Literature DB >> 19060357

Nd:YAG surgical laser effects in canine prostate tissue: temperature and damage distribution.

S A van Nimwegen1, H F L'Eplattenier, A I Rem, J J van der Lugt, J Kirpensteijn.   

Abstract

An in vitro model was used to predict short-term, laser-induced, thermal damage in canine prostate tissue. Canine prostate tissue samples were equipped with thermocouple probes to measure tissue temperature at 3, 6, 9 and 12 mm depths. The tissue surface was irradiated with a Nd:YAG laser in contact or non-contact mode for up to 20 s, using powers from 5 to 20 W. Prediction of thermal damage using Arrhenius theory was discussed and compared to the in vitro damage threshold, determined by histological evaluation. The threshold temperature for acute thermal tissue damage was 69 +/- 6 degrees C (means +/- SD), irrespective of exposure time. Contact mode laser application caused vaporization of tissue, leaving a crater underneath the fiber tip. The mean extent of tissue damage underneath the vaporization crater floor was 0.9 +/- 0.6 mm after 5, 10 or 20 s of contact mode laser irradiation at 10 W, whereas 20 W non-contact exposure up to 20 s causes up to 4.7 +/- 0.2 mm coagulation necrosis. It was concluded that short-term acute thermal tissue damage can be comprehensively described by a single threshold temperature.

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Year:  2008        PMID: 19060357     DOI: 10.1088/0031-9155/54/1/003

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  8 in total

1.  Photothermal cancer therapy by gold-ferrite nanocomposite and near-infrared laser in animal model.

Authors:  M Heidari; N Sattarahmady; N Azarpira; H Heli; A R Mehdizadeh; T Zare
Journal:  Lasers Med Sci       Date:  2015-12-22       Impact factor: 3.161

2.  Penetrating effect of high-intensity infrared laser pulses through body tissue.

Authors:  Danhong Han; Jingjing Xu; Zhenhai Wang; Nana Yang; Xunzhou Li; Yingying Qian; Ge Li; Rujun Dai; Shengyong Xu
Journal:  RSC Adv       Date:  2018-09-19       Impact factor: 4.036

3.  A tissue-mimicking prostate phantom for 980 nm laser interstitial thermal therapy.

Authors:  R Geoghegan; A Santamaria; A Priester; L Zhang; H Wu; W Grundfest; L Marks; S Natarajan
Journal:  Int J Hyperthermia       Date:  2019       Impact factor: 3.914

4.  Focal laser ablation for localized prostate cancer: principles, clinical trials, and our initial experience.

Authors:  Ted Lee; Neil Mendhiratta; Dan Sperling; Herbert Lepor
Journal:  Rev Urol       Date:  2014

Review 5.  The prostate cancer focal therapy.

Authors:  Filippo Pesapane; Francesca Patella; Enrico Maria Fumarola; Edoardo Zanchetta; Chiara Floridi; Gianpaolo Carrafiello; Chloë Standaert
Journal:  Gland Surg       Date:  2018-04

6.  Focal laser ablation of prostate cancer: definition, needs, and future.

Authors:  Pierre Colin; Serge Mordon; Pierre Nevoux; Mohammed Feras Marqa; Adil Ouzzane; Philippe Puech; Gregory Bozzini; Bertrand Leroux; Arnauld Villers; Nacim Betrouni
Journal:  Adv Urol       Date:  2012-05-16

7.  Focal laser ablation of prostate cancer: numerical simulation of temperature and damage distribution.

Authors:  Mohamad-Feras Marqa; Pierre Colin; Pierre Nevoux; Serge R Mordon; Nacim Betrouni
Journal:  Biomed Eng Online       Date:  2011-06-02       Impact factor: 2.819

Review 8.  Laser Ablation for Cancer: Past, Present and Future.

Authors:  Emiliano Schena; Paola Saccomandi; Yuman Fong
Journal:  J Funct Biomater       Date:  2017-06-14
  8 in total

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