Internet of Things (IoT) Sensors in Healthcare: Global Markets and Technologies

Publisher Name :
Date: 27-Feb-2018
No. of pages: 113

Report Scope:

This report covers IoT sensors for healthcare, which are defined as electronic components, modules or subsystems whose purpose is to detect events or changes in a healthcare environment or applications and are interconnected with an IoT platform or other sensors.

Within this scope, the report sizes and forecasts the software and hardware revenue for both sensors and interconnection platforms. Technology segments are divided into hardware and software.

The report also segments the market by application in terms of:

- Patient monitoring.

- Therapy administration.

- Diagnostics.

- Treatment.

Report Includes:

- 29 data tables

- An overview of the global market for Internet of Things (IoT) sensors in healthcare

- Analyses of global market trends, with data from 2016 and 2017, and projections of compound annual growth rates (CAGRs) through 2022

- Market breakdown by technology type, application, end user and region

- Identification of segments with high growth potential and their future applications

- Explanation of major drivers and regional dynamics of the market and current trends within the industry

- Detailed profiles of major vendors in the market, including AMETEK, Inc., Analog Devices Inc., Analogic Corp., Bayer HealthCare Pharmaceuticals LLC and Beckman Coulter, Inc.

Summary

The IoT is a broad technology category that includes connected devices working together as a system to deliver data within an application. Quite often, the data is associated with an analytics or decisionsupport engine that enables an actionable outcome. In this way, the IoT is a two-way system, in which the data that is collected from the system at various points is sent to an aggregation platform, which in turn enables applications that can transmit data back to the device endpoints.

In healthcare, there is ever-growing demand for data collection, aggregation, analysis, and two-way feedback to support increased provider productivity and improve quality of care. This capability can also result in cost savings from the substitution of a digital system for manual systems to collect and analyze healthcare data. IoT applications in healthcare can take the form of patient monitoring, diagnostic assessment and therapeutic medication delivery and often play a role in treatment.

However, none of this interaction is possible without a robust array of sensor technology placed at system end points or within a device to trigger data activity. Sensors can either continuously or periodically transmit a state based on a predetermined condition or activate a processor system receiving a signal. Sensors have long been a critical part of the healthcare landscape, but the extent of their value is significantly increasing as the reach of the IoT is extended. This is resulting in expanded ability to accumulate the data that sensors provide and expansion of centralized platforms, where aggregation and analysis take place.

In addition to ubiquitous connectivity, IoT sensors in healthcare can be deployed in a number of ways. While innovation in their deployment is still very much under way, the majority are deployed in one of three ways: implanted in patients, worn externally on the patient's body, or connected to a stationary device at the hospital or at home.

The adoption of IoT sensors in healthcare is also driven by regulatory requirements in many countries, where strengthening the digital interconnection between systems and establishing unified electronic healthcare records are key initiatives aimed at cost savings and improving the quality of care. While the regulatory environment advocates for the use of sensors as part of a system, a number of initiatives are underway to standardize their deployment.

A significant issue with sensors in healthcare environments is their potential conflict with radiofrequency signals from various healthcare devices if they are not deployed properly. Historically, many healthcare devices have not worked well with each other. There are a number of interoperability initiatives to solve this issue.

On top of this is the profound challenge posed by security issues. In recent years, healthcare devices and their sensor-bearing devices have become vulnerable to a variety of attacks. Hackers have been able to find their way into implanted devices and general purpose computing systems. Now that so many devices and systems are connected, once they are compromised, this offers pathways to the entire healthcare network, which greatly increases risks.

Internet of Things (IoT) Sensors in Healthcare: Global Markets and Technologies

Table of Contents

Chapter 1 Introduction
Study Goals and Objectives
Reasons for Doing This Study
Scope of Report
Information Sources
Methodology
Geographic Breakdown
Analyst's Credentials
Related BCC Research Reports

Chapter 2 Summary and Highlights

Chapter 3 Market and Technology Background
Sensors in Healthcare
IoT in Healthcare
FDA and IoT Devices
Fertility Tracking
Personal Meditation Assistant
Pharmaceutical Applications
Biomonitoring
Wellness Devices
Home Monitors
Clinical Applications
Cardiovascular Applications
mHealth
Emergency Response
In Hospital Systems
Predictive Analytics
Regulatory Environment
Standards
Interoperability

Chapter 4 Market Breakdown by Technology Type
Role of Sensors in Healthcare IoT
Growth Drivers
Types of Sensors
Temperature Sensors
Position Sensors
Pressure Sensors
Flow Sensors
Level Sensors
Chemical Sensors
Force and Load Sensors
Image Sensors
Biosensors
SQUID Sensors
Spintronics
Regulatory Concerns
Sensor Requirements of OEMs

Chapter 5 Market Breakdown by End User
Providers
Patients

Chapter 6 Market Breakdown by Application
Types of Sensors in Medical Applications
Consumer/Patient Monitoring
Blood Pressure Monitoring
Blood Gas Monitoring
Thermometers
Blood Glucose and Diabetes Monitoring
Cardiac Monitors
Neuromonitors
Electroencephalogram (EEG)
Magnetoencephalograph (MEG)
Transcranial Doppler
Respiratory and Sleep Disorders
Pulse Oximeters
Sleep Apnea Monitors (SPMs)
Spirometers
Capnographs
Anesthesia Monitoring
Fetal Monitors
Neonatal Monitors
Multiparameter Monitors
Remote Monitoring

Chapter 7 Market Breakdown by Region
Regional Drivers for IoT Sensors in Healthcare
North America
Latin America
Europe
Middle East and Africa
Asia-Pacific
Rest of the World

Chapter 8 Analysis of Market Opportunities
Future Developments
Internally Embedded Sensors

Chapter 9 Company Profiles
AMETEK ELECTRONICS INSTRUMENTS GROUP
ANALOG DEVICES INC.
ANALOGIC
BAYER HEALTH CARE
BECKMAN COULTER
BEI TECHNOLOGIES
BINSFELD ENGINEERING INC.
BIOCONTROL MEDICAL
BIOTRONIK
BK MEDICAL
BOKAM ENGINEERING INC.
BOSTON SCIENTIFIC SCIMED
BUIVISION INC.
C2CURE
CANON
CARDIO3 BIOSCIENCES
CEDARS-SINAI MEDICAL CENTER
CHILDREN'S MEDICAL CENTER CORP.
COOK UROLOGICAL
COOPER INSTRUMENTS & SYSTEMS
CREARE
CUSTOM SENSORS & TECHNOLOGIES
DISETRONIC
DOW GLOBAL TECHNOLOGIES INC.
DRAGER MEDIZINTECHNIK
DWL ELEKTRONISCHE SYSTEME
ELA MEDICAL
ENDOVIA MEDICAL
ENDRESS+HAUSER
ERBE ELEKTOMEDIZIN
ETHICON ENDO-SURGERY
ETHICON
FORSCHUNGSZENTRUM KARLSRUHE
FRESENIUS MEDICAL CARE DEUTSCHLAND
GENERAL ELECTRIC
GERATHERM MEDICAL
GIVEN IMAGING
HANSEN MEDICAL
HEARTEN MEDICAL INC.
HOANA MEDICAL
HONEYWELL INTERNATIONAL INC.
HONEYWELL SENSING AND CONTROLS
IBM
INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
INTERFACE
INTEGRATED SENSING SYSTEMS (ISSYS)
J. MORITA CORP.
JOHNS HOPKINS UNIVERSITY
KOIKE MEDICAL
KONINKLIJKE PHILIPS ELECTRONICS
LIGHT SCIENCES
MEDIC4ALL
MEDICAL SOLUTIONS
MEDIVANCE
MEDTRONIC
MICROCHIPS
MICRO MEDICAL DEVICES
MICROVENTION
MIDORI AMERICA
MKS INSTRUMENTS INC.
NATIONAL SCIENCE FOUNDATION (NSF)
NEXAN
NVE
OLYMPUS OPTICAL

List of Tables

Summary Table : Global Market for IoT Sensors in Healthcare, by Region, Through 2022
Table 1 : Global Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 2 : Global Market Shares of IoT Sensors in Healthcare, by Technology Type, 2016
Table 3 : Global Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 4 : Global Market Shares of IoT Sensors in Healthcare, by Technology Type, 2016
Table 5 : Global Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 6 : Global Market Shares of IoT Sensors in Healthcare, by Application, 2016
Table 7 : Global Market for Connected Medical Devices, by Region, Through 2022
Table 8 : Global Market Shares of IoT Sensors in Healthcare, by Region, 2016
Table 9 : North American Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 10 : North American Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 11 : North American Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 12 : Latin American Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 13 : Latin American Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 14 : Latin American Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 15 : European Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 16 : European Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 17 : European Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 18 : Middle East and Africa Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 19 : Middle East and Africa Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 20 : Middle East and Africa Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 21 : Asia-Pacific Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 22 : Asia-Pacific Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 23 : Asia-Pacific Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 24 : Rest of the World Market for IoT Sensors in Healthcare, by Technology Type, Through 2022
Table 25 : Rest of the World Market for IoT Sensors in Healthcare, by End User, Through 2022
Table 26 : Rest of the World Market for IoT Sensors in Healthcare, by Application, Through 2022
Table 27 : Global Market for IoT Sensors in Healthcare, by Material Type, Through 2022
Table 28 : Global Market Shares of IoT Sensors in Healthcare, by Material Type, 2016

List of Figures

Summary Figure : Global Market for IoT Sensors in Healthcare, by Region, 2016-2022
Figure 1 : Global Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 2 : Global Market Shares of IoT Sensors in Healthcare, by Technology Type, 2016
Figure 3 : Global Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 4 : Global Market Shares of IoT Sensors in Healthcare, by Technology Type, 2016
Figure 5 : Global Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 6 : Global Market Shares of IoT Sensors in Healthcare, by Application, 2016
Figure 7 : Global Market for Connected Medical Devices in Healthcare, by Region, 2016-2022
Figure 8 : Global Market Shares of IoT Sensors in Healthcare, by Region, 2016
Figure 9 : North American Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 10 : North American Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 11 : North American Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 12 : Latin American Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 13 : Latin American Market for IoT Sensors in Healthcare, by End User, 2016-2022
Figure 14 : Latin American Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 15 : European Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 16 : European Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 17 : European Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 18 : Middle East and Africa Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 19 : Middle East and Africa Market for IoT Sensors in Healthcare, by End User, 2016-2022
Figure 20 : Middle East and Africa Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 21 : Asia-Pacific Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 22 : Asia-Pacific Market for IoT Sensors in Healthcare, by End User, 2016-2022
Figure 23 : Asia-Pacific Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 24 : Rest of the World Market for IoT Sensors in Healthcare, by Technology Type, 2016-2022
Figure 25 : Rest of the World Market for IoT Sensors in Healthcare, by End User, 2016-2022
Figure 26 : Rest of the World Market for IoT Sensors in Healthcare, by Application, 2016-2022
Figure 27 : Global Market for IoT Sensors in Healthcare, by Material Type, 2016-2022
Figure 28 : Global Market Shares of IoT Sensors in Healthcare, by Material Type, 2016
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