Chronic respiratory disorders are among the most frequent noncommunicable diseases in the world, owing to the prevalence of noxious environmental, occupational, and behavioural inhalational exposures. Chronic respiratory illnesses, in addition to chronic obstructive pulmonary disease (COPD) and asthma, include interstitial lung disease, pulmonary sarcoidosis, and pneumoconioses such as silicosis and asbestosis. These disorders, unfortunately, have gotten less public attention and research funding than other disease entities such as cardiovascular disease, cancer, stroke, diabetes, and Alzheimer’s disease. Respiratory rate (RR) is a vital physiological characteristic that has been linked to major health disorders such as cardiopulmonary arrest. Moreover, analyzing respiratory vitals are useful for determining driving safety, analyzing sleep quality, monitoring stress, and even identifying opioid overdose, in addition to therapeutic applications.

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Breathing monitoring is a key component of clinical vital distress identification and is performed on all patients in a hospital, whether they are in the emergency room, a general or specialty ward, or intensive care unit. Monitoring a patient’s breathing entails primarily assessing the motion of the chest wall. Sedentary lifestyles and stressful routines, together with an increase in the number of smokers, rate of alcohol use, automobile smoke emissions, and industrialization, have all contributed to an increase in the incidence of lung cancer and other severe respiratory problems. Several Med-Tech businesses are upgrading their respiratory device production in order to further their aim of improving the lives of those suffering from respiratory disorders. Airgo by MyAir Inc, for example, represents a significant advancement in continuous spirometry, sleep problem assessment, and ICU respiratory pattern recognition. It is the first non-invasive respiratory gadget that directly measures every breath and assists clinicians in remotely monitoring, diagnosing, and treating acute and chronic respiratory problems. Wearable device usage, particularly smartwatch use, has expanded significantly over the last decade. Photoplethysmography (PPG) sensors are often used in smartwatches to measure heart rate and detect disorders such as atrial fibrillation and sleep apnea. With the PPG sensor, smartwatches offer the potential to enable unobtrusive longitudinal RR monitoring outside of clinical settings. Thus, with these advancements in the devices, the global respiratory measurement devices market is anticipated to upsurge in the upcoming years.

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COVID-19 is a disease caused by the SARS-CoV-2 virus, causing shortness of breath, lung damage, and impaired respiratory function. The novel coronavirus disease (COVID-19) is caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) virus and predominantly presents as a lower respiratory tract infection. Severe cases of the disease can result in alveolar damage and progressive respiratory failure. Various respiratory measurement devices such as pulse oximeters, spirometers were highly used for respiratory monitoring. Thus, Covid-19 has paved way for the growth of respiratory measurement devices market for the upcoming years.

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Global Respiratory Measurement Devices Market Share in 2021, By Region

Global Respiratory Measurement Devices Market Report Highlights:

  • There is an increasing demand for measuring respiratory variables in a number of applications, such as monitoring in clinical and occupational settings, as well as during sports and exercise. Since respiratory rate is a crucial indicator that responds to a range of stressors, it receives special attention. There are two types of methods for measuring respiratory rate: contact-based and contactless. Non-contact sensing techniques for monitoring RR have recently been developed. Radio frequency (RF) techniques sense breathing by detecting variations in RF signals induced by intake and exhalation motions. Frequency Modulated Carrier Waves (FMCW) and Doppler radar were used to estimate RR. WiFi signals have also been used to calculate RR using received signal strength (RSS) and channel status data (CSI). Moreover, with the rise in remote patient monitoring, non-contact respiratory measurement devices market is in a huge demand in the last few years.
  • Asthma and COPD are the most prelevant respiratory illness amongst a huge population globally. Over the past two decades there has been a change in the economy, industrialization, air pollution levels, and environmental and socio-cultural factors which has led to the rise in cases of asthma. Companies are introducing advanced respiratory measurement devices such as peak flow meters for asthma wherein the flow meter technology as a whole is the role of computer processing.
  • Asia Pacific is estimated to be the fastest growing region in the respiratory measurement devices market during the forecast period. The increase in the prevalence of multiple respiratory illnesses has led to the rise in demand for respiratory devices for monitoring. Additionally, rise in geriatric population suffering from various respiratory illness is another factor supporting the growth of the market. Furthermore, leading players are looking forward to expand their presence in developing countries due to the rising demand for advanced respiratory measurement devices.

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Some of the players operating in the global respiratory measurement devices market are

  • Analog Devices, Inc.
  • Chart Industries
  • GE Healthcare
  • GSK plc.
  • ICON plc
  • Invacare Corporation
  • Koninklijke Philips N.V.
  • Medtronic
  • MGC Diagnostics Corporation
  • NIHON KOHDEN CORPORATION
  • ResMed, Siemens
  • Smiths Medical
  • VYAIRE MEDICAL, INC.
  • Welch Allyn, Inc. (Hillrom)
  • Other Market Participants

Global Respiratory Measurement Devices Market

By Type

  • Contact Based Respiration Monitoring
    • Sound-Based Respiratory Monitoring
    • Airflow Sensing-Based Respiratory Monitoring
    • Chest Movement-Based Respiratory Monitoring
    • Others
  • No-contact Respiration Monitoring
    • Camera-Based Respiratory Monitoring
    • Radar-Based Respiratory Monitoring
    • Ultrasound-Based
    • Others

By Device Types

  • Pulse Oximeter
  • Capnographs
  • Spirometers
  • Gas Analyzers
  • Peak Flow meters
  • Patient Monitoring accessories
  • Others

By Indication

  • Asthma
  • COPD
  • Cystic Fibrosis
  • Bronchiectasis
  • Hantavirus Pulmonary Syndrome
  • Idiopathic Pulmonary Fibrosis
  • Pulmonary Sarcoidosis
  • Others

By Age Group

  • Adult
  • Children
  • Geriatric

By Distribution Channel

  • Online
  • Offline

By End Users

  • Hospitals and Clinics
  • Ambulatory Centers
  • Specialty Clinics
  • Home care Centers
  • Others

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By Region

  • North America (U.S., Canada, Mexico, Rest of North America)
  • Europe (France, The UK, Spain, Germany, Italy, Nordic Countries (Denmark, Finland, Iceland, Sweden, Norway), Benelux Union (Belgium, The Netherlands, Luxembourg), Rest of Europe
  • Asia Pacific (China, Japan, India, New Zealand, Australia, South Korea, Southeast Asia (Indonesia, Thailand, Malaysia, Singapore, Rest of Southeast Asia), Rest of Asia Pacific
  • Middle East & Africa (Saudi Arabia, UAE, Egypt, Kuwait, South Africa, Rest of Middle East & Africa)
  • Latin America (Brazil, Argentina, Rest of Latin America)

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