On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.

The novel principle of trichomorphological analysis is provided. This principle, which may be interpreted as a transition between trichoscopy and trichometry, was developed using methods and techniques, explicated from the lens-less holographic microscopy, lens-lens tomography and filtering / decomp...

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Main Authors: O. V. Gradov, P. A. Nasirov, A. A. Goncharova, V. K. Fischenko, A. G. Jablokov
Format: Article
Language:Russian
Published: Ministry of Health of Ukraine. Dnipropetrovsk Medical Academy 2018-08-01
Series:Морфологія
Subjects:
Online Access:http://morphology.dma.dp.ua/article/view/137739
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spelling doaj-444df0faf19c47a7bf9e86fd5f34cf422020-11-24T20:42:27ZrusMinistry of Health of Ukraine. Dnipropetrovsk Medical Academy Морфологія1997-96652018-08-0112272110.26641/1997-9665.2018.2.7-21137739On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.O. V. Gradov0P. A. Nasirov1A. A. Goncharova2V. K. Fischenko3A. G. Jablokov4ИНЭПХФ РАН им. В.Л. Тальрозе, МоскваИНЭПХФ РАН им. В.Л. Тальрозе, МоскваТихоокеанский океанологический институт им. В.И. Ильичева ДВО РАН, ВладивостокТихоокеанский океанологический институт им. В.И. Ильичева ДВО РАН, ВладивостокГосударственное бюджетное учреждение здравоохранения «Инфекционная клиническая больница № 2 Департамента здравоохранения г. Москвы», Москва, Российская ФедерацияThe novel principle of trichomorphological analysis is provided. This principle, which may be interpreted as a transition between trichoscopy and trichometry, was developed using methods and techniques, explicated from the lens-less holographic microscopy, lens-lens tomography and filtering / decomposition of microscopic images based on orthogonal transformations, such as the FFTW-library-assisted DFT using Bluestein's FFT algorithm (expresses the Chirp Z-transform as a convolution and implements it efficiently using FFT/IFFT), Rader's FFT algorithm (from MIT Lincoln Laboratory) and Cooley–Tukey FFT algorithm (corresponding to different factorizations and / or different memory-access patterns). It is possible, that such methods can be applicable not only for clinical diagnostics, but also for some specialized trichological investigations, including fast and strong determination of different descriptors for ethnomedicine, gender and hormonal or endocrinology-relevant differences, prenatal and neonatal trichology, bio-archaeometric analysis, including palaeotrichology, and criminological trichomorphology, analysis of efficiency of some pharmaceutical and toxicological agents and events (including microelement status) for different psychosomatic cases, etc. The principal schemes of the laser holographic trichometry setups also may be based on a principles of the combined reflection and transmission lens-less microscopes, on-chip differential interference contrast microscopy, lensless wide-field fluorescent imaging on a chip, off-axis holography and lensless incoherent holography, ulttaviolet microscopy, including deep-UV spectral range.http://morphology.dma.dp.ua/article/view/137739трихологіятрихоскопіятрихометріяголографічна мікроскопіябезлінзова мікроскопіяортогональні перетвореннякорелографіядіагностика
collection DOAJ
language Russian
format Article
sources DOAJ
author O. V. Gradov
P. A. Nasirov
A. A. Goncharova
V. K. Fischenko
A. G. Jablokov
spellingShingle O. V. Gradov
P. A. Nasirov
A. A. Goncharova
V. K. Fischenko
A. G. Jablokov
On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
Морфологія
трихологія
трихоскопія
трихометрія
голографічна мікроскопія
безлінзова мікроскопія
ортогональні перетворення
корелографія
діагностика
author_facet O. V. Gradov
P. A. Nasirov
A. A. Goncharova
V. K. Fischenko
A. G. Jablokov
author_sort O. V. Gradov
title On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
title_short On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
title_full On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
title_fullStr On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
title_full_unstemmed On-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, Fourier spectral and correlographic techniques for clinical trichology.
title_sort on-chip lens-less holographic trichoscopy / trichometry technologies: microinterferometric, fourier spectral and correlographic techniques for clinical trichology.
publisher Ministry of Health of Ukraine. Dnipropetrovsk Medical Academy
series Морфологія
issn 1997-9665
publishDate 2018-08-01
description The novel principle of trichomorphological analysis is provided. This principle, which may be interpreted as a transition between trichoscopy and trichometry, was developed using methods and techniques, explicated from the lens-less holographic microscopy, lens-lens tomography and filtering / decomposition of microscopic images based on orthogonal transformations, such as the FFTW-library-assisted DFT using Bluestein's FFT algorithm (expresses the Chirp Z-transform as a convolution and implements it efficiently using FFT/IFFT), Rader's FFT algorithm (from MIT Lincoln Laboratory) and Cooley–Tukey FFT algorithm (corresponding to different factorizations and / or different memory-access patterns). It is possible, that such methods can be applicable not only for clinical diagnostics, but also for some specialized trichological investigations, including fast and strong determination of different descriptors for ethnomedicine, gender and hormonal or endocrinology-relevant differences, prenatal and neonatal trichology, bio-archaeometric analysis, including palaeotrichology, and criminological trichomorphology, analysis of efficiency of some pharmaceutical and toxicological agents and events (including microelement status) for different psychosomatic cases, etc. The principal schemes of the laser holographic trichometry setups also may be based on a principles of the combined reflection and transmission lens-less microscopes, on-chip differential interference contrast microscopy, lensless wide-field fluorescent imaging on a chip, off-axis holography and lensless incoherent holography, ulttaviolet microscopy, including deep-UV spectral range.
topic трихологія
трихоскопія
трихометрія
голографічна мікроскопія
безлінзова мікроскопія
ортогональні перетворення
корелографія
діагностика
url http://morphology.dma.dp.ua/article/view/137739
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