keyword
https://read.qxmd.com/read/38693072/reversible-switching-between-microwave-absorption-and-emi-shielding-of-vo-2-composite-foam
#61
JOURNAL ARTICLE
Si-Yuan Liao, Xiao-Yun Wang, Yu-Ying Shi, Qiao-Feng Wang, Xin-Yin Gu, You-Gen Hu, Peng-Li Zhu, Rong Sun, Yan-Jun Wan
Developing lightweight composite with reversible switching between microwave (MW) absorption and electromagnetic interference (EMI) shielding is promising yet remains highly challenging due to the completely inconsistent attenuation mechanism for electromagnetic (EM) radiation. Here, a lightweight vanadium dioxide/expanded polymer microsphere composites foam (VO2 /EPM) is designed and fabricated with porous structures and 3D VO2 interconnection, which possesses reversible switching function between MW absorption and EMI shielding under thermal stimulation...
May 1, 2024: Small
https://read.qxmd.com/read/38692794/auni-bimetallic-aerogel-with-ultra-high-stability-applied-in-smart-and-portable-biosensing
#62
JOURNAL ARTICLE
Guanglei Li, Pengxin Xue, Haoxin Fan, Yuan Ma, Haoyu Wang, Danfeng Lu, Jie Gao, Dan Wen
Glucose detection is of significant importance in providing information to the human health management. However, conventional enzymatic glucose sensors suffer from a limited long-term stability due to the losing activity of the enzymes. In this work, the AuNi bimetallic aerogel with a well-defined nanowire network is synthesized and applied as the sensing nanomaterial in the non-enzymatic glucose detection. The three-dimensional (3D) hierarchical porous structure of the AuNi bimetallic aerogel ensures the high sensitivity of the sensor (40...
June 1, 2024: Analytica Chimica Acta
https://read.qxmd.com/read/38691605/a-reconfigurable-integrated-smart-device-for-real-time-monitoring-and-synergistic-treatment-of-rheumatoid-arthritis
#63
JOURNAL ARTICLE
Yu Liu, Weichang Xie, Zhibo Tang, Zhenfa Tan, Yizhe He, Jun Luo, Xiaolei Wang
Rheumatoid arthritis (RA) is a global autoimmune disease that requires long-term management. Ambulatory monitoring and treatment of RA favors remission and rehabilitation. Here, we developed a wearable reconfigurable integrated smart device (ISD) for real-time inflammatory monitoring and synergistic therapy of RA. The device establishes an electrical-coupling and substance delivery interfaces with the skin through template-free conductive polymer microneedles that exhibit high capacitance, low impedance, and appropriate mechanical properties...
May 3, 2024: Science Advances
https://read.qxmd.com/read/38690108/mof-graphene-oxide-based-composites-in-smart-supercapacitors-a-comprehensive-review-on-the-electrochemical-evaluation-and-material-development-for-advanced-energy-storage-devices
#64
REVIEW
Sanjeev Gautam, Shruti Rialach, Surinder Paul, Navdeep Goyal
The surge in interest surrounding energy storage solutions, driven by the demand for electric vehicles and the global energy crisis, has spotlighted the effectiveness of carbon-based supercapacitors in meeting high-power requirements. Concurrently, metal-organic frameworks (MOFs) have gained attention as a template for their integration with graphene oxide (GO) in composite materials which have emerged as a promising avenue for developing high-power supercapacitors, elevating smart supercapacitor efficiency, cyclic stability, and durability, providing crucial insights for overcoming contemporary energy storage obstacles...
April 25, 2024: RSC Advances
https://read.qxmd.com/read/38687671/reconstructed-graph-neural-network-with-knowledge-distillation-for-lightweight-anomaly-detection
#65
JOURNAL ARTICLE
Xiaokang Zhou, Jiayi Wu, Wei Liang, Kevin I-Kai Wang, Zheng Yan, Laurence T Yang, Qun Jin
The proliferation of Internet-of-Things (IoT) technologies in modern smart society enables massive data exchange for offering intelligent services. It becomes essential to ensure secure communications while exchanging highly sensitive IoT data efficiently, which leads to high demands for lightweight models or algorithms with limited computation capability provided by individual IoT devices. In this study, a graph representation learning model, which seamlessly incorporates graph neural network (GNN) and knowledge distillation (KD) techniques, named reconstructed graph with global-local distillation (RG-GLD), is designed to realize the lightweight anomaly detection across IoT communication networks...
April 30, 2024: IEEE Transactions on Neural Networks and Learning Systems
https://read.qxmd.com/read/38686696/simulation-guided-rational-design-of-dna-walker-based-theranostic-platform
#66
JOURNAL ARTICLE
Jingyan Mou, Haoping Zhang, Linghao Zhang, Beibei Zhang, Jiajia Liu, Shasha Zheng, Qiaoni Kou, Hong Wang, Xin Su, Shaojun Guo, Yonggang Ke, Yingwei Zhang
Biomolecule-functionalized nanoparticles represent a type of promising biomaterials in biomedical applications owing to their excellent biocompatibility and versatility. DNA-based reactions on nanoparticles have enabled emerging applications including intelligent biosensors, drug delivery, and biomimetic devices. Among the reactions, strand hybridization is the critical step to control the sensitivity and specificity of biosensing, and the efficiency of drug delivery. However, a comprehensive understanding of DNA hybridization on nanoparticles is still lacking, which may differ from the process in homogeneous solutions...
April 30, 2024: Small
https://read.qxmd.com/read/38686687/trends-safety-and-efficacy-of-wearable-male-sexual-devices
#67
JOURNAL ARTICLE
Charles A Loeb, Muhammad A M Hammad, David W Barham, Jake Miller, Kirsten Young, Rainey Horwitz, Eliad Amini, Mai Xuan Nguyen, Nitish Nag, Lawrence C Jenkins, Amy M Pearlman, Faysal A Yafi
INTRODUCTION: The prevalence of male sexual dysfunction (MSD) increases with age, with >50% of men aged >40 years reporting erectile dysfunction (ED). In recent years, wearable male sex devices (WMSDs) have been increasingly utilized by patients and recommended by sexual medicine clinicians. OBJECTIVES: This study seeks to investigate the safety and efficacy of products currently marketed for the treatment of MSD. METHODS: Available products for WMSDs were reviewed by analyzing product websites, forums, advertisements, and clinical recommendations...
April 30, 2024: Sexual Medicine Reviews
https://read.qxmd.com/read/38686300/flexible-tactile-sensors-with-interlocking-serrated-structures-based-on-stretchable-multiwalled-carbon-nanotube-silver-nanowire-silicone-rubber-composites
#68
JOURNAL ARTICLE
Junyan Feng, Hezheng Ao, Peng Cao, Tao Yang, Bo Xing
Flexible tactile sensors have attracted significant interest because of their application scope in the fields of biomedicine, motion detection, and human-computer interaction. However, the development of tactile sensors with high sensitivity and flexibility remains a critical challenge. This study develops a patterned, stretchable, and fully elastomeric multiwalled carbon nanotube (MWCNT)/silver nanowire (Ag NW)/silicone rubber (SR) composite. The addition of Ag NWs to MWCNTs enhances the transmission path of the conductive network, yielding a CNT/Ag NW/SR composite with a sensitivity coefficient of 40...
April 25, 2024: RSC Advances
https://read.qxmd.com/read/38683957/multifunctional-zincophilic-hydrogel-electrolyte-with-abundant-hydrogen-bonds-for-zinc-ion-capacitors-and-supercapacitors
#69
JOURNAL ARTICLE
Shuzhen Cui, Wenxing Miao, Xiangbing Wang, Kanjun Sun, Hui Peng, Guofu Ma
The new-generation flexible Zn-ion capacitors (ZICs) require multifunctionality and environmental adaptability for practical applications. This essentially means that hydrogel electrolytes are expected to possess superior mechanical properties, temperature resistance, and tunable interface properties to resist flexibility loss and performance degradation over a wide operating temperatures range. Herein, a multifunctional polyzwitterionic hydrogel electrolyte (PAM/LA/PSBMA) with wide operating temperatures, excellent tensile ability, high water retention, and self-adhesion is designed...
April 29, 2024: ACS Nano
https://read.qxmd.com/read/38683665/effectiveness-of-a-smartphone-app-based-intervention-with-bluetooth-connected-monitoring-devices-and-a-feedback-system-in-heart-failure-smart-hf-trial-randomized-controlled-trial
#70
RANDOMIZED CONTROLLED TRIAL
Minjae Yoon, Seonhwa Lee, Jah Yeon Choi, Mi-Hyang Jung, Jong-Chan Youn, Chi Young Shim, Jin-Oh Choi, Eung Ju Kim, Hyungseop Kim, Byung-Su Yoo, Yeon Joo Son, Dong-Ju Choi
BACKGROUND: Current heart failure (HF) guidelines recommend a multidisciplinary approach, discharge education, and self-management for HF. However, the recommendations are challenging to implement in real-world clinical settings. OBJECTIVE: We developed a mobile health (mHealth) platform for HF self-care to evaluate whether a smartphone app-based intervention with Bluetooth-connected monitoring devices and a feedback system can help improve HF symptoms. METHODS: In this prospective, randomized, multicenter study, we enrolled patients 20 years of age and older, hospitalized for acute HF, and who could use a smartphone from 7 tertiary hospitals in South Korea...
April 29, 2024: Journal of Medical Internet Research
https://read.qxmd.com/read/38682802/robust-efficient-and-recoverable-thermocells-with-zwitterion-boosted-hydrogel-electrolytes-for-energy-autonomous-and-wearable-sensing
#71
JOURNAL ARTICLE
Xin Lu, Ziwei Mo, Zhaopeng Liu, Yifeng Hu, Chunyu Du, Lirong Liang, Zhuoxin Liu, Guangming Chen
The rapid growth of flexible quasi-solid-state thermocells (TECs) provides a fresh way forward for wearable electronics. However, their insufficient mechanical strength and power output still hinder their further applications. This work demonstrates a one-stone-two-birds strategy to synergistically enhance the mechanical and thermoelectrochemical properties of the [Fe(CN)6]3-/4--based TECs. By introducing multiple non-covalent interactions via betaine zwitterions, the mechanical strength of the conventional brittle gelatin hydrogel electrolytes is substantially improved from 50 to 440 kPa, with a high stretchability approaching 250%...
April 29, 2024: Angewandte Chemie
https://read.qxmd.com/read/38682442/predicting-blood-glucose-levels-with-organic-neuromorphic-micro-networks
#72
JOURNAL ARTICLE
Ibrahim Kurt, Imke Krauhausen, Simone Spolaor, Yoeri van de Burgt
Accurate glucose prediction is vital for diabetes management. Artificial intelligence and artificial neural networks (ANNs) are showing promising results for reliable glucose predictions, offering timely warnings for glucose fluctuations. The translation of these software-based ANNs into dedicated computing hardware opens a route toward automated insulin delivery systems ultimately enhancing the quality of life for diabetic patients. ANNs are transforming this field, potentially leading to implantable smart prediction devices and ultimately to a fully artificial pancreas...
April 29, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38680265/comprehensive-and-personalized-approach-is-a-critical-area-for-developing-remote-cardiac-rehabilitation-programs
#73
EDITORIAL
Garyfallia Pepera, Varsamo Antoniou, Jing Jing Su, Rose Lin, Ladislav Batalik
In the evolving landscape of cardiac rehabilitation (CR), adopting digital technologies, including synchronous/real-time digital interventions and smart applications, has emerged as a transformative approach. These technologies offer real-time health data access, continuous vital sign monitoring, and personalized educational enhanced patient self-management and engagement. Despite their potential benefits, challenges and limitations exist, necessitating careful consideration. Synchronous/real-time digital CR involves remote, two-way audiovisual communication, addressing issues of accessibility and promoting home-based interventions...
April 26, 2024: World Journal of Clinical Cases
https://read.qxmd.com/read/38676634/cqds-cross-linked-conductive-collagen-paa-based-nanocomposite-organohydrogel-coupling-flexibility-with-multifunctionality-for-dual-modal-sensing-of-human-motions
#74
JOURNAL ARTICLE
Maohua Lan, Jinwei Zhang, Jin Zhou, Haibin Gu
Conductive hydrogels are ideal materials for intelligent medical devices, human-machine interfaces, and flexible bioelectrodes due to their adjustable mechanical properties and electrical responsiveness, whereas it is still a great challenge to achieve the integration of excellent flexibility and biocompatibility into one hydrogel sensor while also incorporating self-healing, self-adhesion, environmental tolerance, and antimicrobial properties. Here, a nanocomposite conductive organohydrogel was constructed by using collagen (Col), alginate-derived carbon quantum dots (OSA-CQDs), poly(acrylic acid) (PAA), ethylene glycol reduced AgNPs, and Fe3+ ions...
April 27, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38676266/implementing-gait-kinematic-trajectory-forecasting-models-on-an-embedded-system
#75
JOURNAL ARTICLE
Madina Shayne, Leonardo A Molina, Bin Hu, Taylor Chomiak
Smart algorithms for gait kinematic motion prediction in wearable assistive devices including prostheses, bionics, and exoskeletons can ensure safer and more effective device functionality. Although embedded systems can support the use of smart algorithms, there are important limitations associated with computational load. This poses a tangible barrier for models with increased complexity that demand substantial computational resources for superior performance. Forecasting through Recurrent Topology (FReT) represents a computationally lightweight time-series data forecasting algorithm with the ability to update and adapt to the input data structure that can predict complex dynamics...
April 21, 2024: Sensors
https://read.qxmd.com/read/38676228/call-to-action-investigating-interaction-delay-in-smartphone-notifications
#76
JOURNAL ARTICLE
Michael Stach, Lena Mulansky, Manfred Reichert, Rüdiger Pryss, Felix Beierle
Notifications are an essential part of the user experience on smart mobile devices. While some apps have to notify users immediately after an event occurs, others can schedule notifications strategically to notify them only on opportune moments. This tailoring allows apps to shorten the users' interaction delay. In this paper, we present the results of a comprehensive study that identified the factors that influence users' interaction delay to their smartphone notifications. We analyzed almost 10 million notifications collected in-the-wild from 922 users and computed their response times with regard to their demographics, their Big Five personality trait scores and the device's charging state...
April 19, 2024: Sensors
https://read.qxmd.com/read/38676218/personal-air-quality-monitoring-with-sensor-based-wireless-internet-of-things-electronics-embedded-in-protective-face-masks
#77
JOURNAL ARTICLE
Lajos Kuglics, Attila Géczy, Karel Dusek, David Busek, Balázs Illés
In this paper, the design and research of a sensor-based personal air-quality monitoring device are presented, which is retrofitted into different personal protective face masks. Due to its small size and low power consumption, the device can be integrated into and applied in practical urban usage. We present our research and the development of the sensor node based on a BME680-type environmental sensor cluster with a wireless IoT (Internet of Things)-capable central unit and overall low power consumption. The integration of the sensor node was investigated with traditional medical masks and a professional FFP2-type mask...
April 18, 2024: Sensors
https://read.qxmd.com/read/38676159/application-of-artificial-neural-networks-for-prediction-of-received-signal-strength-indication-and-signal-to-noise-ratio-in-amazonian-wooded-environments
#78
JOURNAL ARTICLE
Brenda S de S Barbosa, Hugo A O Cruz, Alex S Macedo, Caio M M Cardoso, Filipe C Fernandes, Leslye E C Eras, Jasmine P L de Araújo, Gervásio P S Calvacante, Fabrício J B Barros
The presence of green areas in urbanized cities is crucial to reduce the negative impacts of urbanization. However, these areas can influence the signal quality of IoT devices that use wireless communication, such as LoRa technology. Vegetation attenuates electromagnetic waves, interfering with the data transmission between IoT devices, resulting in the need for signal propagation modeling, which considers the effect of vegetation on its propagation. In this context, this research was conducted at the Federal University of Pará, using measurements in a wooded environment composed of the Pau-Mulato species, typical of the Amazon...
April 16, 2024: Sensors
https://read.qxmd.com/read/38676156/a-survey-of-techniques-for-discovering-using-and-paying-for-third-party-iot-sensors
#79
REVIEW
Anas Dawod, Dimitrios Georgakopoulos, Prem Prakash Jayaraman, Ampalavanapillai Nirmalathas
The Internet of Things (IoT) includes billions of sensors and actuators (which we refer to as IoT devices) that harvest data from the physical world and send it via the Internet to IoT applications to provide smart IoT services and products. Deploying, managing, and maintaining IoT devices for the exclusive use of an individual IoT application is inefficient and involves significant costs and effort that often outweigh the benefits. On the other hand, enabling large numbers of IoT applications to share available third-party IoT devices, which are deployed and maintained independently by a variety of IoT device providers, reduces IoT application development costs, time, and effort...
April 15, 2024: Sensors
https://read.qxmd.com/read/38676147/an-intelligent-thermal-compensation-system-using-edge-computing-for-machine-tools
#80
JOURNAL ARTICLE
Endah Kristiani, Lu-Yan Wang, Jung-Chun Liu, Cheng-Kai Huang, Shih-Jie Wei, Chao-Tung Yang
This paper focuses on the use of smart manufacturing in lathe-cutting tool machines, which can experience thermal deformation during long-term processing, leading to displacement errors in the cutting head and damage to the final product. This study uses time-series thermal compensation to develop a predictive system for thermal displacement in machine tools, which is applicable in the industry using edge computing technology. Two experiments were carried out to optimize the temperature prediction models and predict the displacement of five axes at the temperature points...
April 15, 2024: Sensors
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