Portable Diagnostic Platform for Rapid Detection of 2μL Paramagnetic Particles in 5s (original) (raw)

Cheng, Yuanxi, Zuo, Siming, Ranford-Cartwright, Lisa ORCID logoORCID: https://orcid.org/0000-0003-1992-3940, Mirzai, Nosrat and Heidari, Hadi ORCID logoORCID: https://orcid.org/0000-0001-8412-8164(2023) Portable Diagnostic Platform for Rapid Detection of 2μL Paramagnetic Particles in 5s. In: 21st IEEE Interregional NEWCAS Conference (IEEE NEWCAS 2023), Edinburgh, UK, 26-28 June 2023, ISBN 9798350300246(doi: 10.1109/NEWCAS57931.2023.10198080)

Abstract

With the fast development of Tunneling magnetoresistance (TMR) biosensors, this paper reports a low noise, rapid, lab-on-chip system based on TMR sensors for malaria pigment (hemozoin) detection. A semiconductor circuit is designed to amplify the negligible (approximately 5mV) signal from the TMR sensor and to reduce the high frequency noise from the electronics. The semiconductor circuit is comprised of several Low drop-out (LDO) regulators, an instrumentation amplifier and an 8-order Butterworth ladder lowpass filter. In detail, this instrumentation amplifier reaches 90dB dc gain with 1 nV/√Hz low input noise at double ± 5V voltage supply. The cut-off frequency of the lowpass filter is adjustable 0.1Hz to 50kHz, which can obviously reduce the noise from the environment and the electronics. COMSOL Multiphysics® is applied to simulate the infected red blood cell (RBC) as well as the external magnetic field. The simulation results certify the feasibility of the system, which provides a fast response to the hemozoin samples. The designed system can detect the liquid paramagnetic samples in real time.

Item Type: Conference Proceedings
Additional Information: This work was partially supported by EPSRC projects EP/X525716/1, EP/X024989/1, EP/X034690/1, and EP/R004242/2 and Wellcome Trust iTPA Early Concept Development (ECD) 219390/Z/19/Z.
Status: Published
Refereed: Yes
Glasgow Author(s) Enlighten ID: Mirzai, Mr Nosrat and Zuo, Dr Siming and Ranford-Cartwright, Dr Lisa and Cheng, Yuanxi and Heidari, Professor Hadi
Authors: Cheng, Y., Zuo, S., Ranford-Cartwright, L., Mirzai, N., and Heidari, H.
College/School: College of Medical Veterinary and Life Sciences > School of Biodiversity, One Health & Veterinary MedicineCollege of Medical Veterinary and Life Sciences > School of Medicine, Dentistry & NursingCollege of Science and EngineeringCollege of Science and Engineering > School of Engineering > Electronics and Nanoscale Engineering
ISSN: 2474-9672
ISBN: 9798350300246
Copyright Holders: Copyright © 2023 IEEE
First Published: First published in 2023 21st IEEE Interregional NEWCAS Conference (NEWCAS)
Publisher Policy: Reproduced in accordance with the publisher copyright policy
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Funder and Project Information

UKRI EPSRC Impact Acceleration Accounts (IAA) 2022 - 2025

Christopher Pearce

EP/X525716/1

ENG - Systems Power & Energy

Institutional Translation Partnership Award

Gerard Graham

219390/Z/19/Z

MVLS - College Senior Management

Deposit and Record Details

ID Code: 296466
Depositing User: Miss Leigh Bunton
Datestamp: 14 Apr 2023 08:18
Last Modified: 12 Feb 2026 02:31
Date of acceptance: 11 April 2023
Date of first online publication: 7 August 2023
Date Deposited: 14 April 2023
Data Availability Statement: No