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A new method for the high-precision assessment of tumor changes in response to treatment.

P D Tar | N A Thacker | M Babur | Y Watson | S Cheung | R A Little | R G Gieling | K J Williams | J P B O'Connor
Bioinformatics (Oxford, England) | 2018

Imaging demonstrates that preclinical and human tumors are heterogeneous, i.e. a single tumor can exhibit multiple regions that behave differently during both development and also in response to treatment. The large variations observed in control group, tumors can obscure detection of significant therapeutic effects due to the ambiguity in attributing causes of change. This can hinder development of effective therapies due to limitations in experimental design rather than due to therapeutic failure. An improved method to model biological variation and heterogeneity in imaging signals is described. Specifically, linear Poisson modeling (LPM) evaluates changes in apparent diffusion co-efficient between baseline and 72 h after radiotherapy, in two xenograft models of colorectal cancer. The statistical significance of measured changes is compared to those attainable using a conventional t-test analysis on basic apparent diffusion co-efficient distribution parameters.

Pubmed ID: 29547950

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Associated grants

  • Agency: Cancer Research UK, United Kingdom
    Id: C19221/A22746
  • Agency: Cancer Research UK, United Kingdom
    Id: C8742/A18097

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HCT 116 (tool)

RRID:CVCL_0291

Cell line HCT 116 is a Cancer cell line with a species of origin Homo sapiens (Human)

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