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Analysis of 116 esophageal adenocarcinoma specimens using high density copy number microarrays revealed amplification of 3% (4/116).
Analysis of 116 EAC specimens using high density copy number microarrays revealed amplification of CCNE1 in 19.0% (22/116).
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Tests were conducted on nine connection specimens using high-strength steel to investigate ultimate strength.
In these experiments, a slowly increasing uniform pressure is applied to the bottom surface of large-scale RC slab specimens using high-pressure water bag.
The aim of this study was to analyze the effects of cervical spine motion on cranial dura mater length variations in anatomical specimens using high-resolution linear displacement transducers.
Tissue moduli were computed for a subset of 18 specimens using high-resolution linear finite element analyses and also using two previously developed theoretical relationships (Bone 25 (1999) 481; J. Elasticity 53 (1999) 125).
A Monte Carlo algorithm is defined for generating replicas of textile composite specimens that possess the same statistical characteristics as specimens imaged using high resolution computed tomography.
Recent work presented a Monte Carlo algorithm based on Markov Chain operators for generating replicas of textile composite specimens that possess the same statistical characteristics as specimens imaged using high resolution x-ray computed tomography.
Because we analysed a limited number of specimens, additional experiments using high throughput techniques are required to determine how commonly these genes are differentially expressed.
DNA was extracted from the paraffin-embedded cervical lesion specimens using the High Pure PCR Template Preparation Kit (Cat.11796828001, Roche, Penzberg, Germany), and HPV detection and genotyping were performed using a PCR-based HPV-DNA microarray system (Biomedlab, Seoul, South Korea).
RNA was extracted from infected tissue culture supernatants using Tri-Reagent (Molecular Research Center, Inc., Cincinnati, OH, USA) and from primary clinical specimens using the High Pure Viral Nucleic Acid kit (Roche Diagnostics GmbH, Mannheim, Germany).
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