首页> 外文会议>Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems IX >Mathematical analysis of the temperature field during ex-vivo and in-vivo experimental laser interstitial thermotherapy (LITT) in breast tissue models
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Mathematical analysis of the temperature field during ex-vivo and in-vivo experimental laser interstitial thermotherapy (LITT) in breast tissue models

机译:乳腺组织模型体内和体外实验性激光间质热疗(LITT)期间温度场的数学分析

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Abstract: Laser interstitial thermotherapy is a promising minimally- invasive technique for the treatment of small cancers of the breast that are currently removed surgically lumpectomy. The purpose of this work was to analyze in situ temperature fields recorded with stainless-steel thermocoupled probes during experimental laser interstitial thermo-therapy. Both a CW Nd:YAG laser system emitting 20W for 25 to 30s and a 980 nm diode laser emitting 10 to 20 W for up to 1200s delivered through a fiber-optic probe were used to create localized heating in fatty cadaver pig tissue and milk as phantoms. To quantify an artifact due to direct heating of the thermocouple probes by laser radiation, experiments were also performed in air, water and intralipid solution. The temperature field around the fiber-optic probe during laser irradiation was measured every 0.3 s or 1 s with an array of up to fifteen needle thermocoupled probes. The effect of light absorption by the thermocouples probes was quantified and the time-dependence of the temperature distribution was analyzed. After removal of the thermocouple artifact, the temperature was found to vary exponentially with time with a time constant of 600 to 700 s. The time-dependence of the interstitial temperature can be modeled by exponential functions both during ex vivo and in vivo experiments. !23
机译:摘要:激光间质热疗法是一种有前途的微创技术,可用于治疗目前通过手术切除的乳房小癌。这项工作的目的是分析在实验性激光间隙热疗过程中用不锈钢热电偶探头记录的原位温度场。通过光纤探头传送的20W的CW Nd:YAG激光系统发出25至30s的光,而发出10至20W的980 nm二极管激光器通过光纤探头发出的光长达1200s,这两种方法都用于在脂肪尸猪组织和牛奶中产生局部加热,例如幻影。为了量化由于激光辐射直接加热热电偶探针而导致的伪影,还在空气,水和脂质内溶液中进行了实验。每隔0.3 s或1 s用多达15个针式热电偶探头的阵列测量光纤探头周围的温度场。量化了热电偶探针吸收光的影响,并分析了温度分布的时间依赖性。去除热电偶伪像后,发现温度随时间呈指数变化,时间常数为600至700 s。间隙温度的时间依赖性可以通过离体和体内实验中的指数函数来建模。 !23

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