Presentation + Paper
3 March 2017 Disposable cartridge biosensor platform for portable diagnostics
Yusuf S. Yaras, Onur Cakmak, Ali B. Gunduz, Gokhan Saglam, Selim Olcer, Aref Mostafazadeh, Ibrahim Baris, Fehmi Civitci, Goksen G. Yaralioglu, Hakan Urey
Author Affiliations +
Abstract
We developed two types of cantilever-based biosensors for portable diagnostics applications. One sensor is based on MEMS cantilever chip mounted in a microfluidic channel and the other sensor is based on a movable optical fiber placed across a microfluidic channel. Both types of sensors were aimed at direct mechanical measurement of coagulation time in a disposable cartridge using plasma or whole blood samples. There are several similarities and also some important differences between the MEMS based and the optical fiber based solutions. The aim of this paper is to provide a comparison between the two solutions and the results. For both types of sensors, actuation of the cantilever or the moving fiber is achieved using an electro coil and the readout is optical. Since both the actuation and sensing are remote, no electrical connections are required for the cartridge. Therefore it is possible to build low cost disposable cartridges. The reader unit for the cartridge contains light sources, photodetectors, the electro coil, a heater, analog electronics, and a microprocessor. The reader unit has different optical interfaces for the cartridges that have MEMS cantilevers and moving fibers. MEMS based platform has better sensitivity but optomechanical alignment is a challenge and measurements with whole blood were not possible due to high scattering of light by the red blood cells. Fiber sensor based platform has relaxed optomechanical tolerances, ease of manufacturing, and it allows measurements in whole blood. Both sensors were tested using control plasma samples for activated-Partial-Thromboplastin-Time (aPTT) measurements. Control plasma test results matched with the manufacturer’s datasheet. Optical fiber based system was tested for aPTT tests with human whole blood samples and the proposed platform provided repeatable test results making the system method of choice for portable diagnostics.
Conference Presentation
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yusuf S. Yaras, Onur Cakmak, Ali B. Gunduz, Gokhan Saglam, Selim Olcer, Aref Mostafazadeh, Ibrahim Baris, Fehmi Civitci, Goksen G. Yaralioglu, and Hakan Urey "Disposable cartridge biosensor platform for portable diagnostics", Proc. SPIE 10055, Optics and Biophotonics in Low-Resource Settings III, 100550O (3 March 2017); https://doi.org/10.1117/12.2254729
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Sensors

Microelectromechanical systems

Blood

Optical fibers

Plasma

Fiber optics sensors

Biosensors

RELATED CONTENT

All-silicon microforce sensor for bio applications
Proceedings of SPIE (May 17 2013)
Imaging label-free biosensor with microfluidic system
Proceedings of SPIE (June 01 2015)
Fiber optics a new route towards ultra low detection...
Proceedings of SPIE (August 28 2019)
Separation of blood in microchannel bends
Proceedings of SPIE (December 23 2003)
Fiber optic system for monitoring of fuel oil burners in...
Proceedings of SPIE (December 13 2000)

Back to Top