Literature DB >> 28994627

myBrain: a novel EEG embedded system for epilepsy monitoring.

Francisco Pinho1,2,3,4, João Cerqueira5,6, José Correia3, Nuno Sousa5,6, Nuno Dias5,6,7.   

Abstract

The World Health Organisation has pointed that a successful health care delivery, requires effective medical devices as tools for prevention, diagnosis, treatment and rehabilitation. Several studies have concluded that longer monitoring periods and outpatient settings might increase diagnosis accuracy and success rate of treatment selection. The long-term monitoring of epileptic patients through electroencephalography (EEG) has been considered a powerful tool to improve the diagnosis, disease classification, and treatment of patients with such condition. This work presents the development of a wireless and wearable EEG acquisition platform suitable for both long-term and short-term monitoring in inpatient and outpatient settings. The developed platform features 32 passive dry electrodes, analogue-to-digital signal conversion with 24-bit resolution and a variable sampling frequency from 250 Hz to 1000 Hz per channel, embedded in a stand-alone module. A computer-on-module embedded system runs a Linux® operating system that rules the interface between two software frameworks, which interact to satisfy the real-time constraints of signal acquisition as well as parallel recording, processing and wireless data transmission. A textile structure was developed to accommodate all components. Platform performance was evaluated in terms of hardware, software and signal quality. The electrodes were characterised through electrochemical impedance spectroscopy and the operating system performance running an epileptic discrimination algorithm was evaluated. Signal quality was thoroughly assessed in two different approaches: playback of EEG reference signals and benchmarking with a clinical-grade EEG system in alpha-wave replacement and steady-state visual evoked potential paradigms. The proposed platform seems to efficiently monitor epileptic patients in both inpatient and outpatient settings and paves the way to new ambulatory clinical regimens as well as non-clinical EEG applications.

Entities:  

Keywords:  EEG; dry-electrodes; embedded systems; epilepsy; wireless

Mesh:

Year:  2017        PMID: 28994627     DOI: 10.1080/03091902.2017.1382585

Source DB:  PubMed          Journal:  J Med Eng Technol        ISSN: 0309-1902


  5 in total

1.  Diagnostic and therapeutic yield of a patient-controlled portable EEG device with dry electrodes for home-monitoring neurological outpatients-rationale and protocol of the HOMEONE pilot study.

Authors:  Thomas Neumann; Anne Katrin Baum; Ulrike Baum; Renate Deike; Helmut Feistner; Hermann Hinrichs; Joseph Stokes; Bernt-Peter Robra
Journal:  Pilot Feasibility Stud       Date:  2018-05-21

2.  Comparison between a wireless dry electrode EEG system with a conventional wired wet electrode EEG system for clinical applications.

Authors:  Hermann Hinrichs; Michael Scholz; Anne Katrin Baum; Julia W Y Kam; Robert T Knight; Hans-Jochen Heinze
Journal:  Sci Rep       Date:  2020-03-23       Impact factor: 4.379

3.  Remote and Long-Term Self-Monitoring of Electroencephalographic and Noninvasive Measurable Variables at Home in Patients With Epilepsy (EEG@HOME): Protocol for an Observational Study.

Authors:  Andrea Biondi; Petroula Laiou; Elisa Bruno; Pedro F Viana; Martijn Schreuder; William Hart; Ewan Nurse; Deb K Pal; Mark P Richardson
Journal:  JMIR Res Protoc       Date:  2021-03-19

Review 4.  Remote Patient Monitoring for Neuropsychiatric Disorders: A Scoping Review of Current Trends and Future Perspectives from Recent Publications and Upcoming Clinical Trials.

Authors:  Tetsuo Sakamaki; Yoshihiko Furusawa; Ayako Hayashi; Masaru Otsuka; Jovelle Fernandez
Journal:  Telemed J E Health       Date:  2022-01-24       Impact factor: 5.033

Review 5.  Noninvasive mobile EEG as a tool for seizure monitoring and management: A systematic review.

Authors:  Andrea Biondi; Viviana Santoro; Pedro F Viana; Petroula Laiou; Deb K Pal; Elisa Bruno; Mark P Richardson
Journal:  Epilepsia       Date:  2022-03-27       Impact factor: 6.740

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.