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    Evaluation of the Laser-Induced Thermotherapy Treatment Effect of Breast Cancer Based on Tissue Viscoelastic Properties

    Source: Journal of Engineering and Science in Medical Diagnostics and Therapy:;2019:;volume( 001 ):;issue: 004::page 41009
    Author:
    Chen, Jiayao
    ,
    Zhou, Bin
    ,
    Qiu, Suhao
    ,
    Ma, Shengyuan
    ,
    Lee, Chung-Hao
    ,
    Aggarwal, Ankush
    ,
    Zeng, Jianfeng
    ,
    Gao, Mingyuan
    ,
    Feng, Yuan
    ,
    Li, Dan
    ,
    Shan, Hong
    DOI: 10.1115/1.4041502
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Photothermal therapy (PTT) has been emerging as an effective, minimally invasive approach to treat cancers. However, a method to quantitatively evaluate the treatment effect after laser-induced thermotherapy (LITT) is needed. In this study, we used 808 nm laser radiation with three different power densities to treat the breast cancer tissue from 4T1 cell lines in a mouse model. The viscoelastic properties of the treated cancer tissues were characterized by a two-term Prony series using a ramp-hold indentation method. We observed that instantaneous shear modulus G0 was significantly higher for the treated cancer tissues than that of the untreated tissue when treated with a power density of 1.5 W/cm2, but significantly lower with a power density of 2.5 W/cm2. The long-term shear modulus G∞ was also significantly higher for the cancer tissue at 1.5 W/cm2, compared to the untreated tissue. The treatment effects were verified by estimating the cell apoptosis rate using terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL). Our results indicate that the viscoelastic properties of the tissue could potentially be used as biomarkers for evaluating the LITT treatment effect. In addition, we also observed a strain-independent behavior of the treated cancer tissue, which provided useful information for applying in vivo imaging method such as magnetic resonance elastography (MRE) for treatment evaluation based on biomechanical properties.
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      Evaluation of the Laser-Induced Thermotherapy Treatment Effect of Breast Cancer Based on Tissue Viscoelastic Properties

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4256074
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    • Journal of Engineering and Science in Medical Diagnostics and Therapy

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    contributor authorChen, Jiayao
    contributor authorZhou, Bin
    contributor authorQiu, Suhao
    contributor authorMa, Shengyuan
    contributor authorLee, Chung-Hao
    contributor authorAggarwal, Ankush
    contributor authorZeng, Jianfeng
    contributor authorGao, Mingyuan
    contributor authorFeng, Yuan
    contributor authorLi, Dan
    contributor authorShan, Hong
    date accessioned2019-03-17T10:19:45Z
    date available2019-03-17T10:19:45Z
    date copyright10/5/2018 12:00:00 AM
    date issued2019
    identifier issn2572-7958
    identifier otherjesmdt_001_04_041009.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4256074
    description abstractPhotothermal therapy (PTT) has been emerging as an effective, minimally invasive approach to treat cancers. However, a method to quantitatively evaluate the treatment effect after laser-induced thermotherapy (LITT) is needed. In this study, we used 808 nm laser radiation with three different power densities to treat the breast cancer tissue from 4T1 cell lines in a mouse model. The viscoelastic properties of the treated cancer tissues were characterized by a two-term Prony series using a ramp-hold indentation method. We observed that instantaneous shear modulus G0 was significantly higher for the treated cancer tissues than that of the untreated tissue when treated with a power density of 1.5 W/cm2, but significantly lower with a power density of 2.5 W/cm2. The long-term shear modulus G∞ was also significantly higher for the cancer tissue at 1.5 W/cm2, compared to the untreated tissue. The treatment effects were verified by estimating the cell apoptosis rate using terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL). Our results indicate that the viscoelastic properties of the tissue could potentially be used as biomarkers for evaluating the LITT treatment effect. In addition, we also observed a strain-independent behavior of the treated cancer tissue, which provided useful information for applying in vivo imaging method such as magnetic resonance elastography (MRE) for treatment evaluation based on biomechanical properties.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleEvaluation of the Laser-Induced Thermotherapy Treatment Effect of Breast Cancer Based on Tissue Viscoelastic Properties
    typeJournal Paper
    journal volume1
    journal issue4
    journal titleJournal of Engineering and Science in Medical Diagnostics and Therapy
    identifier doi10.1115/1.4041502
    journal fristpage41009
    journal lastpage041009-9
    treeJournal of Engineering and Science in Medical Diagnostics and Therapy:;2019:;volume( 001 ):;issue: 004
    contenttypeFulltext
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