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We aligned all 84 taxa following the alignment procedure described above.
The alignment procedure also respects the preservation of structural relationships across ontologies being aligned.
Radiation issues are discussed and the alignment procedure for the SVT is described.
The alignment procedure is described and results for the alignment precision and position resolution are reported.
The effects on the beam quality are illustrated providing the basis for the alignment procedure and jitter tolerances.
A lower limit for the precision of the alignment procedure is only 5.1% of the cell radius.
Beyond default parameters in the alignment procedure, human gene annotation retrieved from the GENCODE project (version 21, http://www.gencodegenes.org/releases/21.html) was additionally provided to improve exon exon junction mapping.
The alignment procedure is made under the condition of centric occlusion, i.e., after bringing occlusal surfaces of mandibular and opposing maxillary arches into identical 3D position.
Based on this force model, constraints useful for the design and the prediction of the behaviour of microparts are proposed and dynamic simulations of the alignment procedure are presented.
In Section 3 we describe the phantoms used in our experiments and the alignment procedure.
Diverse conformations within 20 kcal/mol energy range were generated and submitted to the alignment procedure.
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