TY - JOUR
T1 - Immobilization considerations for proton radiation therapy
AU - Wroe, Andrew J.
AU - Bush, David A.
AU - Slater, Jerry D.
N1 - Proton therapy is rapidly developing as a mainstream modality for external beam radiation therapy. This development is largely due to the ability of protons to ...
PY - 2014/6
Y1 - 2014/6
N2 - Proton therapy is rapidly developing as a mainstream modality for external beam radiation therapy. This development is largely due to the ability of protons to deposit much of their energy in a region known as the Bragg peak, minimizing the number of treatment fields and hence integral dose delivered to the patient. Immobilization in radiation therapy is a key component in the treatment process allowing for precise delivery of dose to the target volume and this is certainly true in proton therapy. In proton therapy immobilization needs to not only immobilize the patient, placing them in a stable and reproducible position for each treatment, but its impact on the depth dose distribution and range uncertainty must also be considered. The impact of immobilization on range is not a primary factor in X-ray radiation therapy, but it is a governing factor in proton therapy. This contribution describes the immobilization considerations in proton therapy which have been developed at Loma Linda over twenty plus years of clinical operation as a hospital based proton center. © Adenine Press (2014).
AB - Proton therapy is rapidly developing as a mainstream modality for external beam radiation therapy. This development is largely due to the ability of protons to deposit much of their energy in a region known as the Bragg peak, minimizing the number of treatment fields and hence integral dose delivered to the patient. Immobilization in radiation therapy is a key component in the treatment process allowing for precise delivery of dose to the target volume and this is certainly true in proton therapy. In proton therapy immobilization needs to not only immobilize the patient, placing them in a stable and reproducible position for each treatment, but its impact on the depth dose distribution and range uncertainty must also be considered. The impact of immobilization on range is not a primary factor in X-ray radiation therapy, but it is a governing factor in proton therapy. This contribution describes the immobilization considerations in proton therapy which have been developed at Loma Linda over twenty plus years of clinical operation as a hospital based proton center. © Adenine Press (2014).
KW - Immobilization
KW - Proton therapy
KW - Radiotherapy Dosage
KW - Neoplasms/radiotherapy
KW - Humans
KW - Proton Therapy/methods
KW - Radiotherapy Planning, Computer-Assisted
KW - Immobilization/methods
UR - https://www.scopus.com/pages/publications/84898736988
UR - https://www.scopus.com/pages/publications/84898736988#tab=citedBy
UR - https://www.mendeley.com/catalogue/5b49e047-e651-3975-8b62-d30981b21dce/
U2 - 10.7785/tcrt.2012.500376
DO - 10.7785/tcrt.2012.500376
M3 - Article
C2 - 24066953
SN - 1533-0346
VL - 13
SP - 217
EP - 226
JO - Technology in Cancer Research and Treatment
JF - Technology in Cancer Research and Treatment
IS - 3
ER -