Literature DB >> 18957712

Tissue elasticity properties as biomarkers for prostate cancer.

Kenneth Hoyt1, Benjamin Castaneda, Man Zhang, Priya Nigwekar, P Anthony di Sant'agnese, Jean V Joseph, John Strang, Deborah J Rubens, Kevin J Parker.   

Abstract

In this paper we evaluate tissue elasticity as a longstanding but qualitative biomarker for prostate cancer and sonoelastography as an emerging imaging tool for providing qualitative and quantitative measurements of prostate tissue stiffness. A Kelvin-Voigt Fractional Derivative (KVFD) viscoelastic model was used to characterize mechanical stress relaxation data measured from human prostate tissue samples. Mechanical testing results revealed that the viscosity parameter for cancerous prostate tissue is greater than that derived from normal tissue by a factor of approximately 2.4. It was also determined that a significant difference exists between normal and cancerous prostate tissue stiffness (p < 0.01) yielding an average elastic contrast that increases from 2.1 at 0.1 Hz to 2.5 at 150 Hz. Qualitative sonoelastographic results show promise for cancer detection in prostate and may prove to be an effective adjunct imaging technique for biopsy guidance. Elasticity images obtained with quantitative sonoelastography agree with mechanical testing and histological results. Overall, results indicate tissue elasticity is a promising biomarker for prostate cancer.

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Year:  2008        PMID: 18957712      PMCID: PMC3144495          DOI: 10.3233/cbm-2008-44-505

Source DB:  PubMed          Journal:  Cancer Biomark        ISSN: 1574-0153            Impact factor:   4.388


  34 in total

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Review 4.  Selected methods for imaging elastic properties of biological tissues.

Authors:  James F Greenleaf; Mostafa Fatemi; Michael Insana
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5.  Initial experiences with real-time elastography guided biopsies of the prostate.

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Review 10.  Value of contrast-enhanced ultrasound and elastography in imaging of prostate cancer.

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  71 in total

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3.  Theoretical Analysis of Shear Wave Interference Patterns by Means of Dynamic Acoustic Radiation Forces.

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Review 4.  Elastography: modality-specific approaches, clinical applications, and research horizons.

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Review 7.  Medical ultrasound: imaging of soft tissue strain and elasticity.

Authors:  Peter N T Wells; Hai-Dong Liang
Journal:  J R Soc Interface       Date:  2011-06-16       Impact factor: 4.118

8.  Nonlinear characterization of elasticity using quantitative optical coherence elastography.

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9.  Tactile sensor using acoustic reflection for lump detection in laparoscopic surgery.

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10.  Neural coding of passive lump detection in compliant artificial tissue.

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Journal:  J Neurophysiol       Date:  2014-05-07       Impact factor: 2.714

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