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1.
Radiation Oncology Journal ; : 265-275, 2015.
Artículo en Inglés | WPRIM | ID: wpr-70167

RESUMEN

Despite the increasing use of stereotactic body radiation therapy (SBRT) and stereotactic radiation surgery (SRS) in recent years, the biological base of these high-dose hypo-fractionated radiotherapy modalities has been elusive. Given that most human tumors contain radioresistant hypoxic tumor cells, the radiobiological principles for the conventional multiple-fractionated radiotherapy cannot account for the high efficacy of SBRT and SRS. Recent emerging evidence strongly indicates that SBRT and SRS not only directly kill tumor cells, but also destroy the tumor vascular beds, thereby deteriorating intratumor microenvironment leading to indirect tumor cell death. Furthermore, indications are that the massive release of tumor antigens from the tumor cells directly and indirectly killed by SBRT and SRS stimulate anti-tumor immunity, thereby suppressing recurrence and metastatic tumor growth. The reoxygenation, repair, repopulation, and redistribution, which are important components in the response of tumors to conventional fractionated radiotherapy, play relatively little role in SBRT and SRS. The linear-quadratic model, which accounts for only direct cell death has been suggested to overestimate the cell death by high dose per fraction irradiation. However, the model may in some clinical cases incidentally do not overestimate total cell death because high-dose irradiation causes additional cell death through indirect mechanisms. For the improvement of the efficacy of SBRT and SRS, further investigation is warranted to gain detailed insights into the mechanisms underlying the SBRT and SRS.


Asunto(s)
Humanos , Antígenos de Neoplasias , Muerte Celular , Radiobiología , Radioterapia , Recurrencia
2.
Journal of Lung Cancer ; : 89-91, 2006.
Artículo en Coreano | WPRIM | ID: wpr-167589

RESUMEN

PURPOSE: On-line setup procedure was performed before treatment for lung cancer patient for stereotactic radiation surgery (SRS) using recently introduced Cone Beam CT. MATERIALS AND METHODS: Cone Beam CT was performed for 10 patients who did SRS during 18 July and 1 September, 2006 using On Board Imager (OPB) system made by Varian, USA. The treatment position of patient was corrected comparing Images obtaining from CBCT and used in treatment planning. RESULTS: Comparing the CBCT images and CT images used in treatment planning, the movement of the couch is 2.3+/-2.3 mm, 1.8+/-2.8 mm, 0.3+/-3.5 mm for vertical, lateral, and longitudinal direction. It took about 1 hr for conventional treatment procedure in image acquisition of CT before treatment and image registration. But it took about 4~7 minute in on-line setup using CBCT (1~2 min for image acquisition using CBCT, 2~3 min for CT reconstruction of 2.5 mm slice thickness, 1~2 min for on-line setup using image registration). CONCLUTION: The accurate treatment could be performed after tumor localization for SRS using CBCT images. And the consumed time for tumor localization was reduced significantly.


Asunto(s)
Humanos , Tomografía Computarizada de Haz Cónico , Neoplasias Pulmonares , Pulmón , Radioterapia Guiada por Imagen
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