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市場調査レポート
商品コード
1624544
センサーパッチ市場:用途別、センサータイプ別、エンドユーザー産業別、地域別、2024年~2031年Sensor Patch Market By Application, Type of Sensor, End-User Industry, & Region for 2024-2031 |
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センサーパッチ市場:用途別、センサータイプ別、エンドユーザー産業別、地域別、2024年~2031年 |
出版日: 2024年07月29日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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センサーパッチ市場の評価、2024年~2031年
ヘルスケアにおけるウェアラブル技術の人気の高まりが、センサーパッチの需要を押し上げています。センサーパッチは、小型で柔軟性のあるセンサーで、皮膚に貼り付けて様々な生理的指標をモニターするもので、非侵襲的な性質とリアルタイムの健康情報を提供する能力により人気を博しています。これらのパッチは、心拍数、グルコースレベル、体温、呼吸数などの重要な指標を継続的にモニターするためにますます利用されるようになっており、糖尿病、心血管疾患、呼吸器疾患などの慢性疾患の管理において非常に貴重なものとなっています。市場は2024年に収益4億2,958万米ドルを超え、2031年までに約71億9,955万米ドルの評価額に達すると予想されています。
センサーパッチ市場は、スポーツやフィットネス産業からの需要も増加しています。アスリートやフィットネス愛好家は、身体パフォーマンス、水分補給レベル、筋肉活動、回復状態を追跡するためにセンサーパッチを使用することが増えています。これらのパッチは、運動に対する身体の反応に関する広範な洞察を提供し、ユーザーがトレーニングレジメンを改善し、怪我を避けることを可能にします。さらに、センサーパッチがモバイルアプリやスマートウォッチなどのウェアラブルデバイスに統合されることで、個別化されたフィードバックや実用的な情報を提供することでユーザーエクスペリエンスが向上し、2024年から2031年までのCAGRは46.60%で市場は成長します。
センサーパッチ市場定義/概要
センサーパッチは、センサーと柔軟な粘着性パッチを組み合わせた新しいウェアラブル技術であり、多数の生理学的データを継続的にモニタリングしながら、皮膚に快適に装着することができます。これらのパッチは、心拍数、体温、グルコースレベル、さらには汗の成分のような生化学的マーカーなどの健康指標に関するリアルタイムのデータを収集することを目的としています。センサーパッチの基本的な利点は、非侵襲的で継続的なモニタリングを提供しながら、装着者の通常の活動を妨げないことです。
センサーパッチはウェアラブル・ガジェットであり、多数の生理学的指標を連続的かつリアルタイムでモニタリングできるようにすることで、ヘルスケアの世界を一変させました。一般的に皮膚に貼るこれらのパッチにはセンサーが取り付けられており、心拍数、体温、グルコースレベル、呼吸数、さらには水分補給状態などのバイタルサインをモニターすることができます。センサーパッチの最も重要な用途のひとつは、慢性疾患の管理で、特に糖尿病、心臓血管疾患、呼吸器系の問題が多いです。
ウェアラブル技術の開発と、非侵襲的でリアルタイムの健康モニタリング・システムに対する需要の高まりにより、センサーパッチの将来は有望と思われます。ヘルスケア産業が予防医療に移行するにつれ、センサーパッチは患者の継続的モニタリングにおいて重要な役割を果たすと思われます。これらの小型で粘着性のあるパッチにはセンサーが取り付けられており、心拍数、グルコースレベル、体温など、さまざまな生理学的要因をモニターすることができます。
ポータブル医療機器に対する需要の高まりは、センサーパッチ産業の主要な促進要因です。この動向は、人口の高齢化、慢性疾患の増加、患者の遠隔モニタリングとケアの重視など、いくつかの原因によって推進されています。世界保健機関(WHO)によると、60歳以上の世界人口は2020年の10億人から2050年には21億人と3倍になると予想されています。この世代交代により、バイタルサインやその他の健康データを継続的かつ非侵襲的にモニターできるポータブル医療機器の需要が高まっています。米国疾病予防管理センター(CDC)によると、米国では成人の10人中6人が慢性疾患を抱えており、10人中4人が2つ以上の慢性疾患を抱えています。
米国立衛生研究所(NIH)の一部門である米国立医用画像生体工学研究所(NIBIB)は、ヘルスケアにおけるウェアラブル・バイオセンサの価値を強調しています。NIBIBは、ウェアラブル・バイオセンサーが継続的なリアルタイムの生理学的データを収集することで、より適切で迅速な医療介入を可能にすると指摘しています。欧州委員会の研究開発プログラム「Horizon 2020」もまた、医療費を削減しながら患者の転帰を向上させる可能性を認識し、ヘルスケア用途の高度なセンサー技術を開発するプロジェクトに多額の投資を行っています。例えば、欧州委員会が資金を提供するPOSITION-IIプロジェクトは、極小センサーとアクチュエーターを含むスマートカテーテルとインプラントのためのオープンな技術プラットフォームを提供することを意図しています。
保険料の高騰は、顧客やヘルスケアプロバイダーの全体的な出費を増加させるため、センサーパッチ産業の拡大を阻害する可能性があります。グルコースレベル、心拍数、体温などの健康問題を継続的に監視するために使用されるセンサーパッチは、そのシンプルさと正確さにより人気を集めています。しかし、このような強力な機器には高額な値札がつくことが多いです。保険はこれらの費用の一部をカバーするのに役立つが、センサーパッチへの保険適用は時に制限されたり、高額な保険料、免責金額、自己負担金がついたりします。このような価格負担は、特に医療費がすでに高額であったり、保険制度が限られている地域では、消費者とヘルスケア施設の両方がこのような技術の導入を思いとどまる可能性があります。
センサーパッチの高額な費用とそれに伴う保険料は、ヘルスケア・プロバイダーや支払者に影響を与える可能性があります。保険会社は、高額であるため、これらのデバイスを完全にカバーすることをためらい、その結果、償還規則が制限される可能性があります。そのため、ヘルスケア・プロバイダーは、患者が保険適用を制限される可能性があることを認識しているため、センサーパッチの提案を思いとどまる可能性があります。さらに、このようなデバイスを買う余裕のない患者は、重要なモニタリングを先延ばしにしたり、見送ったりする可能性があり、その結果、長期的にはより高価な治療を必要とする、より深刻な健康状態に陥る可能性があるため、高額なコストは、全体としてより大きな医療支出につながる可能性があります。
Sensor Patch Market Valuation - 2024-2031
The increased popularity of wearable technology in healthcare is driving up demand for sensor patches. Sensor patches which are small, flexible sensors that may be applied to the skin and monitor a variety of physiological indicators have gained popularity due to their non-invasive nature and ability to offer real-time health information. These patches are increasingly utilized to continuously monitor vital indicators such as heart rate, glucose levels, temperature, and respiration rates making them invaluable in the management of chronic ailments such as diabetes, cardiovascular disease, and respiratory disorders by enabling the market to surpass a revenue of USD 429.58 Million valued in 2024 and reach a valuation of around USD 7199.55 Million by 2031.
The sensor patch market is also seeing increased demand from the sports and fitness industries. Athletes and fitness aficionados are increasingly using sensor patches to track their physical performance, hydration levels, muscle activity, and recuperation status. These patches provide extensive insights into the body's response to exercise allowing users to improve their training regimens and avoid injuries. Furthermore, the integration of sensor patches into mobile apps and wearable devices such as smartwatches improves the user experience by providing individualized feedback and actionable information by enabling the market to grow at a CAGR of 46.60 % from 2024 to 2031.
Sensor Patch Market: Definition/ Overview
A sensor patch is a novel wearable technology that combines sensors with a flexible, adhesive patch allowing it to be worn comfortably on the skin while continuously monitoring numerous physiological data. These patches are intended to collect real-time data on health measures such as heart rate, body temperature, glucose levels, and even biochemical markers like sweat composition. The fundamental advantage of sensor patches is their capacity to provide non-invasive, continuous monitoring while not interfering with the wearer's regular activities.
They are wearable gadgets that have transformed the world of healthcare by allowing for continuous, real-time monitoring of numerous physiological indicators. These patches which are commonly applied to the skin are fitted with sensors that may monitor vital signs such as heart rate, body temperature, glucose levels, respiration rate, and even hydration status. One of the most important uses of sensor patches is in chronic disease management, particularly for diabetes, cardiovascular disease, and respiratory problems.
The future of sensor patches seems promising, thanks to developments in wearable technology and rising demand for non-invasive, real-time health monitoring systems. As the healthcare industry transitions to preventative care, sensor patches are likely to play an important role in continuous patient monitoring. These small, sticky patches are fitted with sensors that can monitor a variety of physiological factors including heart rate, glucose levels, body temperature, and others providing vital data that may be evaluated to detect early signs of medical disorders.
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The rising demand for portable medical equipment is a major driver of the sensor patch industry. This trend is being driven by several causes including an aging population, the rise of chronic diseases, and a greater emphasis on remote patient monitoring and care. According to the World Health Organization (WHO), the global population aged 60 and more is anticipated to treble from 1 billion in 2020 to 2.1 billion in 2050. This generational transition is increasing the demand for portable medical devices that can continuously and noninvasively monitor vital signs and other health data. According to the Centers for Disease Control and Prevention (CDC), 6 out of 10 adults in the United States have a chronic disease with 4 out of 10 having two or more.
The National Institute of Biomedical Imaging and Bioengineering (NIBIB), a division of the National Institutes of Health (NIH) has emphasized the value of wearable biosensors in healthcare. They point out that these devices can collect continuous, real-time physiological data allowing for more tailored and quicker medical interventions. The European Commission's Horizon 2020 research and innovation program has also made considerable investments in projects that develop sophisticated sensor technologies for healthcare applications recognizing their potential to enhance patient outcomes while lowering healthcare costs. For example, the European Commission-funded POSITION-II project intends to provide an open technological platform for smart catheters and implants that includes tiny sensors and actuators.
The high cost of insurance may impede the expansion of the sensor patch industry as it increases overall expenses for customers and healthcare providers. Sensor patches which are used to continuously monitor health issues such as glucose levels, heart rate, and body temperature are gaining popularity due to their simplicity and accuracy. However, these powerful equipment frequently come with a high price tag. While insurance can help cover some of these costs, coverage for sensor patches is sometimes restricted or comes with expensive premiums, deductibles, and co-pays. This price burden can dissuade both consumers and healthcare facilities from implementing these technologies, especially in areas where healthcare is already expensive or where insurance systems are limited.
The high cost of sensor patches as well as the accompanying insurance fees can have an impact on healthcare providers and payers. Insurance companies may be hesitant to completely cover these devices due to their high cost resulting in limited reimbursement rules. This may dissuade healthcare providers from proposing sensor patches because they are aware that their patients may have limited insurance coverage. Furthermore, the high costs can lead to greater healthcare spending overall as patients who cannot afford these devices may postpone or forgo crucial monitoring resulting in more serious health conditions that require more expensive treatments in the long term.
Temperature sensors are the dominant sector owing to their widespread use in health and wellness monitoring. Temperature sensors are used in a variety of medical equipment, particularly wearable technology that monitors body temperature in real-time. This capacity is crucial for controlling chronic illnesses, remote patient monitoring, and detecting early indicators of illness such as fever or hypothermia. The global emphasis on preventative healthcare combined with the surge in remote patient monitoring has greatly increased the demand for temperature sensors. Furthermore, the aging population and rising prevalence of chronic diseases have pushed the use of temperature sensor patches. These patches provide non-invasive, continuous monitoring which is critical for early detection and quick action.
Biometric sensors while crucial are gaining pace but have yet to overtake temperature sensors in supremacy. Biometric sensors are essential for assessing vital signs like heart rate, blood pressure, and oxygen levels making them extremely useful in both healthcare and fitness applications. The increased popularity of fitness tracking and awareness of personal health have fueled demand for biometric sensors. However, biometric sensors have been less widely adopted than temperature sensors due to their complexity and cost. Image sensors, on the other hand, are still in their early stages of development in the sensor patch market with applications ranging from wound monitoring to specific diagnostic procedures.
Continuous healthcare monitoring emerges as the dominating use. This is mostly driven by the rising frequency of chronic diseases such as diabetes, cardiovascular disease, and respiratory problems which necessitate constant and real-time monitoring of patient's vital signs. Sensor patches which are wearable devices that can continually monitor parameters such as heart rate, glucose levels, and blood oxygen saturation have become indispensable instruments in modern medicine. These technologies offer smooth and non-invasive monitoring allowing healthcare professionals to make educated treatment decisions. The growing worldwide aging population has increased the demand for continuous healthcare monitoring as senior people often require more regular medical supervision.
Another element contributing to the prevalence of continuous healthcare monitoring is technological developments in sensor patch design and functioning. Modern sensor patches are growing more sophisticated with improved accuracy, battery life, and communication possibilities. These developments make sensor patches more dependable and user-friendly encouraging further adoption in both clinical and home settings. Furthermore, the incorporation of artificial intelligence (AI) and data analytics into sensor patches is revolutionizing how healthcare data is collected and used. AI-powered insights can anticipate health problems before they worsen allowing for preventive therapies. This is especially useful in controlling chronic illnesses when early detection and treatment can dramatically improve patient outcomes.
The North American sensor patch market is primarily driven by the region's strong and growing healthcare infrastructure. This is especially true in the United States, which leads to healthcare spending and technological use. The growing healthcare infrastructure in North America is a primary driver of the sensor patch market. Several significant elements and statistics from government and credible sources contribute to this rise. The Centers for Medicare & Medicaid Services (CMS) predict that healthcare spending in the United States will reach USD 4.3 Trillion in 2021 accounting for 18.3% of the country's GDP. This significant investment in healthcare demonstrates a solid platform for implementing novel technology such as sensor patches.
The increasing frequency of chronic diseases in North America adds to the demand for sensor patches. According to the Centers for Disease Control and Prevention (CDC), 6 in 10 persons in the United States have at least one chronic disease, with 4 in 10 having two or more. Sensor patches can play an important role in monitoring and controlling these situations. Furthermore, North America's aging population is predicted to increase demand for healthcare services and technologies. According to the United States Census Bureau, by 2030, all baby boomers will be above the age of 65, increasing the number of the elderly population to one in every five individuals.
The Asia Pacific region is expected to have strong expansion in the sensor patch market owing primarily to the growing demand for accurate and fast diagnosis. This tendency is especially noticeable in nations such as China, Japan, and India which are at the forefront of implementing revolutionary healthcare technologies. The rising frequency of chronic diseases and an aging population are driving up demand for sensor patches in the Asia Pacific region. According to the World Health Organization (WHO), Noncommunicable diseases (NCDs) are responsible for an estimated 89% of all deaths in Singapore and 87% in South Korea. The growing prevalence of chronic diseases demands constant monitoring and prompt diagnosis which sensor patches may deliver well.
This demographic transition is driving a significant demand for wearable health monitoring devices such as sensor patches. Another important driver is the demand for remote patient monitoring, particularly in rural areas with limited healthcare services. For example, in India, the National Health Mission has advocated for the use of telemedicine and remote health monitoring to overcome the urban-rural healthcare divide. Sensor patches play an important role in this context because they enable continuous data gathering and transmission to healthcare providers. Furthermore, government activities in the region to promote digital health and smart healthcare systems are creating an atmosphere beneficial to the use of sensor patch technology.
The Sensor Patch Market is a dynamic and competitive space, characterized by a diverse range of players vying for market share. These players are on the run for solidifying their presence through the adoption of strategic plans such as collaborations, mergers, acquisitions, and political support. The organizations are focusing on innovating their product line to serve the vast population in diverse regions.
Some of the prominent players operating in the sensor patch market include:
Cardiomo Care, Inc.
Dexcom, Inc.
Gentag, Inc.
G-Tech Medical
Hivox Biotek, Inc.
In May 2023, Medtronic bought EOFlow, the maker of wearable insulin patches. This acquisition demonstrates Medtronic's desire to increase its influence in the field of diabetes care and management. The move intends to combine EOFlow's experience in wearable insulin patch technology with Medtronic's resources and influence in the medical device market, perhaps leading to better solutions for diabetics.
In September 2022, Epicore Biosystems formed a partnership with 3M's Health Care Business and Innovize Inc. to improve their sweat-sensing wearables for real-time tailored hydration data. This collaboration combines 3M's top-tier skin-interfacing materials with Innovize's manufacturing expertise, allowing Epicore Biosystems to expand its superior wearable hydration solutions for increased performance and safety.