Title |
Nanoparticle optical notch filters |
Publication Type |
thesis |
School or College |
College of Engineering |
Department |
Electrical & Computer Engineering |
Author |
Kasinadhuni, Pradeep Kumar |
Date |
2013-05 |
Description |
Developing novel light blocking products involves the design of a nanoparticle optical notch filter, working on the principle of localized surface plasmon resonance (LSPR). These light blocking products can be used in many applications. One such application is to naturally reduce migraine headaches and light sensitivity. Melanopsin ganglion cells present in the retina of the human eye, connect to the suprachiasmatic nucleus (SCN-the body's clock) in the brain, where they participate in the entrainment of the circadian rhythms. As the Melanopsin ganglion cells are involved in triggering the migraine headaches in photophobic patients, it is necessary to block the part of visible spectrum that activates these cells. It is observed from the action potential spectrum of the ganglion cells that they absorb light ranging from 450-500nm (blue-green part) of the visible spectrum with a \max (peak sensitivity) of around 480nm (blue line). Currently prescribed for migraine patients is the FL-41 coating, which blocks a broad range of wavelengths, including wavelengths associated with melanopsin absorption. The nanoparticle optical notch filter is designed to block light only at 480nm, hence offering an effective prescription for the treatment of migraine headaches. |
Type |
Text |
Publisher |
University of Utah |
Subject |
Blepharospasm; Localized surface plasmon resonance; Mie scattering theory; Migraine headaches; Migraines; Nanoparticles |
Dissertation Institution |
University of Utah |
Dissertation Name |
Master of Science |
Language |
eng |
Rights Management |
Copyright © Pradeep Kumar Kasinadhuni 2013 |
Format |
application/pdf |
Format Medium |
application/pdf |
Format Extent |
1,242,626 bytes |
Identifier |
etd3/id/3437 |
ARK |
ark:/87278/s62g0wq4 |
Setname |
ir_etd |
ID |
196993 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s62g0wq4 |