Literature DB >> 8366307

Experimental evaluation of two simple thermal models using hyperthermia in muscle in vivo.

E G Moros1, A W Dutton, R B Roemer, M Burton, K Hynynen.   

Abstract

The predictions from two simple field equation models for calculating temperature distributions in tissue, namely, the Pennes' bioheat transfer equation (BHTE) and an effective thermal conductivity equation (ETCE), were compared to in vivo experimental temperature measurements made under hyperthermic conditions generated by scanned focused ultrasound. The models were kept simple (i.e. homogenous isotropic properties, no separate blood vessels included) in order to concentrate attention on the predictive abilities of these field equations using a minimum number of free parameters. Simulated results were fitted to the experimental data (multiple, linear temperature profiles in the thigh muscles of greyhound dogs) by minimizing a performance index using a golden section searth. This search determined a value for the single free parameter in each model (blood perfusion in the BHTE, and effective thermal conductivity in the ETCE) which minimized the square error difference between the experimental and simulated temperatures. The results showed that (a) the simple BHTE model could qualitatively reproduce the major features of the temperature patterns seen experimentally better than the ETCE model could, and (b) the simple BHTE model produced better quantitative fits to the experimental data than did the simple ETCE model. In addition, blood perfusion predictions from the BHTE model compared well to measurements done with coloured microspheres. Finally, the experimental results showed that individual, large blood vessels appeared to have a major influence in producing asymmetries in the experimental data in 21% of the measured temperature profiles.

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Year:  1993        PMID: 8366307     DOI: 10.3109/02656739309005054

Source DB:  PubMed          Journal:  Int J Hyperthermia        ISSN: 0265-6736            Impact factor:   3.914


  11 in total

1.  Modeling the thermo-acoustic effects of thermal-dependent speed of sound and acoustic absorption of biological tissues during focused ultrasound hyperthermia.

Authors:  S A López-Haro; M I Gutiérrez; A Vera; L Leija
Journal:  J Med Ultrason (2001)       Date:  2015-06-13       Impact factor: 1.314

2.  Minimum-time thermal dose control of thermal therapies.

Authors:  Dhiraj Arora; Mikhail Skliar; Robert B Roemer
Journal:  IEEE Trans Biomed Eng       Date:  2005-02       Impact factor: 4.538

3.  Radiofrequency heating at 9.4T: in vivo temperature measurement results in swine.

Authors:  Devashish Shrivastava; Timothy Hanson; Robert Schlentz; William Gallaghar; Carl Snyder; Lance Delabarre; Surya Prakash; Paul Iaizzo; J Thomas Vaughan
Journal:  Magn Reson Med       Date:  2008-01       Impact factor: 4.668

4.  SonoKnife: feasibility of a line-focused ultrasound device for thermal ablation therapy.

Authors:  Duo Chen; Rongmin Xia; Xin Chen; Gal Shafirstein; Peter M Corry; Robert J Griffin; Jose A Penagaricano; Ozlem E Tulunay-Ugur; Eduardo G Moros
Journal:  Med Phys       Date:  2011-07       Impact factor: 4.071

5.  Magnetic resonance temperature imaging-based quantification of blood flow-related energy losses.

Authors:  Christopher Dillon; Robert Roemer; Allison Payne
Journal:  NMR Biomed       Date:  2015-05-14       Impact factor: 4.044

6.  Model predictive filtering for improved temporal resolution in MRI temperature imaging.

Authors:  Nick Todd; Allison Payne; Dennis L Parker
Journal:  Magn Reson Med       Date:  2010-05       Impact factor: 4.668

7.  Multiple applicator hepatic ablation with interstitial ultrasound devices: theoretical and experimental investigation.

Authors:  Punit Prakash; Vasant A Salgaonkar; E Clif Burdette; Chris J Diederich
Journal:  Med Phys       Date:  2012-12       Impact factor: 4.071

8.  A generic bioheat transfer thermal model for a perfused tissue.

Authors:  Devashish Shrivastava; J Thomas Vaughan
Journal:  J Biomech Eng       Date:  2009-07       Impact factor: 2.097

Review 9.  Modelling of endoluminal and interstitial ultrasound hyperthermia and thermal ablation: applications for device design, feedback control and treatment planning.

Authors:  Punit Prakash; Vasant A Salgaonkar; Chris J Diederich
Journal:  Int J Hyperthermia       Date:  2013-06       Impact factor: 3.914

10.  Experimental Verification of Modeled Thermal Distribution Produced by a Piston Source in Physiotherapy Ultrasound.

Authors:  M I Gutierrez; S A Lopez-Haro; A Vera; L Leija
Journal:  Biomed Res Int       Date:  2016-11-23       Impact factor: 3.411

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