In order to effectively utilize the prominent properties of heavy ions in radiotherapy, it is important to evaluate both the position of the field irradiatedwith incident ions and the absorbed dose distribution in a patient\u27s body. One ofthe methods for this purpose is the utilization of the positron emitters producedthrough the projectile fragmentation reactions of stable heavy ions with targetnuclei. In heavy-ion therapy, spread-out Bragg peak (SOBP) beams are used to achieve uniform biological dose distributions in the whole tumor volume.Therefore, in this study, we designed SOBP beams of 30 and 50 mm waterequivalentlength (mmWEL)in width for 12Cand 16O, and carried out irradiation experiments using them. Water, polyethylene and polym...
A treatment planning of heavy ion cancer therapy is performed with an aid of X-ray CT, which has unc...
Proton therapy is a treatment modality of increasing utility in clinical radiation oncology mostly b...
The dose distribution in proton therapy is mainly due to primary particles and secondary electrons. ...
In proton therapy, it is important to evaluate the field irradiated with protons and the deposited d...
In radiation therapy with hadron beams, conformal irradiation to a tumour can be achieved by using t...
In radiation therapy with highly energetic heavy ions, the conformal irradiation of a tumour can be ...
For the effective utilization of the favorable properties of heavy-ion beams in cancer treatment, it...
In order to evaluate the field irradiated with incident ions and the deposited dose distribution in ...
In the past decade the hadron beams have attracted growing interest in cancer therapy. This could be...
AimThe purpose of this work was to estimate the dependency between the produced positron emitters an...
In radiation therapy with hadron beams, it is important to evaluate the range of incident ions and t...
A scheme for spot scanning using 11C beams has been developed in order to form and verify a three-di...
We proposed application of the maximum likelihood estimation (MLE) method for determination of the r...
In heavy-ion therapy, the stopping position of primary ions in tumours needs to be monitored for eff...
Proton radiotherapy is a powerful tool in the local control of cancer. The advantages of proton radi...
A treatment planning of heavy ion cancer therapy is performed with an aid of X-ray CT, which has unc...
Proton therapy is a treatment modality of increasing utility in clinical radiation oncology mostly b...
The dose distribution in proton therapy is mainly due to primary particles and secondary electrons. ...
In proton therapy, it is important to evaluate the field irradiated with protons and the deposited d...
In radiation therapy with hadron beams, conformal irradiation to a tumour can be achieved by using t...
In radiation therapy with highly energetic heavy ions, the conformal irradiation of a tumour can be ...
For the effective utilization of the favorable properties of heavy-ion beams in cancer treatment, it...
In order to evaluate the field irradiated with incident ions and the deposited dose distribution in ...
In the past decade the hadron beams have attracted growing interest in cancer therapy. This could be...
AimThe purpose of this work was to estimate the dependency between the produced positron emitters an...
In radiation therapy with hadron beams, it is important to evaluate the range of incident ions and t...
A scheme for spot scanning using 11C beams has been developed in order to form and verify a three-di...
We proposed application of the maximum likelihood estimation (MLE) method for determination of the r...
In heavy-ion therapy, the stopping position of primary ions in tumours needs to be monitored for eff...
Proton radiotherapy is a powerful tool in the local control of cancer. The advantages of proton radi...
A treatment planning of heavy ion cancer therapy is performed with an aid of X-ray CT, which has unc...
Proton therapy is a treatment modality of increasing utility in clinical radiation oncology mostly b...
The dose distribution in proton therapy is mainly due to primary particles and secondary electrons. ...