Technology roadmap for flexible sensors

Y Luo, MR Abidian, JH Ahn, D Akinwande… - ACS …, 2023 - ACS Publications
Humans rely increasingly on sensors to address grand challenges and to improve quality of
life in the era of digitalization and big data. For ubiquitous sensing, flexible sensors are …

Design principles of microneedles for drug delivery and sampling applications

Z Le, J Yu, YJ Quek, B Bai, X Li, Y Shou, B Myint, C Xu… - Materials Today, 2023 - Elsevier
Microneedles technology is a powerful platform to achieve efficient transdermal delivery of
bioactive molecules for local or systemic therapies attributing to their minimally invasive …

Flexible electrodes for brain–computer interface system

J Wang, T Wang, H Liu, K Wang, K Moses… - Advanced …, 2023 - Wiley Online Library
Brain–computer interface (BCI) has been the subject of extensive research recently.
Governments and companies have substantially invested in relevant research and …

A flexible protruding microelectrode array for neural interfacing in bioelectronic medicine

H Steins, M Mierzejewski, L Brauns, A Stumpf… - Microsystems & …, 2022 - nature.com
Recording neural signals from delicate autonomic nerves is a challenging task that requires
the development of a low-invasive neural interface with highly selective, micrometer-sized …

Application and Development of EEG Acquisition and Feedback Technology: A Review

Y Qin, Y Zhang, Y Zhang, S Liu, X Guo - Biosensors, 2023 - mdpi.com
This review focuses on electroencephalogram (EEG) acquisition and feedback technology
and its core elements, including the composition and principles of the acquisition devices, a …

Functional microneedles for wearable electronics

X Zhang, M Lu, X Cao, Y Zhao - Smart Medicine, 2023 - Wiley Online Library
With an ideal comfort level, sensitivity, reliability, and user‐friendliness, wearable sensors
are making great contributions to daily health care, nursing care, early disease discovery …

Highly stretchable and customizable microneedle electrode arrays for intramuscular electromyography

Q Zhao, E Gribkova, Y Shen, J Cui, N Naughton… - Science …, 2024 - science.org
Stretchable three-dimensional (3D) penetrating microelectrode arrays have potential utility
in various fields, including neuroscience, tissue engineering, and wearable bioelectronics …

Emerging Penetrating Neural Electrodes: In Pursuit of Large Scale and Longevity

L Luan, R Yin, H Zhu, C Xie - Annual review of biomedical …, 2023 - annualreviews.org
Penetrating neural electrodes provide a powerful approach to decipher brain circuitry by
allowing for time-resolved electrical detections of individual action potentials. This unique …

Applications of smart material sensors and soft electronics in healthcare wearables for better user compliance

A Ghosh, S Nag, A Gomes, A Gosavi, G Ghule… - Micromachines, 2022 - mdpi.com
The need for innovation in the healthcare sector is essential to meet the demand of a rapidly
growing population and the advent of progressive chronic ailments. Over the last decade …

Highly Customizable 3D Microelectrode Arrays for In Vitro and In Vivo Neuronal Tissue Recordings

J Abu Shihada, M Jung, S Decke… - Advanced …, 2024 - Wiley Online Library
Planar microelectrode arrays (MEAs) for–in vitro or in vivo–neuronal signal recordings lack
the spatial resolution and sufficient signal‐to‐noise ratio (SNR) required for a detailed …