Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Adaptive Proton Therapy in Head and Neck Cancer

View through CrossRef
Anatomic and dosimetric changes occur in head and neck cancer during fractionated proton radiotherapy, and the actual dose received by patient is considerably different from original plan. Adaptive radiotherapy aims to modify treatment according to changes that occur during proton therapy. Intensity modulated proton therapy for head and neck cancer (HNC) patients benefitted by adaptation to correct the dose perturbations caused by weight loss, tumor volume changes, setup and range uncertainties. The following sections have elaborated the rationale of adaptation in HNC, proton physics in HNC, studies comparing non-adaptive and adaptive intensity modulated proton therapy (IMPT) plans, reasons for adaptation and how to mitigate these changes.
Title: Adaptive Proton Therapy in Head and Neck Cancer
Description:
Anatomic and dosimetric changes occur in head and neck cancer during fractionated proton radiotherapy, and the actual dose received by patient is considerably different from original plan.
Adaptive radiotherapy aims to modify treatment according to changes that occur during proton therapy.
Intensity modulated proton therapy for head and neck cancer (HNC) patients benefitted by adaptation to correct the dose perturbations caused by weight loss, tumor volume changes, setup and range uncertainties.
The following sections have elaborated the rationale of adaptation in HNC, proton physics in HNC, studies comparing non-adaptive and adaptive intensity modulated proton therapy (IMPT) plans, reasons for adaptation and how to mitigate these changes.

Related Results

Abstract 998: Pursuing leadership in literacy to ameliorate head and neck cancer disparities
Abstract 998: Pursuing leadership in literacy to ameliorate head and neck cancer disparities
Abstract Overview of Proposed Research. Head and neck cancers are a deadly cancer that ranks among the six most common cancers worldwide. (American Cancer Society, 2...
Edoxaban and Cancer-Associated Venous Thromboembolism: A Meta-analysis of Clinical Trials
Edoxaban and Cancer-Associated Venous Thromboembolism: A Meta-analysis of Clinical Trials
Abstract Introduction Cancer patients face a venous thromboembolism (VTE) risk that is up to 50 times higher compared to individuals without cancer. In 2010, direct oral anticoagul...
New frontiers in proton therapy: applications in cancers
New frontiers in proton therapy: applications in cancers
Abstract Proton therapy offers dominant advantages over photon therapy due to the unique depth‐dose characteristics of proton, which can cause a dramatic reductio...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Computer simulation of an excess proton in aqueous systems
Computer simulation of an excess proton in aqueous systems
This thesis aims at studying the microscopic physical-chemical properties of an excess proton in aqueous systems. From bulk water environments to narrow hydrophobic channels constr...
Abstract 1195: Incidence rates of head and neck cancer across Thailand and the USA
Abstract 1195: Incidence rates of head and neck cancer across Thailand and the USA
Abstract Background: Head and neck cancer is the sixth most common cancer in the world, with the largest burden occurring in developing countries. Although the prima...
Incidence of head and neck cancer among Baquba Teaching Hospital Patients
Incidence of head and neck cancer among Baquba Teaching Hospital Patients
Background: Squamous cells lining the tissues of the head and neck region, such as the nasal cavity, paranasal sinuses, oral cavity, lip, salivary glands, and hypopharynx, give gro...
Study on Dosimetry Technology of Absorbed Dose to Water for Proton
Study on Dosimetry Technology of Absorbed Dose to Water for Proton
In proton therapy, precise energy transfer to tissues is crucial for cancer treatment, as accurate dose delivery directly influences tumor control efficiency and minimizes radiatio...

Back to Top