Literature DB >> 26318560

Effects of Thermal Preconditioning on Tissue Susceptibility to Histotripsy.

Eli Vlaisavljevich1, Zhen Xu2, Alexa Arvidson3, Lifang Jin4, William Roberts5, Charles Cain3.   

Abstract

Histotripsy is a non-invasive ablation method that mechanically fractionates tissue by controlling acoustic cavitation. Previous work has revealed that tissue mechanical properties play a significant role in the histotripsy process, with stiffer tissues being more resistant to histotripsy-induced tissue damage. In this study, we propose a thermal pretreatment strategy to precondition tissues before histotripsy. We hypothesize that a thermal pretreatment can be used to alter tissue stiffness by modulating collagen composition, thus changing tissue susceptibility to histotripsy. More specifically, we hypothesize that tissues will soften and become more susceptible to histotripsy when preheated at ∼60°C because of collagen denaturation, but that tissues will rapidly stiffen and become less susceptible to histotripsy when preheated at ∼90°C because of collagen contraction. To test this hypothesis, a controlled temperature water bath was used to heat various ex vivo bovine tissues (tongue, artery, liver, kidney medulla, tendon and urethra). After heating, the Young's modulus of each tissue sample was measured using a tissue elastometer, and changes in tissue composition (i.e., collagen structure/density) were analyzed histologically. The susceptibility of tissues to histotripsy was investigated by treating the samples using a 750-kHz histotripsy transducer. Results revealed a decrease in stiffness and an increase in susceptibility to histotripsy for tissues (except urethra) preheated to 58°C. In contrast, preheating to 90°C increased tissue stiffness and reduced susceptibility to histotripsy for all tissues except tendon, which was significantly softened due to collagen hydrolysis into gelatin. On the basis of these results, a final set of experiments were conducted to determine the feasibility of using high-intensity focused ultrasound to provide the thermal pretreatment. Overall, the results of this study indicate the initial feasibility of a thermal pretreatment strategy to precondition tissue mechanical properties and alter tissue susceptibility to histotripsy. Future work will aim to optimize this thermal pretreatment strategy to determine if this approach is practical for specific clinical applications in vivo without causing unwanted damage to surrounding or overlying tissue.
Copyright © 2015 World Federation for Ultrasound in Medicine & Biology. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  High-intensity focused ultrasound; Histotripsy; Thermal therapy; Tissue stiffness

Mesh:

Year:  2015        PMID: 26318560      PMCID: PMC4648696          DOI: 10.1016/j.ultrasmedbio.2015.07.016

Source DB:  PubMed          Journal:  Ultrasound Med Biol        ISSN: 0301-5629            Impact factor:   2.998


  34 in total

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Authors:  E Tornberg
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2.  Thermal dose determination in cancer therapy.

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Journal:  Int J Radiat Oncol Biol Phys       Date:  1984-06       Impact factor: 7.038

3.  Correspondence of ultrasound elasticity imaging to direct mechanical measurement in aging DVT in rats.

Authors:  Hua Xie; Kang Kim; Salavat R Aglyamov; Stanislav Y Emelianov; Matthew O'Donnell; William F Weitzel; Shirley K Wrobleski; Daniel D Myers; Thomas W Wakefield; Jonathan M Rubin
Journal:  Ultrasound Med Biol       Date:  2005-10       Impact factor: 2.998

4.  Noninvasive creation of an atrial septal defect by histotripsy in a canine model.

Authors:  Zhen Xu; Gabe Owens; David Gordon; Charles Cain; Achi Ludomirsky
Journal:  Circulation       Date:  2010-02-01       Impact factor: 29.690

5.  Developmental impact and lesion maturation of histotripsy-mediated non-invasive tissue ablation in a fetal sheep model.

Authors:  Yohan Kim; Carlen G Fifer; Sarah K Gelehrter; Gabe E Owens; Deborah R Berman; Eli Vlaisavljevich; Steven P Allen; Maria F Ladino-Torres; Zhen Xu
Journal:  Ultrasound Med Biol       Date:  2013-02-27       Impact factor: 2.998

6.  Noninvasive ultrasound elasticity imaging (UEI) of Crohn's disease: animal model.

Authors:  Kang Kim; Laura A Johnson; Congxian Jia; Joel C Joyce; Sujal Rangwalla; Peter D R Higgins; Jonathan M Rubin
Journal:  Ultrasound Med Biol       Date:  2008-02-21       Impact factor: 2.998

7.  Histological and biochemical analysis of mechanical and thermal bioeffects in boiling histotripsy lesions induced by high intensity focused ultrasound.

Authors:  Yak-Nam Wang; Tatiana Khokhlova; Michael Bailey; Joo Ha Hwang; Vera Khokhlova
Journal:  Ultrasound Med Biol       Date:  2013-01-11       Impact factor: 2.998

8.  Image-guided non-invasive ultrasound liver ablation using histotripsy: feasibility study in an in vivo porcine model.

Authors:  Eli Vlaisavljevich; Yohan Kim; Steven Allen; Gabe Owens; Shawn Pelletier; Charles Cain; Kimberly Ives; Zhen Xu
Journal:  Ultrasound Med Biol       Date:  2013-05-15       Impact factor: 2.998

9.  The composition of body tissues.

Authors:  H Q Woodard; D R White
Journal:  Br J Radiol       Date:  1986-12       Impact factor: 3.039

10.  Comparison of two different thermal techniques for the treatment of hepatocellular carcinoma.

Authors:  Jianmin Ding; Xiang Jing; Jibin Liu; Yandong Wang; Fengmei Wang; Yijun Wang; Zhi Du
Journal:  Eur J Radiol       Date:  2013-05-28       Impact factor: 3.528

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  6 in total

1.  Mechanical decellularization of tissue volumes using boiling histotripsy.

Authors:  Yak-Nam Wang; Tatiana D Khokhlova; Sergey Buravkov; Valeriy Chernikov; Wayne Kreider; Ari Partanen; Navid Farr; Adam Maxwell; George R Schade; Vera A Khokhlova
Journal:  Phys Med Biol       Date:  2018-12-04       Impact factor: 3.609

Review 2.  For Whom the Bubble Grows: Physical Principles of Bubble Nucleation and Dynamics in Histotripsy Ultrasound Therapy.

Authors:  Kenneth B Bader; Eli Vlaisavljevich; Adam D Maxwell
Journal:  Ultrasound Med Biol       Date:  2019-03-26       Impact factor: 2.998

3.  Effects of Temperature on the Histotripsy Intrinsic Threshold for Cavitation.

Authors:  Eli Vlaisavljevich; Zhen Xu; Adam Maxwell; Lauren Mancia; Xi Zhang; Kuang-Wei Lin; Alexander Duryea; Jonathan Sukovich; Tim Hall; Eric Johnsen; Charles Cain
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2016-05-10       Impact factor: 2.725

4.  Focused Ultrasound Mechanical Disruption of Ex Vivo Rat Tendon.

Authors:  Molly Smallcomb; Jacob Elliott; Sujata Khandare; Ali A Butt; Meghan E Vidt; Julianna C Simon
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2021-08-27       Impact factor: 3.267

5.  Histotripsy for the Treatment of Cholangiocarcinoma Liver Tumors: In Vivo Feasibility and Ex Vivo Dosimetry Study.

Authors:  Alissa Hendricks-Wenger; Peter Weber; Alex Simon; Sofie Saunier; Sheryl Coutermarsh-Ott; Douglas Grider; Joan Vidal-Jove; Irving Coy Allen; David Luyimbazi; Eli Vlaisavljevich
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2021-08-27       Impact factor: 3.267

Review 6.  Histotripsy Ablation in Preclinical Animal Models of Cancer and Spontaneous Tumors in Veterinary Patients: A Review.

Authors:  Alissa Hendricks-Wenger; Lauren Arnold; Jessica Gannon; Alex Simon; Neha Singh; Hannah Sheppard; Margaret A Nagai-Singer; Khan Mohammad Imran; Kiho Lee; Sherrie Clark-Deener; Christopher Byron; Michael R Edwards; Martha M Larson; John H Rossmeisl; Sheryl L Coutermarsh-Ott; Kristin Eden; Nikolaos Dervisis; Shawna Klahn; Joanne Tuohy; Irving Coy Allen; Eli Vlaisavljevich
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2021-12-31       Impact factor: 3.267

  6 in total

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