The Role of the Internet of Things (IoT) in Biomedical Engineering
eBook - ePub

The Role of the Internet of Things (IoT) in Biomedical Engineering

Present Scenario and Challenges

Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz, Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz

Buch teilen
  1. 256 Seiten
  2. English
  3. ePUB (handyfreundlich)
  4. Über iOS und Android verfügbar
eBook - ePub

The Role of the Internet of Things (IoT) in Biomedical Engineering

Present Scenario and Challenges

Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz, Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz

Angaben zum Buch
Buchvorschau
Inhaltsverzeichnis
Quellenangaben

Über dieses Buch

This volume introduces the key evolving applications of IoT in the medical field for patient care delivery through the usage of smart devices. It shows how IoT opens the door to a wealth of relevant healthcare information through real-time data analysis as well as testing, providing reliable and pragmatic data that yields enhanced solutions and discovery of previously undiscovered issues.

This new volume discusses IoT devices that are deployed for enabling patient health tracking, various emergency issues, smart administration of patients, etc. It looks at the problems of cardiac analysis in e-healthcare, explores the employment of smart devices aimed for different patient issues, and examines the usage of Arduino kits where the data can be transferred to the cloud for internet-based uses. The volume also considers the roles of IoT in electroencephalography (EEG) and magnetic resonance imaging (MRI), which play significant roles in biomedical applications. This book also incorporates the use of IoT applications for smart wheelchairs, telemedicine, GPS positioning of heart patients, smart administration with drug tracking, and more.

Häufig gestellte Fragen

Wie kann ich mein Abo kündigen?
Gehe einfach zum Kontobereich in den Einstellungen und klicke auf „Abo kündigen“ – ganz einfach. Nachdem du gekündigt hast, bleibt deine Mitgliedschaft für den verbleibenden Abozeitraum, den du bereits bezahlt hast, aktiv. Mehr Informationen hier.
(Wie) Kann ich Bücher herunterladen?
Derzeit stehen all unsere auf Mobilgeräte reagierenden ePub-Bücher zum Download über die App zur Verfügung. Die meisten unserer PDFs stehen ebenfalls zum Download bereit; wir arbeiten daran, auch die übrigen PDFs zum Download anzubieten, bei denen dies aktuell noch nicht möglich ist. Weitere Informationen hier.
Welcher Unterschied besteht bei den Preisen zwischen den Aboplänen?
Mit beiden Aboplänen erhältst du vollen Zugang zur Bibliothek und allen Funktionen von Perlego. Die einzigen Unterschiede bestehen im Preis und dem Abozeitraum: Mit dem Jahresabo sparst du auf 12 Monate gerechnet im Vergleich zum Monatsabo rund 30 %.
Was ist Perlego?
Wir sind ein Online-Abodienst für Lehrbücher, bei dem du für weniger als den Preis eines einzelnen Buches pro Monat Zugang zu einer ganzen Online-Bibliothek erhältst. Mit über 1 Million Büchern zu über 1.000 verschiedenen Themen haben wir bestimmt alles, was du brauchst! Weitere Informationen hier.
Unterstützt Perlego Text-zu-Sprache?
Achte auf das Symbol zum Vorlesen in deinem nächsten Buch, um zu sehen, ob du es dir auch anhören kannst. Bei diesem Tool wird dir Text laut vorgelesen, wobei der Text beim Vorlesen auch grafisch hervorgehoben wird. Du kannst das Vorlesen jederzeit anhalten, beschleunigen und verlangsamen. Weitere Informationen hier.
Ist The Role of the Internet of Things (IoT) in Biomedical Engineering als Online-PDF/ePub verfügbar?
Ja, du hast Zugang zu The Role of the Internet of Things (IoT) in Biomedical Engineering von Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz, Sushree Bibhuprada B. Priyadarshini, Devendra Kumar Sharma, Rohit Sharma, Korhan Cengiz im PDF- und/oder ePub-Format sowie zu anderen beliebten Büchern aus Computer Science & Computer Science General. Aus unserem Katalog stehen dir über 1 Million Bücher zur Verfügung.

Information

Jahr
2022
ISBN
9781000400892

CHAPTER 1 USE OF IoT IN BIOMEDICAL SIGNAL ANALYSIS FOR HEALTHCARE SYSTEMS

MIHIR NARAYAN MOHANTY1*, SAUMENDRA KUMAR MOHAPATRA1, and MOHAN DEBARCHAN MOHANTY2
1ITER, Siksha ‘O’ Anusandhan (Deemed to be University), Bhubaneswar, Odisha, India
2College of Engineering and Technology, Bhubaneswar, Odisha, India
*Corresponding author. E-mail: [email protected]

ABSTRACT

Death rate is proportionally increasing with health ailment and accident throughout the world. Though technology develops day-by-day, still the gap is there in many areas. Especially the healthcare units lack to provide adequate support and solution to human society. Since last decade enormous developments have been done in technological field and applied in academia, industries, and healthcare units. Sophisticated analysis and diagnosis is still challenge for researchers that can help to the physicians as well to the society. In this chapter, authors focus on cardiac problem analysis for e-healthcares. For the data collection, smart sensors are used for different patients. Using the Arduino kit, the data can be transferred to cloud for internet-based uses. It will be easier to observe through either mobile devices or through computers. The analysis is automated using fuzzy inference system. Also it is developed for graphical user interface (GUI) to make the system user-friendly. The analysis and detection is performed well with the application of fuzzy logic. Due to such setup, communication can be bidirectional to diagnosis, monitoring, and suggestions. Some of the results are depicted in this scenario and some of the issues are kept as open challenges. Starting from individuals to data mining, many types of signals are analyzed and exhibited.

1.1 INTRODUCTION

Nowadays Internet of Things (IoT) is one of the buzzwords in information technology. The real-world objects can be transforms into intelligent and most effective objects by the application of IoT. It formulates an integrated communication atmosphere of interconnected devices and performs by engaging both the virtual and physical world together. Objects in remote areas can be controlled and accessed through IoT in an existing network structure. An opportunity can also be created for making a direct interaction between the physical world and computerized system. In 1982, the concept for creating a network of smart devices was designed by modifying a coke machine at Carnegie Mellon University and it became the first electrical device connected with the Internet.1 IoT is a framework for the evaluating and monitoring of distributed data sources over a specified network environment. The idea of expanding the application of the Internet into real-world objects can be done by IoT. This trend is growing with positive impact worldwide and several industries are also adopting this technology to improve their service quality. The concept of IoT raised by the union of several advanced technologies such as machine learning, real-time data analysis, commodity sensors, and embedded systems. IoT system can be enabled by the contribution of the wireless sensor network, automation, embedded systems, and other advanced techniques.2,3
The IoT is a vibrant universal information network that consists of multiple objects that are connected through the Internet. These objects can be radio frequency identifiers, sensors, actuators, and other instruments and smart electrical devices. Over the last few decades, it can be observed that several small and medium enterprises and academic researchers are developing a huge amount of IoT solutions that can be applied in many industries such as e-commerce, healthcare sectors, agriculture, and waste management.4 IoT plays an important role in healthcare sectors. Diagnosis system for several diseases can be integrated by applying IoT in hospitals. IoT-based healthcare system or also called smart healthcare system can be led to creating a digitalized patient service in remote areas. For the purpose of health monitoring and emergency notification, IoT devices can be enabled for monitoring the blood pressure and heart rate. Several advanced devices are there for monitoring some specific implants, such as pacemakers, Fitbit electronic wristbands, and hearing aids.5 For detecting the patient’s behaviors in bed, some hospitals are also started implementing the smart beds. By applying the IoT devices in the healthcare sector, the annual expenditure can be reduced and revenue can be increased in hospitals.6,7 Different policies and guideline have been introduced for implementing IoT technology in the healthcare organizations in many countries. Still, this advanced technology remains in its infancy in the healthcare field.15
The heart is the most vital organ of an individual. Its major function is to pump blood and distribute throughout the human organ. Cardiac disease is one of the top causes of death globally. The main factors behind cardiovascular disease (CVD) are high blood pressure, cholesterol, diet, alcohol consumption, etc. Electrocardiogram (ECG) system is a simple track of the electrical movements created by the heart. ECG is a powerful non-obtrusive instrument for different biomedical applications, for estimating the pulse, looking at the rhythm of pulses, diagnosing heart variations from the norm, emotion acknowledgment, and recognition of biometric proof.8 With the innovations in embedded information and communication technologies, sophisticated healthcare support can be provided to human beings at any places. This technology can be useful for offering ECG monitoring facility to patients, senior citizens, athletes, and common people. By the use of this facility, the diagnosis of cardiac illness can be progressed with minimum time and expenditure.9 ECG is detected by traditional large and stationary types of equipment in hospitals. To improve the diagnosis time, it is required to implement a smart low-cost ECG signal detec...

Inhaltsverzeichnis