MR technology has the potential to transform healthcare both during and after the COVID-19 epidemic.
The hardware segment is estimated to have a lucrative growth, due to the greatest contribution to the metaverse in the healthcare sector. Hardware is expected to dominate the market as augmented and virtual reality headsets are developed for improved results and simplicity of use. The company's attempts to create cutting-edge haptic metaverse devices are also contributing in the segment's growth. Chips can sustain the tremendous computing power required to create the metaverse. The emergence of VR/AR goods will accelerate the development of processors, the most important component.
The medical education & surgery training segment is anticipated to witness the highest CAGR growth during the forecast period, due to the widespread use of metaverse extensions in medical and surgical training for a three-dimensional learning experience, the medical training and education modules sector dominates the market. These tools help patients understand surgical operations, which improves medical treatments.
North America is projected to hold the highest market share during the forecast period owing rapid growth of healthcare infrastructure and the utilisation of digital technologies. It is due to the region's dense concentration of companies with a metaverse-focused business model, the healthcare sector's rapid infrastructure development, the integration of AR and VR platforms, the increase in investments in AR goods and services, and advancements in hardware and software. A multitude of mental health illnesses, including phobias, anxiety disorders, hallucinations, and delusions, can be treated using the metaverse. When we are having a mental breakdown, we may now seek help from coworkers, friends, family, or medical experts, thanks to advances in technology. As a result, this sector is expected to grow in this region.
Europe is projected to have the highest CAGR over the forecast period, owing to China, Japan, India, and other countries are included in this area. This region is growing as a result of the country's technical advances in the healthcare business. Collaborations between metaverse technology companies and the healthcare industry are propelling growth, in addition to significant investment in integrating this technology with medical equipment.
Some of the key players profiled in the Metaverse in Healthcare Market include Microsoft, NVIDIA Corporation, Wipro, Siemens Healthineers AG, Brainlab AG, AccuVein, Inc, Medtronic plc, ImmersiveTouch, Inc., XRHealth, Koninklijke Philips N.V., Oodles Technologies, EON Reality, CMR Surgical, Merative, WorldViz, Inc, Google, CAE Inc. and MindMaze
In March 2023, NVIDIA Corporation (US) partnered with Microsoft (US) , This collaboration will help connect Microsoft 365 applications and NVIDIA Omniverse to digitalize their operations, engage in the industrial metaverse, and train advanced models for generative AI and other applications.
In February 2023, Wipro (India) launched Decentralized Identity and Credential Exchange (DICE) ID, which enables the insurance and verification of tamper-proof, self-verifiable digital credentials for current or potential healthcare or financial service providers, as well as educational institutions.
In November 2022, GE Healthcare (US) collaborated with MediviewXR(US) . This collaboration was aimed at developing the OmnifyXR medical imaging system.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.