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Novel modified Look-Locker inversion recovery (MOLLI -based pulse sequences [25] would allow for single-shot, single-breath-hold T1 MOLLI -based high spulsel and temporal resequences
Single-marker analysis was done using MAPManager QTX (Meer et al. 2002) c QTL region defined by interval mapping with high confidence (based on bootstrap and LOD=31.8) using mean lesion length.
The STXM enables the quantification of chemical compositions of the submicron-sized samples as well as elemental/molecular mapping with high spatial resolution (<30 nm) (Kilcoyne et al. [2003]).
However, despite their proven advantages in small dataset tests, their performance is variable and less satisfactory while dealing with large datasets, particularly, for regional-scale mapping with high resolution data due to the complexity and diversity in landscapes and land cover patterns, and the unacceptably long processing time.
Aligned the sequence reads to the Btau2.0 assembly (ftp://ftp.hgsc.bcm.tmc.edu/pub/data/Btaurus/) after requiring unique mapping with high significance, i.e., a minimum alignment length of 500 bases with no gaps of more than 2 bp.
QTL mapping with high resolution benefits from this overlapping.
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An exact overlay of such functional mapping with high-resolution images of the retina would reveal the functional impact of microstructural alterations in vivo.
In association with genomic sequence data it can also help to more precisely predict quantitative trait-related genes (QTG) in QTL regions using targeted association mapping with high-density markers.
Various techniques and platforms have been developed for genome-wide analysis of DNA copy number, such as, array-based comparative genomic hybridization (aCGH) and high-resolution mapping with high-density tiling oligonucleotide arrays.
One robust SW-influencing major QTL region (qSW4.2) has been narrowed down by combining QTL mapping with high-resolution QTL region-specific association analysis, differential expression profiling and gene haplotype-based association/LD mapping.
Considering the advantages of GRE-based T2* and T1Gd mapping with high-image resolution and the ability to perform 3D biochemically sensitive imaging, we believe that these imaging techniques can make an important contribution to the currently evolving practice of cartilage biochemical imaging and help in the decision-making of current joint preservation interventions.
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mapping with high quality
mapping with closed
mapping with particular
mapping with intact
mapping with bilinear
mapping with compact
mapping with constant
mapping with reduced
mapping with convex
mapping with satisfying
mapping with multiple
mapping with several
mapping with unflagging
mapping with minimal
mapping with such
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