Skip to search form
Skip to main content
Skip to account menu
Semantic Scholar
Semantic Scholar's Logo
Search 231,906,364 papers from all fields of science
Search
Sign In
Create Free Account
Crystals:Naric:Pt:Urine sed:Qn:Automated count
Known as:
Crystals:Number Aeric (number per area):Point in time:Urine sediment:Quantitative:Automated count
, Cristaux:Nombre par unité de surface:Temps ponctuel:Sédiment urinaire:Quantitatif:Décompte automatisé
, Cristaux [Nombre/Champ] Sédiments urinaires ; Numérique ; Comptage automate
Expand
National Institutes of Health
Create Alert
Alert
Related topics
Related topics
7 relations
Areic Number
Automated count
Crystal Structure
Urinalysis
Expand
Broader (1)
Urinalysis microscopic panel:Naric:Pt:Urine sed:Qn:Automated count
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2016
2016
Enhanced light extraction by heterostructure photonic crystals toward white-light-emission.
Heng Li
,
Zhaohua Xu
,
Bin Bao
,
Yanlin Song
Journal of Colloid and Interface Science
2016
Corpus ID: 42831284
2010
2010
Larger Absolute Band Gaps in Two-Dimensional Photonic Crystals Fabricated by a Three-Order-Effect Method
Hai Li
,
Xiangbo Yang
2010
Corpus ID: 55721856
In this paper, based on difierent in∞uences of the lattice symmetry, the geometry of dielectric rod, and the structure of unit…
Expand
2007
2007
Optical interleavers based on two-dimensional photonic crystals.
Yaw-Dong Wu
,
Minjay Huang
,
Tien-Tsorng Shih
Applied Optics
2007
Corpus ID: 38218165
An ultrasmall device size optical interleaver based on directional coupler waveguides in two-dimensional photonic crystals (PCs…
Expand
2007
2007
Full-vectorial finite element method based eigenvalue algorithm for the analysis of 2D photonic crystals with arbitrary 3D anisotropy.
Sen-ming Hsu
,
Hung-chun Chang
Optics Express
2007
Corpus ID: 25664352
A full-vectorial finite element method based eigenvalue algorithm is developed to analyze the band structures of two-dimensional…
Expand
2006
2006
Fabrication of photonic crystals with tunable surface orientation by holographic lithography.
Y. Zhong
,
Lijun Wu
,
H. Su
,
K. Wong
,
Hezhou Wang
Optics Express
2006
Corpus ID: 40548459
We demonstrate a novel approach for easy fabrication of 3 dimensional (3D) photonic crystals (PhCs) with adjustable surface…
Expand
2006
2006
Precise fabrication of point defects in self-assembled three-dimensional macroporous photonic crystals.
R. Xie
,
T. Sekiguchi
,
Dongsheng Li
,
Deren Yang
,
M. Jiang
Journal of Physical Chemistry B
2006
Corpus ID: 2807121
We demonstrate a new and simple method of precisely fabricating defects in three-dimensional (3D) CdS macroporous photonic…
Expand
2004
2004
Bandgap optimization of 2D photonic crystals
Caihua Chen
,
A. Sharkawy
,
S. Shi
,
D. Prather
SPIE OPTO
2004
Corpus ID: 123224746
In this paper, a procedure for optimizing two-dimensional (2D) photonic crystals (PhC) is presented. In this procedure, the unit…
Expand
2003
2003
Low refractive-index-contrast Fresnel-microstructure fibre for coupling between SMF and photonic crystals
M. Hisatomi
,
M. Parker
,
S. Walker
Digest of LEOS Summer Topical Meeting (Cat. No…
2003
Corpus ID: 43525556
A method is described to efficiently couple light between single-mode fibre (SMF) and photonic crystals (PhCs) using a novel…
Expand
2002
2002
Introducing CdS into two- and three-dimensional photonic crystals
O. Hanaizumi
,
M. Saito
,
+7 authors
A. Ozawa
2002
Corpus ID: 55624332
SiO2/air three-dimensional (3D) periodic structures were fabricated by removing Si layers partially from Si/SiO2 3D photonic…
Expand
1999
1999
Characteristics of ray traces at the back of biaxial crystals at normal incidence.
E. Cojocaru
Applied Optics
1999
Corpus ID: 26835434
Ray vector traces that can be obtained at the back of a biaxial crystal through crystal rotation are calculated numerically by…
Expand
By clicking accept or continuing to use the site, you agree to the terms outlined in our
Privacy Policy
(opens in a new tab)
,
Terms of Service
(opens in a new tab)
, and
Dataset License
(opens in a new tab)
ACCEPT & CONTINUE