Revisiting Remote Monitoring for Older Adults: A Systematic Literature Review toward Advancing Remote Monitoring for Patients with AD/ADRD (Preprint) DOI Creative Commons

Mohmmad Arif Shaik,

Fahim Islam Anik, Md. Mehedi Hasan

et al.

JMIR Aging, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 23, 2024

Language: Английский

Healthcare Monitoring Using an Internet of Things-Based Cardio System DOI Creative Commons
Galya Georgieva-Tsaneva, Krasimir Cheshmedzhiev,

Yoan-Aleksandar Tsanev

et al.

IoT, Journal Year: 2025, Volume and Issue: 6(1), P. 10 - 10

Published: Feb. 6, 2025

This study describes an IoT-based health monitoring system designed to notify attending physicians when necessary. The developed IoT incorporates sensors for ECG, PPG, and temperature; a gyroscope/accelerometer; microcontroller. A critical analysis of existing components in these areas was conducted ensure the system’s good performance, reliability, suitability continuous cardiac data processing. addresses challenge activity patients with arrhythmias, focusing on differences heart rate variability (HRV) parameters between healthy individuals those extrasystolic arrhythmia. purpose this research is evaluate effectiveness systems using PPG ECG registration HRV analysis. leverages time domain frequency methods assess states autonomic nervous system. Significant were observed parameters, such as SDNN, SDANN, RMSSD, LF/HF ratio. results demonstrated that both provide comparable measurements, despite PPG’s higher susceptibility noise. concludes integration can reliably detect arrhythmias offer real-time care.

Language: Английский

Citations

1

Optimization of network topology robustness in IoTs: A systematic review DOI
Sabir Ali Changazi, Asim Dilawar Bakhshi, Muhammad Yousaf

et al.

Computer Networks, Journal Year: 2024, Volume and Issue: 250, P. 110568 - 110568

Published: June 6, 2024

Language: Английский

Citations

5

Route Optimization for Home Healthcare Vehicles DOI Creative Commons
Moez Balti, Abderrazak Jemai

Journal of Smart Cities and Society, Journal Year: 2025, Volume and Issue: unknown

Published: Feb. 4, 2025

Home health care (HHC) refers to a range of services provided at home after illness or injury, offering the benefits reduced costs and increased convenience. However, HHC involves moving medical staff patient's home, thus generating new challenges overcome such as vehicle routing problem (VRP). Heuristic methods exact have been proposed for solving VRP problems. In recent years, smart healthcare 4.0 solutions intelligent transportation systems (ITS) based on internet things (IoT) technologies developed address emerging while improving service quality reducing time costs. The introduction system can reduce labor intensity staff, save enhance experience patients. this context, paper gives review some approaches solve VRPs. A combined approach using method, healthcare, ITS is determine reliable route optimization solution vehicles. was optimized considering traffic congestion levels during travel. finding optimal route, then in real allows bypass blockages.

Language: Английский

Citations

0

Ultra-Lightweight Cryptographic Algorithm for Resource Constraints Medical Iot Devices to Enhance Healthcare Security DOI

Abdul Muhammed Rasheed,

Retnaswami Mathusoothana Satheesh Kumar

Published: Jan. 1, 2025

Language: Английский

Citations

0

Up-Link OFDMA Hybrid Access for Enabling IoT-Based Remote Video Monitoring Over Wi-Fi 7 DOI

Said Ould Amara,

Mohand Yazid, Souhila Mammeri

et al.

Lecture notes in networks and systems, Journal Year: 2025, Volume and Issue: unknown, P. 623 - 633

Published: Jan. 1, 2025

Language: Английский

Citations

0

Exploring the import of mechatronics engineering in medicine: a review DOI Creative Commons
Oluwaseun Opeyemi Martins, Christiaan Oosthuizen, Dawood Desai

et al.

Beni-Suef University Journal of Basic and Applied Sciences, Journal Year: 2025, Volume and Issue: 14(1)

Published: March 23, 2025

Abstract Background The interdisciplinary nature of mechatronics has spurred huge progress in medicine to facilitate the creation robotic surgery, wearable health monitoring, and bio-inspired robots. All these technologies enhance precision boost diagnostic capability, enable real-time patient monitoring. For example, robotic-assisted surgeries have recorded a 50% cut complications 40% reduction healing times, while technology enhanced early anomaly detection by 80%, saving emergency hospitalisation. Main body This review critically examines evolution applications focusing on problems including financial burdens, confidentiality data, compliance with regulation. Emphasis is placed heavily regulatory approval processes required organisations such as US Food Drug Administration (FDA) International Organisation for Standardisation (ISO) that typically delay use life-saving equipment 3–5 years. In addition, expensive price surgery systems (~$2 million per unit) extensive training (20–40 procedures be proficient) are inhibiting factors. New trends robots nanomedicine also considered here, which exhibited fantastic potential minimally invasive therapy, nanorobot-based cancer therapies tumour growth inhibition limiting systemic side effects. Conclusions To propel ethical sustainable adoption healthcare, this proposed development partnerships among engineers, clinicians, policymakers, simplifies clearance processes, designs low-cost, scalable products. Through avenues, can proceed revolutionise enhancing outcomes expanding accessibility cutting-edge medical technology.

Language: Английский

Citations

0

Autonomous Electromechanical Device for Contactless Measurement of Core Body Temperature DOI Open Access

Mustafa Ahmedov,

Tanyo Iskrenov,

Ivaylo Minev

et al.

International Journal of Biomedical Science and Engineering, Journal Year: 2025, Volume and Issue: 13(1), P. 24 - 30

Published: March 26, 2025

Continuous monitoring of body temperature is a major issue in the health care system due to fact that sudden and extreme changes are related severe alterations patient’s health. An innovative device with improved capabilities superior currently available infrared sensors used for medical applications was invented. The consists complex sensor module (CSM) body. CSM works 3 levels mechanical freedom, which grants optimal dynamic repositioning relation field view, resulting automatic continuous remote measurement. incorporates distance measurement sensor, main secondary sensor. connected control processing unit. unit have bidirectional connection data transmission. A comparative analysis values acquired by autonomous contactless electromechanical (thermo-i, Innovariver Ltd.) Drager Infinity Delta patient monitor were performed. As result, implementation “IR noise elimination technology” capable measure patients’ core from 50 cm Although between increased more than 15 times, accuracy measurements preserved at level being done without applying invented technology. has specific software module, operates autonomously distantly patient, positions itself automatically according position. In contrast conventional thermometers, our solution self-operating, reduces human error risk, improves workflow, non-invasively convenient bedside patient.

Language: Английский

Citations

0

Global Regulatory Perspectives on Sensor-Enabled and Biomaterial-Integrated Medical Devices: A Focus on India, Canada, and Australia DOI

Sahil Jamil Mulla,

Mital Patel

Deleted Journal, Journal Year: 2025, Volume and Issue: unknown

Published: April 1, 2025

Language: Английский

Citations

0

Enhancing Connected Health Ecosystems Through IoT-Enabled Monitoring Technologies: A Case Study of the Monit4Healthy System DOI Creative Commons
Marilena Ianculescu,

Victor-Ștefan Constantin,

Andreea-Maria Gușatu

et al.

Sensors, Journal Year: 2025, Volume and Issue: 25(7), P. 2292 - 2292

Published: April 4, 2025

The Monit4Healthy system is an IoT-enabled health monitoring solution designed to address critical challenges in real-time biomedical signal processing, energy efficiency, and data transmission. system's modular design merges wireless communication components alongside a number of physiological sensors, including galvanic skin response, electromyography, photoplethysmography, EKG, allow for the remote gathering evaluation information. In order decrease network load enable quick identification abnormalities, edge computing used filtering feature extraction. Flexible transmission based on context available bandwidth provided through hybrid approach that includes Bluetooth Low Energy Wi-Fi. Under typical scenarios, laboratory testing shows reliable connectivity ongoing battery-powered operation. appropriate scalable deployment connected ecosystems portable due its responsive power management approaches structured transmission, which improve resiliency system. ensures reliability signals whilst lowering latency volume comparison conventional cloud-only systems. Limitations include requirement profiling, distinctive hardware miniaturizing, sustained real-world validation. By integrating context-aware flexible design, effective communication, complements existing IoT solutions promotes better integration clinical smart city healthcare environments.

Language: Английский

Citations

0

Biomedical Sensor Networks and Remote Patient Monitoring DOI

T. Mathankumar,

S. Vijayarani

Advances in computer and electrical engineering book series, Journal Year: 2025, Volume and Issue: unknown, P. 221 - 252

Published: Feb. 7, 2025

In contemporary healthcare, integrating advanced technologies such as data analytics and wearable sensor networks is revolutionizing patient monitoring disease management. Effective analysis essential for improving health outcomes, enabling early diagnosis, supporting personalized treatment plans. This process begins by examining the role of in processing vast amounts healthcare data, including EHRs, medical imaging, from sensors. chapter provides an in-depth exploration these their impact on delivery. It explains how body-fitted wireless (BF-WSNs) enable continuous vital sign collection transmission to professionals, facilitating real-time monitoring, prompt intervention, detection. Additionally, it discusses biomedical (BSNs), which offer remote without requiring in-person hospital visits. The benefits include enhanced engagement, cost savings, improved outcomes.

Language: Английский

Citations

0