Daily positioning accuracy of frameless stereotactic radiation therapy with a fusion of computed tomography and linear accelerator unit
Uematsu M., Sonderegger M., Shioda A., et al. Daily positioning accuracy of frameless stereotactic radiation therapy with a fusion of computed tomography and linear accelerator unit. Radiother Oncol. 50:1999;337-339.
Set-up verification using portal imaging; Review of current clinical practice
Coen W.H., Peter R., Joos V.L., et al. Set-up verification using portal imaging; review of current clinical practice. Radiother Oncol. 58:2001;105-120.
The effectiveness of an immobilization device in conformal radiotherapy for lung tumor: Reduction of respiratory tumor movement and evaluation of the daily setup accuracy
Negoro Y., Nagata Y., Aoki T., et al. The effectiveness of an immobilization device in conformal radiotherapy for lung tumor Reduction of respiratory tumor movement and evaluation of the daily setup accuracy . Int J Radiat Oncol Biol Phys. 50:2001;889-898.
Dual computed tomography linear accelerator unit for stereotactic radiation therapy: A new approach without cranially fixated stereotactic frames
Uematsu M., Fukui T., Shioda A., et al. Dual computed tomography linear accelerator unit for stereotactic radiation therapy A new approach without cranially fixated stereotactic frames . Int J Radiat Oncol Biol Phys. 35:1996;587-592.
Focal high dose, and fractionated modified stereotactic radiation therapy for lung carcinoma patients
Uematsu M., Shioda A., Tahara K., et al. Focal high dose, and fractionated modified stereotactic radiation therapy for lung carcinoma patients. Cancer. 82:1998;1062-1070.
Intrafractional tumor position stability during computed tomography (CT)-guided frameless stereotactic radiation therapy for lung or liver cancers with a fusion of CT and linear accelerator (FOCAL) unit
Uematsu M., Shioda A., Suda A., et al. Intrafractional tumor position stability during computed tomography (CT)-guided frameless stereotactic radiation therapy for lung or liver cancers with a fusion of CT and linear accelerator (FOCAL) unit. Int J Radiat Oncol Biol Phys. 48:2000;443-448.
A new irradiation system for lung cancer: Patient's self-breath-holding and radiation beam control in the absence of respiratory monitoring devices
submitted
Onishi H, Kuriyama K, Komiyama T; et al. A new irradiation system for lung cancer: Patient's self-breath-holding and radiation beam control in the absence of respiratory monitoring devices. Int J Radiat Oncol Biol Phys (submitted).
Patients' self-breath-holding technique for the treatment of lung cancer as evaluated by CT. How precisely can patients reproduce the tumor position under self-breath-holding in the absence of respiratory monitoring devices?
submitted
Onishi H, Kuriyama K, Komiyama T; et al. Patients' self-breath-holding technique for the treatment of lung cancer as evaluated by CT. How precisely can patients reproduce the tumor position under self-breath-holding in the absence of respiratory monitoring devices? Int J Radiat Oncol Biol Phys (submitted).