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  1. Home
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  3. Faculty of Electronic Engineering & Technology (FKTEN)
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  5. Determination of drying kinetics and sorption isotherm of black pepper (Piper Nigrum)
 
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Determination of drying kinetics and sorption isotherm of black pepper (Piper Nigrum)

Journal
EPJ Web of Conferences
ISSN
2100-014X
Date Issued
2017
Author(s)
Flordeliza C. De Vera
Mapúa University, Philippines
Vanessa Bernadette B. Atienza
Mapúa University, Philippines
Jomicah B. Capili
Mapúa University, Philippines
Zaliman Sauli
Universiti Malaysia Perlis
DOI
10.1051/epjconf/201716201086
Handle (URI)
https://www.epj-conferences.org/articles/epjconf/pdf/2017/31/epjconf_incape2017_01086.pdf
https://www.epj-conferences.org/articles/epjconf/abs/2017/31/epjconf_incape2017_01036/epjconf_incape2017_01036.html
https://hdl.handle.net/20.500.14170/11242
Abstract
Hand osteoarthritis is one of the most common forms of arthritis which impact millions of people worldwide. The disabling problem occurs when the protective cartilage on the boundaries of bones wear off over time. Currently, in order to identify hand osteoarthritis, special instruments namely X-ray scanning and MRI are used for the detection but it also has its limitations such as radiation exposure and can be quite costly. In this work, an optical metrology system based on digital fringe projection which comprises of an LCD projector, CCD camera and a personal computer has been developed to anticipate abnormal growth or deformation on the joints of the hand which are common symptoms of osteoarthritis. The main concept of this optical metrology system is to apply structured light as imaging source for surface change detection. The imaging source utilizes fringe patterns generated by C++ programming and is shifted by 3 phase shifts based on the 3 steps 2 shifts method. Phase wrapping technique and analysis were applied in order to detect the deformation of live subjects. The result has demonstrated a successful method of hand deformation detection based on the pixel tracking differences of a normal and deformed state.
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