Clifford analysis: Difference between revisions

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some minor things I missed in the previous edit
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m →‎References: Added 1 dois to journal cites using AWB (10094)
 
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In [[applied mathematics]], the two-dimensional '''Spectral [[signal-to-noise ratio]]''' (SSNR) measures the normalised cross-correlation coefficient between several two-dimensional images over corresponding rings in Fourier space as a function of spatial frequency {{harv|Unser|1987}}. It is a multi-particle extension of the Fourier ring correlation (FRC), which is related to the [[Fourier shell correlation]]. The SSNR is a popular method for finding the resolution of a class average in [[cryo-electron microscopy]].
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== Calculation ==
 
:<math>
SSNR (r)
=
\frac{\displaystyle\sum_{r_i \in R}\left|\sum_{k_i}{ F_{r_i,k} }\right|^2}
{\displaystyle \frac{K}{K-1} \sum_{r_i \in R}\sum_{k_i}{ \left|{ F_{r_i,k} - \bar{F}_{r_i}}\right|^2}} -1
</math>
<!--
:<math>
=
\frac{\displaystyle\sum_{r_i \in R}\left|\sum_{k_i}{ F_{r_i,k} }\right|^2}
{\displaystyle \frac{K}{K-1} \sum_{r_i \in R}
\left| \sum_{k_i}F^2_{r_i,k} - \frac{1}{K}\left(\sum_{k_i}F_{r_i,k}\right)^2 \right|}
</math>
-->
 
where <math>F_{r_i,k}</math> is the complex structure Factor for image k for a pixel <math>r_i</math> at radius <math>R</math>. It is possible convert the SSNR into an equivalent FRC using the following formula:
 
:<math>
FRC = \frac{SSNR}{SSNR + 1}
</math>
 
== See also ==
* [[Resolution (electron density)]]
* [[Fourier shell correlation]]
 
== Notes ==
{{reflist|2}}
 
== References ==
<div class="references-small">
*{{cite journal
  | last = Unser
  | first = M.
  | coauthors = Trus, B.L.; Steven, A.C.
  | title = A New Resolution Criterion Based on Spectral Signal-To-Noise Ratios
  | journal = Ultramicroscopy
  | volume = 23
  | issue = 1
  | pages = 39&ndash;51
  | doi=10.1016/0304-3991(87)90225-7
  | year = 1987
| pmid=3660491}}
*{{cite journal
  | last = Harauz
  | first = G.
  | coauthors = M. van Heel
  | title = Exact filters for general geometry three dimensional reconstruction
  | journal = Optik
  | volume = 73
  | pages = 146&ndash;156
  | year = 1986}}
*{{cite journal
  | last = van Heel
  | first = M.
  | title = Detection of objects in quantum-noise limited images
  | journal = Ultramicroscopy
  | volume = 8
  | pages = 331&ndash;342
  | year = 1982}}
*{{cite journal
  | last = Saxton
  | first = W.O.
  | coauthors = W. Baumeister
  | title = The correlation averaging of a regularly arranged bacterial cell envelope protein
  | journal = J Microscopy
  | volume = 127
  | pages = 127&ndash;138
  | year = 1982
  | doi=10.1111/j.1365-2818.1982.tb00405.x}}
*{{cite journal
  | last = Böttcher
  | first = B.
  | coauthors = Wynne, S.A.; Crowther, R.A.
  | title = Determination of the fold of the core protein of hepatitis B virus by electron microscopy
  | journal = Nature
  | volume = 386
  | pages = 88&ndash;91
  | doi=10.1038/386088a0
  | year = 1997
  | pmid = 9052786
  | issue = 6620}}
*{{cite book
  | last = Frank
  | first = Joachim
  | authorlink = Joachim Frank
  | title = Three-Dimnsional Electron Microscopy of Macromolecular Assemblies
  | publisher = [[Oxford University Press]]
  | location = New York
  | year = 2006
  | pages =
  | isbn = 0-19-518218-9 }}
*{{cite journal
  | title=Fourier shell correlation threshold criteria
  | journal=Journal of Structural Biology
  | year= 2005
  | last= van Heel
  | first= M.
  | coauthors = Schatz, M.
  | volume=151
  | pages=250&ndash;262
  | doi=10.1016/j.jsb.2005.05.009
  | pmid=16125414
  | issue=3  }}
</div>
 
[[Category:Applied mathematics]]
[[Category:Engineering ratios]]
[[Category:Measurement]]
[[Category:Microscopes]]
 
 
{{mathapplied-stub}}

Latest revision as of 18:12, 4 May 2014

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