Practical inductive link design for biomedical wireless power transfer: A tutorial

M Schormans, V Valente… - IEEE Transactions on …, 2018 - ieeexplore.ieee.org
Wireless power transfer systems, particularly those based on inductive coupling, provide an
increasingly attractive method to safely deliver power to biomedical implants. Although there …

Low power design for future wearable and implantable devices

K Lundager, B Zeinali, M Tohidi, JK Madsen… - Journal of low power …, 2016 - mdpi.com
With the fast progress in miniaturization of sensors and advances in micromachinery
systems, a gate has been opened to the researchers to develop extremely small …

Miniature implantable and wearable on-body antennas: Towards the new era of wireless body-centric systems [antenna applications corner]

S Rao, N Llombart, E Moradi, K Koski… - IEEE Antennas and …, 2014 - ieeexplore.ieee.org
Wireless body-centric sensing systems have an important role in the fields of biomedicine,
personal healthcare, safety, and security. Body-centric radio-frequency identification (RFID) …

A novel design of Rogers RT/duroid 5880 material based two turn antenna for intracranial pressure monitoring

AK Tamilarasan, SK Krishnadhas, S Sabapathy… - Microsystem …, 2021 - Springer
Intracranial pressure (ICP) monitoring is proved to be a lifesaving tool for the person
suffering from traumatic and other brain diseases. The need to comprehend and control …

A tissue-channel transcutaneous power transfer technique for implantable devices

P Chen, H Yang, R Luo, B Zhao - IEEE Transactions on Power …, 2018 - ieeexplore.ieee.org
For implantable devices, miniaturization is a key design consideration, which facilitates
keyhole surgery and relieves the surgical pain. Wireless power transfer is a commonly used …

Impact of moisture and washing on the performance of embroidered UHF RFID tags

M Toivonen, T Björninen, L Sydänheimo… - IEEE Antennas and …, 2013 - ieeexplore.ieee.org
Antennas can be seamlessly integrated into clothing by means of embroidery with
conductive thread. In the real-life applications, wearable antennas are exposed to various …

An end-to-end implanted brain–machine interface antenna system performance characterizations and development

L Song, Y Rahmat-Samii - IEEE Transactions on Antennas and …, 2017 - ieeexplore.ieee.org
Brain-machine interface (BMI) is a multidisciplinary field that has been recently developed in
an attempt to help restore functionalities for paralyzed individuals. One of the key …

Backscattering neural tags for wireless brain-machine interface systems

E Moradi, S Amendola, T Björninen… - … on Antennas and …, 2014 - ieeexplore.ieee.org
Brain-machine interface (BMI) technology has tremendous potential to revolutionize
healthcare by greatly improving the quality of life of millions of people suffering from a wide …

Frequency splitting analysis and compensation method for inductive wireless powering of implantable biosensors

M Schormans, V Valente, A Demosthenous - Sensors, 2016 - mdpi.com
Inductive powering for implanted medical devices, such as implantable biosensors, is a safe
and effective technique that allows power to be delivered to implants wirelessly, avoiding the …

Remotely powered piezoresistive pressure sensor: toward wireless monitoring of intracranial pressure

MWA Khan, T Björninen, L Sydänheimo… - IEEE Microwave and …, 2016 - ieeexplore.ieee.org
This paper presents the results of pressure measurements taken after the successful
activation of an implantable piezoresistive pressure sensor. The sensor was activated using …