Design of Programmable LED Based Phototherapy System

Light based systems are frequently used in the field of medicine for diagnostic and surgical procedures, medical photography, phototherapy, etc. Phototherapy involves the use of light energy for the treatment of physical or mental illnesses. Illumination parameters such as wavelength and dose of the...

Full description

Bibliographic Details
Main Authors: Himani Kohli, Sangeeta Srivastava, Sanjeev Kumar Sharma, Satish Chouhan, Manan Oza
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:International Journal of Optics
Online Access:http://dx.doi.org/10.1155/2019/6023646
id doaj-2fc139474d61450d8f5d466aa9b0d5d5
record_format Article
spelling doaj-2fc139474d61450d8f5d466aa9b0d5d52020-11-25T00:44:51ZengHindawi LimitedInternational Journal of Optics1687-93841687-93922019-01-01201910.1155/2019/60236466023646Design of Programmable LED Based Phototherapy SystemHimani Kohli0Sangeeta Srivastava1Sanjeev Kumar Sharma2Satish Chouhan3Manan Oza4Biomedical Instrumentation Division, DIPAS, DRDO, Delhi, 110054, IndiaDepartment of Physics and Electronics, Rajdhani College, University of Delhi, New Delhi 110015, IndiaBiomedical Instrumentation Division, DIPAS, DRDO, Delhi, 110054, IndiaBiomedical Instrumentation Division, DIPAS, DRDO, Delhi, 110054, IndiaBiomedical Instrumentation Division, DIPAS, DRDO, Delhi, 110054, IndiaLight based systems are frequently used in the field of medicine for diagnostic and surgical procedures, medical photography, phototherapy, etc. Phototherapy involves the use of light energy for the treatment of physical or mental illnesses. Illumination parameters such as wavelength and dose of therapy can be varied to have distinct effects on cells and tissues. This has necessitated the need to design a system which is programmable for various parameters related to therapy and can also be used by people at large for biomedical applications. The paper presents the design and implementation of a portable, hand-held and programmable Light Emitting Diode (LED) based phototherapy system using embedded technology. The system is designed around the ARM based TM4C123GH6PM microcontroller processor. The microcontroller has been programmed to allow for selection of various parameters such as frequency, duty cycle, and time of exposure. The matrix keypad interface and liquid crystal display (LCD) offer the ease of human interface. An LED driver circuit has been efficiently designed to modulate the output power of LED. Further, Super Bright LED (SLED) of wavelength ~633 nm has been successfully tested and results of optical characterization including spectral and spatial response have been presented in the results section. The designed system successfully achieves the programmable parameters required for dose optimisation required for enhancing the therapeutic effects of a phototherapy system.http://dx.doi.org/10.1155/2019/6023646
collection DOAJ
language English
format Article
sources DOAJ
author Himani Kohli
Sangeeta Srivastava
Sanjeev Kumar Sharma
Satish Chouhan
Manan Oza
spellingShingle Himani Kohli
Sangeeta Srivastava
Sanjeev Kumar Sharma
Satish Chouhan
Manan Oza
Design of Programmable LED Based Phototherapy System
International Journal of Optics
author_facet Himani Kohli
Sangeeta Srivastava
Sanjeev Kumar Sharma
Satish Chouhan
Manan Oza
author_sort Himani Kohli
title Design of Programmable LED Based Phototherapy System
title_short Design of Programmable LED Based Phototherapy System
title_full Design of Programmable LED Based Phototherapy System
title_fullStr Design of Programmable LED Based Phototherapy System
title_full_unstemmed Design of Programmable LED Based Phototherapy System
title_sort design of programmable led based phototherapy system
publisher Hindawi Limited
series International Journal of Optics
issn 1687-9384
1687-9392
publishDate 2019-01-01
description Light based systems are frequently used in the field of medicine for diagnostic and surgical procedures, medical photography, phototherapy, etc. Phototherapy involves the use of light energy for the treatment of physical or mental illnesses. Illumination parameters such as wavelength and dose of therapy can be varied to have distinct effects on cells and tissues. This has necessitated the need to design a system which is programmable for various parameters related to therapy and can also be used by people at large for biomedical applications. The paper presents the design and implementation of a portable, hand-held and programmable Light Emitting Diode (LED) based phototherapy system using embedded technology. The system is designed around the ARM based TM4C123GH6PM microcontroller processor. The microcontroller has been programmed to allow for selection of various parameters such as frequency, duty cycle, and time of exposure. The matrix keypad interface and liquid crystal display (LCD) offer the ease of human interface. An LED driver circuit has been efficiently designed to modulate the output power of LED. Further, Super Bright LED (SLED) of wavelength ~633 nm has been successfully tested and results of optical characterization including spectral and spatial response have been presented in the results section. The designed system successfully achieves the programmable parameters required for dose optimisation required for enhancing the therapeutic effects of a phototherapy system.
url http://dx.doi.org/10.1155/2019/6023646
work_keys_str_mv AT himanikohli designofprogrammableledbasedphototherapysystem
AT sangeetasrivastava designofprogrammableledbasedphototherapysystem
AT sanjeevkumarsharma designofprogrammableledbasedphototherapysystem
AT satishchouhan designofprogrammableledbasedphototherapysystem
AT mananoza designofprogrammableledbasedphototherapysystem
_version_ 1725272894188027904