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* Selecting an EBSP<sub>0</sub> after examining the empirical relationship between the cross-correlation parameter and angular error, used in an iterative algorithm to identify the optimal reference pattern that maximises the precision of HR-EBSD.<ref name=":10" />
These criteria assume these parameters can indicate the strain conditions at the reference point, which can produce an [[Accuracy and precision|accurate]] measurements of up to 3.2×10<sup>−4</sup> elastic strain.<ref name=":7" /> However, experimental measurements point to the inaccuracy of HR-EBSD in determining the out-of-plane shear strain components distribution and magnitude.<ref>{{Cite journal |last1=McLean |first1=Mark J. |last2=Osborn |first2=William A. |date=2018|title=In-situ elastic strain mapping during micromechanical testing using EBSD |journal=Ultramicroscopy |volume=185 |pages=21–26 |doi=10.1016/j.ultramic.2017.11.007 |pmid=29161620 }}</ref><ref name=":44">{{Cite journal |last1=Yu |first1=Hongbing |last2=Liu |first2=Junliang |last3=Karamched |first3=Phani |last4=Wilkinson |first4=Angus J. |last5=Hofmann |first5=Felix |date=2019 |title=Mapping the full lattice strain tensor of a single dislocation by high angular resolution transmission Kikuchi diffraction (HR-TKD) |journal=Scripta Materialia |volume=164 |pages=36–41 |doi=10.1016/j.scriptamat.2018.12.039 |s2cid=119075799|doi-access=free }}</ref>
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