It seems ungenerous to end this review of a splendid work of scholarship on a critical note-Times Litt. Sup.; a meanspirited man unwilling to forgive. 应受惩罚的恶劣行为以批评的按语结束对优秀的奖学金申请的这次审查似乎太狭隘了;不依不饶的卑劣之人。
A two-layer model with a single blood vessel was developed to investigate the cooling effect for blood flow during laser-induced interstitial thermotherapy ( LITT). 为研究激光诱导间质热疗过程中血管冷却对于生物组织内温度场和损伤度的影响,建立了包含单根血管的双层模型。
Cetaceans are not created to decorate the immense chaotic oceans or to offer poets or litt é rateurs aspirations or inspirations. 上帝创造鲸鱼,并不是为了点缀那广漠无垠喧嚣混沌的海洋,也不是为了激发诗人或者文人骚客的灵感或者情感;
Jagdish Singh is in pursuit of his latest academic distinction: a D Litt in English Literature from Lucknow University. 这个名为杰格迪茨·思恩的老人向他的新的学位目标进发:在勒克瑙大学修读英语文学博士学位。
A modified Monte Carlo method was developed to simulate photon transport in the tissue with a non-uniform optical property field. 采用改进的MonteCarlo方法数值模拟了LITT中激光能量在非均质生物组织内的传输过程。
The operation of LITT needs an accurate numerical simulation of laser energy distribution?? the tissue. 激光诱导间质热疗手术方案的制定需要术前对引入激光能量在组织中的分布进行准确的数值模拟。
ConclusiontDuring a LITT treatment, the Rx should be based on the general consideration of different biological properties and the laser wavelength, laser power and the laser probe exposure duration. 结论:激光诱导间质热疗中,需要综合考虑生物组织特性和激光波长、功率及曝光时间等治疗参数来制定治疗方案。
The numerical results show that the dynamic changes in the optical properties, thermal properties and blood perfusion rate significantly affect the damage volume accumulation history in tissue and should be included in numerical simulations of the LITT treatment. 数值模拟结果表明,组织的光学物性参数、热物性参数及血液灌注率的动态变化对于热损伤体积的变化具有重要的影响,应该在光热作用建模中予以考虑。
To describe the complex nonlinear process of laser tissue interactions, a two-dimensional mathematical model considering the dynamic changes in the physical tissue properties was developed here. 考虑热疗过程中生物组织物性参数的动态变化,建立了描述激光诱导间质肿瘤热疗(LITT)过程中动态光热作用的二维物理数学模型。
Objective To explore the optimal heating power, heating time, effects and mechanisms of laser interstitial thermotherapy ( LITT) for treatment of glioma. 目的探讨激光间质热疗(LITT)治疗胶质瘤的最适热功率、照射时间、热效应及作用机制。
To study the thermal distributive laws of LITT which is essential to therapeutic strategy. 探讨LITT热场分布的规律并据此探讨合理的治疗策略。
For example, Photodynamic Therapy ( PDT) of using laser wavelength, laser surgery of using high-power and laser-induced interstitial thermotherapy ( LITT) of using low-power laser. 例如,利用光波长的光动力学疗法、利用激光强能量的激光手术和弱激光的间质热疗法等。
Laser-induced interstitial thermotherapy ( LITT) is a new technology for tumor treatment. It causes the tissue necrosis through the interaction of light and heat effects. But during clinical application it cannot achieve real-time efficacy evaluation and control of dosage. 激光诱导间质热疗法是利用激光产生局部组织凝固坏死的肿瘤热疗技术,临床应用上存在术中无法实时评估疗效和控制剂量问题。