Optofluidic spectroscopy integrated on optical fiber platform
Administering a wrong drug or a wrong dose can be extremely dangerous and can result in severe adverse effects or even the death of a patient. With human errors being possible, automatic real time identification of a drug and its concentration using technology is a viable option to decrease the chan...
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doaj-e5b680c1b7d14dadbbbdc9f1230593772020-11-24T21:17:55ZengElsevierSensing and Bio-Sensing Research2214-18042015-03-013C1610.1016/j.sbsr.2014.11.002Optofluidic spectroscopy integrated on optical fiber platformEdikan ArchibongJustin StewartAnna PyaytAdministering a wrong drug or a wrong dose can be extremely dangerous and can result in severe adverse effects or even the death of a patient. With human errors being possible, automatic real time identification of a drug and its concentration using technology is a viable option to decrease the chance of incorrect drug administration. As a step toward this goal, we propose a new optical fiber based spectroscopic system that has built-in filtration capabilities and thus can work in real time near patient without additional sample pre-processing. It is designed as a point probe consisting of an optical fiber with a miniature filtering reflector integrated on the interface. In the future it can be inserted into a bag for intravenous therapy (IV therapy) or in a syringe to measure the spectrum of the fluid and to confirm its properties. Additionally, use of microfluidic filtration allows to remove microscopic particles from the sample and thus decreases the noise and increases the sensitivity of spectroscopic measurement. In this study, an optofluidic system was fabricated, and filtration capabilities and measurement of cobalamin (vitamin B12) concentration have been demonstrated.http://www.sciencedirect.com/science/article/pii/S2214180414000415SpectroscopyDrug monitoringOptofluidics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Edikan Archibong Justin Stewart Anna Pyayt |
spellingShingle |
Edikan Archibong Justin Stewart Anna Pyayt Optofluidic spectroscopy integrated on optical fiber platform Sensing and Bio-Sensing Research Spectroscopy Drug monitoring Optofluidics |
author_facet |
Edikan Archibong Justin Stewart Anna Pyayt |
author_sort |
Edikan Archibong |
title |
Optofluidic spectroscopy integrated on optical fiber platform |
title_short |
Optofluidic spectroscopy integrated on optical fiber platform |
title_full |
Optofluidic spectroscopy integrated on optical fiber platform |
title_fullStr |
Optofluidic spectroscopy integrated on optical fiber platform |
title_full_unstemmed |
Optofluidic spectroscopy integrated on optical fiber platform |
title_sort |
optofluidic spectroscopy integrated on optical fiber platform |
publisher |
Elsevier |
series |
Sensing and Bio-Sensing Research |
issn |
2214-1804 |
publishDate |
2015-03-01 |
description |
Administering a wrong drug or a wrong dose can be extremely dangerous and can result in severe adverse effects or even the death of a patient. With human errors being possible, automatic real time identification of a drug and its concentration using technology is a viable option to decrease the chance of incorrect drug administration. As a step toward this goal, we propose a new optical fiber based spectroscopic system that has built-in filtration capabilities and thus can work in real time near patient without additional sample pre-processing. It is designed as a point probe consisting of an optical fiber with a miniature filtering reflector integrated on the interface. In the future it can be inserted into a bag for intravenous therapy (IV therapy) or in a syringe to measure the spectrum of the fluid and to confirm its properties. Additionally, use of microfluidic filtration allows to remove microscopic particles from the sample and thus decreases the noise and increases the sensitivity of spectroscopic measurement. In this study, an optofluidic system was fabricated, and filtration capabilities and measurement of cobalamin (vitamin B12) concentration have been demonstrated. |
topic |
Spectroscopy Drug monitoring Optofluidics |
url |
http://www.sciencedirect.com/science/article/pii/S2214180414000415 |
work_keys_str_mv |
AT edikanarchibong optofluidicspectroscopyintegratedonopticalfiberplatform AT justinstewart optofluidicspectroscopyintegratedonopticalfiberplatform AT annapyayt optofluidicspectroscopyintegratedonopticalfiberplatform |
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