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10.4274/2017.26.suppl.12

http://scihub22266oqcxt.onion/10.4274/2017.26.suppl.12
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C5283709!5283709!28117295
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suck abstract from ncbi


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pmid28117295      Mol+Imaging+Radionucl+Ther 2017 ; 26 (Suppl 1): 102-17
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  • A Concise Atlas of Thyroid Cancer Next-Generation Sequencing Panel ThyroSeq v 2 #MMPMID28117295
  • Alsina J; Alsina R; Gulec S
  • Mol Imaging Radionucl Ther 2017[Feb]; 26 (Suppl 1): 102-17 PMID28117295show ga
  • The next-generation sequencing technology allows high out-put genomic analysis. An innovative assay in thyroid cancer, ThyroSeq® was developed for targeted mutation detection by next generation sequencing technology in fine needle aspiration and tissue samples. ThyroSeq v.2 next generation sequencing panel offers simultaneous sequencing and detection in >1000 hotspots of 14 thyroid cancer-related genes and for 42 types of gene fusions known to occur in thyroid cancer. ThyroSeq is being increasingly used to further narrow the indeterminate category defined by cytology for thyroid nodules. From a surgical perspective, genomic profiling also provides prognostic and predictive information and closely relates to determination of surgical strategy. Both the genomic analysis technology and the informatics for the cancer genome data base are rapidly developing. In this paper, we have gathered existing information on the thyroid cancer-related genes involved in the initiation and progression of thyroid cancer. Our goal is to assemble a glossary for the current ThyroSeq genomic panel that can help elucidate the role genomics play in thyroid cancer oncogenesis.
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