Academic literature on the topic 'Healthcare technology-Biosensor'

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Journal articles on the topic "Healthcare technology-Biosensor"

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Wu, Wenzheng, Chengzhen Meng, Xiaoyi Zhao, et al. "Advances in biosensor technology in clinical medicine." Highlights in Science, Engineering and Technology 8 (August 17, 2022): 687–94. http://dx.doi.org/10.54097/hset.v8i.1305.

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With the rapid development of science and technology and medical technology, the development of biosensor technology is on the fast track and is becoming increasingly integrated into clinical care. This phenomenon has revolutionised the healthcare industry, but at the same time, the drawbacks are also becoming apparent. In this paper, we examine the process of integrating biosensor technology with clinical care, discussing the current state of integration and making recommendations accordingly.
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Wang, Jiaen. "Research on Biosensor Technology in Wearable Health Monitoring Equipment." Highlights in Science, Engineering and Technology 97 (May 28, 2024): 226–36. http://dx.doi.org/10.54097/jsmr3p86.

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In recent years, innovative and well-researched smart devices utilizing wearable biosensor systems for health monitoring have attracted much attention from society. These health monitoring devices, equipped with various transmission modules and miniature physiological sensors, are anticipated to alleviate the escalating healthcare expenses in the post-pandemic era by offering real-time, precise physiological information and persistent health status monitoring. Additionally, such health monitoring devices can provide tailored health advice and preventive measures for healthcare providers, poten
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Prem, Kumar, Singhal Khushbu, Chaudhary B.L., and Barupal Tansukh. "Emerging trends in biosensor technology for healthcare and environmental monitoring." Biospectra 18, no. 2 (2023): 345–48. https://doi.org/10.5281/zenodo.12609351.

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Dai, Ming, Qi Wang, and Wan Qin Wu. "Development of a Wearable Biosensor System for Ubiquitous Healthcare Applications." Applied Mechanics and Materials 670-671 (October 2014): 1256–59. http://dx.doi.org/10.4028/www.scientific.net/amm.670-671.1256.

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With the development of wearable computing, wireless communication and artificial intelligence technology, the physiological monitoring systems for homecare applications achieved more and more attention. It is a challenge to design a fully integrated circuit satisfying the requirements of wearable biosensor system, such as small size, low power consumption, wireless transmission, and high signal noise rate (SNR). Based on these considerations, we recently developed a fully-integrated circuit for a wearable biosensor system to measure multiple vital signs in real time, meanwhile, we adopted FIR
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Li, Xinyang. "Recent advancements in biosensor technology for diabetes monitoring." Highlights in Science, Engineering and Technology 66 (September 20, 2023): 84–91. http://dx.doi.org/10.54097/hset.v66i.11625.

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Diabetes mellitus is a global health concern and its associated complications are a leading course of mortality in the world. In personalized healthcare, the ability to conduct on-demand screening, real-time monitoring, and rapid early-stage diagnosis of diabetes is essential for tailoring effective treatment plans to individual patients. The present research efforts are directed towards achieving miniaturization of analytical equipment and reducing the consumption of reagents. As a result, biosensors have been developed that enable sensitive, selective, accurate, rapid, and cost-effective mea
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Sabrina Hayati and Abdul Karim. "The Development and Application of Biosensors in Medical Diagnostics in Indonesia." International Journal of Public Health 1, no. 3 (2024): 43–52. http://dx.doi.org/10.62951/ijph.v1i3.68.

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Biosensors are analytical devices that combine biological sensing elements with physicochemical detectors to provide rapid, accurate, and cost-effective solutions for medical diagnostics. Globally, these devices have revolutionized the detection and monitoring of diseases, significantly impacting patient outcomes. In Indonesia, the adoption and development of biosensor technology have accelerated over the past decade, particularly in response to the growing healthcare needs and the government's push for technological innovation. This study aims to review and analyze the development and applica
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Wityk, Paweł, Agata Terebieniec, Robert Nowak, et al. "Reusable Biosensor for Easy RNA Detection from Unfiltered Saliva." Sensors 25, no. 2 (2025): 360. https://doi.org/10.3390/s25020360.

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Biosensors are transforming point-of-care diagnostics by simplifying the detection process and enabling rapid, accurate testing. This study introduces a novel, reusable biosensor designed for direct viral RNA detection from unfiltered saliva, targeting SARS-CoV-2. Unlike conventional methods requiring filtration, our biosensor leverages a unique electrode design that prevents interference from saliva debris, allowing precise measurements. The biosensor is based on electrochemical principles, employing oligonucleotide probes immobilized on a hydrophobic-coated electrode, which prevents air bubb
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Dimitri, Paul. "Child health technology: shaping the future of paediatrics and child health and improving NHS productivity." Archives of Disease in Childhood 104, no. 2 (2018): 184–88. http://dx.doi.org/10.1136/archdischild-2017-314309.

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In the last decade, technology has revolutionised the way we deliver healthcare. Smartphones, tablets, personal computers and bespoke devices have provided patients with the means to access health information, manage their healthcare and communicate with health professionals remotely. Advances in technology have the potential to change how acute and long-term conditions are diagnosed and managed and how illness is prevented using technological advances in artificial intelligence, virtual and augmented reality, robotics, 3D printing, new materials, biosensor technologies and data analytics. In
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Reddy Yeruva, Ajay. "Providing A Personalized Healthcare Service To The Patients Using AIOPs Monitoring." Eduvest - Journal of Universal Studies 3, no. 2 (2023): 327–34. http://dx.doi.org/10.59188/eduvest.v3i2.742.

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We see the critical role technology plays in healthcare in the midst of a continuous worldwide health crisis. To combat the epidemic, South Korea, for example, used smart city' technology and government-developed applications that follow individuals in quarantine. A biosensor that can identify the virus in saliva samples has just been created by India's National Institute of Animal Biotechnology, Hyderabad. These developments are made feasible by the usage of certain biosensors that have printed circuit boards with metal core components capable of withstanding large variations in moisture and
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Reddy Yeruva, Ajay. "Providing A Personalized Healthcare Service To The Patients Using AIOPs Monitoring." Eduvest - Journal of Universal Studies 3, no. 2 (2023): 327–34. http://dx.doi.org/10.36418/eduvest.v3i2.742.

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We see the critical role technology plays in healthcare in the midst of a continuous worldwide health crisis. To combat the epidemic, South Korea, for example, used smart city' technology and government-developed applications that follow individuals in quarantine. A biosensor that can identify the virus in saliva samples has just been created by India's National Institute of Animal Biotechnology, Hyderabad. These developments are made feasible by the usage of certain biosensors that have printed circuit boards with metal core components capable of withstanding large variations in moisture and
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Dissertations / Theses on the topic "Healthcare technology-Biosensor"

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Soni, Anuradha. "Development of non-invasive biosensors for clinical analysis." Thesis, 2018. http://localhost:8080/xmlui/handle/12345678/7653.

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Book chapters on the topic "Healthcare technology-Biosensor"

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Nelson, Bradley D., Salil Sidharthan Karipott, Samerender Nagam Hanumantharao, Smitha Rao, and Keat Ghee Ong. "Battery-Free Wireless Sensors for Healthcare and Food Quality Monitoring." In Smart Biosensor Technology. CRC Press, 2018. http://dx.doi.org/10.1201/9780429429934-25.

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Yadav, Himani, Bhaskar Sharma Bhaskar Sharma, Ravi Kumar Goswami, et al. "Role of Wearable Biosensors in Healthcare." In Recent Advances in Biosensor Technology: Volume 2. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815136418123020006.

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These days, wearable biosensors are a very valuable tool for tracking the start of various acute and chronic diseases. Wearable biosensors (WBSs) are small, electrical devices that coordinate and collect sensations into the human body and can be present in the form of tattoos, gloves, clothing and inserts. WBSs are a flexible and practical tool for use in the healthcare industry, thanks to their ability to detect information, record it and estimate it accurately. WBSs help patients and doctors to communicate in both directions. It is simple to do painless evaluations of bodily fluids using var
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Nandi, Santosh, Vinayak Adimule, Vandna Sharma, Pankaj Kumar, and Praveen Barmavatu. "Theoretical Characteristics of Biosensing Technology." In Biosensing Technology for Human Health. Royal Society of Chemistry, 2024. https://doi.org/10.1039/9781837676323-00051.

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The word “biosensor” describes a potent and cutting-edge analytical tool with a biological sensing element that has a wide range of applications in biomedicine, drug development, diagnostics, food safety and processing, environmental monitoring, defense, and security.1 An electrical signal can be produced from a biological reaction using an integrated receptor–transducer device called a biosensor. Due to the numerous applications of biosensors in healthcare and disease detection, environmental monitoring, food and water quality monitoring, and medication administration, biosensor design and de
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Yadav, Himani, Bhaskar Sharma, Priti Giri, et al. "Biosensors for Protein Bio-Sensing and Detection of Bacteria and Viruses." In Recent Advances in Biosensor Technology: Volume 2. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815136418123020009.

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The concept of a biosensor was first proposed in 1962 by Clark and Lyons, who developed an oxidase enzyme electrode for the detection of glucose. Since then, the development of nanotechnology has prompted biosensors to evolve and become more specialized for a variety of applications. Currently, at the forefront of science, bio-sensing applications combined with nanotechnology have implications for multiple fields, including medicine, biology, environment, drug delivery, and food safety. In recent decades, bacterial and viral diseases have seriously threatened human safety. Prioritizing the rap
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Singh, Sujeet, Praveen Rai, Hemant Arya, and Vivek K. Chaturvedi. "Role of Paper-based Biosensor in Diagnostics." In Recent Advances in Biosensor Technology: Volume 2. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815136418123020011.

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New diagnostic technologies are paper-based sensors that are multifunctional, highly flexible, absorbent, and environmentally friendly. The substrate can be used to design a cost-effective framework for disease detection, prognosis, and surveillance of illnesses that is easy, reliable, and quick in our medical healthcare sector. Paper-based devices are an extremely cheap innovation for fabricating simplified and movable diagnosing processes that can be extremely useful in resource-constrained settings like developing countries, where fully equipped infrastructure and highly skilled medical per
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Ingawale, Dr Sushrut, and Dr Nandhini Iyer. "PRECISION HEALTH: EXPLORING BIOSENSORS IN HYPERTENSION MANAGEMENT." In Futuristic Trends in Medical Sciences Volume 3 Book 8. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bfms8p5ch8.

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ypertension (HTN), a global health concern, poses challenges in its early identification. Its detection can be facilitated through blood pressure measurement at home or in healthcare facilities and managed effectively with economical pharmaceutical interventions. Timely recognition and the initiation of intervention play pivotal roles in curtailing HTN-related complications and fatalities. Enhancing hypertension management and treatment efficacy, home-based serial blood pressure (BP) monitoring surpasses sporadic clinic measurements. Hence, continual surveillance of cardiovascular health metri
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Sumathi V. "Wireless Sensor Network Protocols, Performance Metrics, Biosensors, and WSN in Healthcare." In Advances in Medical Technologies and Clinical Practice. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-1090-2.ch005.

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Wireless network led to the development of Wireless Sensor Networks (WSNs). A Wireless sensor network is a set of connected devices, sensors, and electronic components that can transmit the information collected from an observed field to the relevant node through wireless links. WSN has advanced many application fields. It can change any kind of technology that can modify the future lifestyle. WSNs are composed of tiny wireless computers that can sense the situation of atmosphere, process the sensor data, make a decision, and spread data to the environmental stimuli. Sensor-based technology ha
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Mohd Razip Wee, M. F., Naif H. Al-Hardan, Asad Masood, Muhammed Azmi Abdul Hamid, Azman Jalar, and Naser M. Ahmed. "The Physics and Operating Principles of Field-effect Transistor-based Biosensors." In Field-effect Transistor Biosensors for Rapid Pathogen Detection. Royal Society of Chemistry, 2024. http://dx.doi.org/10.1039/bk9781837673421-00001.

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The development of field-effect transistor (FET) biosensors in recent years has been tremendous due to their advantages such as good scalability, high sensitivity, real-time detection, inherent amplification, and lower power requirements with the possibility to produce information in a fast and straightforward manner compared to conventional assays. In order to demonstrate the potential of FET-based biosensors, researchers have employed different biomolecular targets with varied sizes from the micro- to nanoscale such as nucleic acids, proteins, cells, antibodies, and antigens that have been u
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Mukherjee, Koushik, and Pritam Saha. "EMERGING APPLICATIONS OF BIOSENSORS IN MEDICAL THERANOSTICS." In Futuristic Trends in Biotechnology Volume 3 Book 14. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bbbt14p2ch5.

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Healthcare sector is observing great advancement in terms of development of newer diagnostics and therapeutics. Over the years, researchers have developed methods for faster and reliable diagnosis of diseases using various biomolecules. Biosensors were first invented in 1962 and have been improvised to make them compact, user friendly, robust, cost-effective for use as point-of-care testing devices. Furthermore developments in the field of nanomaterials have boosted the research and development of biosensors with the integration of biosensing and drug delivery mechanisms. While biosensors are
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Pravallika, V., Naga Jogayya Kothakota, and Bikash Ranjan Jena. "NANO BIOSENSOR: CONCEPT TO APPLICATIONS." In Futuristic Trends in Chemical Material Sciences & Nano Technology Volume 3 Book 19. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bacs19p1ch6.

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The field of nanotechnology is significantly influencing the advancement of a novel category of biosensors referred to as nanobiosensors. Nanobiosensors typically consist of a biological recognition molecule that is mounted onto the surface of a signal transducer. Consequently, the efficacy of the nanobiosensor is contingent upon the careful design of the biosensing interface. Nanobiosensors are currently being widely employed for the purpose of molecular detection of biomarkers that are connected with the diagnosis of various diseases. The utilization of novel nanomaterials in the field of bi
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Conference papers on the topic "Healthcare technology-Biosensor"

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Rai, Pratyush, Jining Xie, Vijay K. Varadan, Thang Ho, and Jamie A. Hestekins. "Sensory Biofuel Cell for Self-Sustained Glucose Sensing in Healthcare Applications for Diabetes Patients." In ASME 2010 First Global Congress on NanoEngineering for Medicine and Biology. ASMEDC, 2010. http://dx.doi.org/10.1115/nemb2010-13029.

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In biosensor design, sensor for blood-glucose-level detection is one of the elementary concepts. Many research groups have reported opto-electro-mechanical and biomimetic techniques for glucose sensing based on nanomaterials. (1) However, the popular commercialized techniques involve drawing blood samples and in-vitro processing. An implantable sensor requires energy source for operation with wire in-out provision for acquiring power and sending signals. Needless to say, the limitation for such a glucose sensor is alimentary rather than elementary. The problem requires innovative design to dev
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Almeida, T. M., M. S. Piedade, J. Germano, et al. "Measurements and modelling of a magnetoresistive biosensor." In 2006 IEEE Biomedical Circuits and Systems Conference - Healthcare Technology (BioCas). IEEE, 2006. http://dx.doi.org/10.1109/biocas.2006.4600303.

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