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1.
Radiother Oncol ; 128(2): 221-228, 2018 08.
Article in English | MEDLINE | ID: mdl-30041961

ABSTRACT

Life expectancy of patients treated for brain tumors has lengthened due to the therapeutic improvements. Cognitive impairment has been described following brain radiotherapy, but the mechanisms leading to this adverse event remain mostly unknown. Technical evolutions aim at enhancing the therapeutic ratio. Sparing of the healthy tissues has been improved using various approaches; however, few dose constraints have been established regarding brain structures associated with cognitive functions. The aims of this literature review are to report the main brain areas involved in cognitive adverse effects induced by radiotherapy as described in literature, to better understand brain radiosensitivity and to describe potential future improvements.


Subject(s)
Brain Neoplasms/radiotherapy , Cognitive Dysfunction/etiology , Aged , Brain/radiation effects , Cerebral Cortex/radiation effects , Cognition/radiation effects , Female , Humans , Male , Organ Sparing Treatments/methods , Organs at Risk , Radiation Dosage , Radiometry , White Matter/radiation effects
2.
BMC Neurol ; 15: 261, 2015 Dec 18.
Article in English | MEDLINE | ID: mdl-26684198

ABSTRACT

BACKGROUND: Radiotherapy is one of the most important treatments of primary and metastatic brain tumors. Unfortunately, it can involve moderate to severe complications among which leukoencephalopathy is very frequent and implies cognitive deficits such as memory, attention and executive dysfunctions. However, the incidence of this complication is not well established and the risk factors and process are poorly understood. The main objective of the study is to improve knowledge on radio-induced leukoencephalopathy based on pluridisciplinar approaches combining cognitive, biologic, imagery and dosimetric investigations. METHOD/DESIGN: The EpiBrainRad study is a prospective cohort study including newly diagnosed high grade gliomas patients treated by radiotherapy and concomitant-adjuvant temozolomide chemotherapy. Patients are included between their surgery and first day of radio-chemotherapy, and the follow-up lasts for 3 years after treatment. Cognitive functioning assessments, specific blood biomarkers measures and magnetic resonance imagery are performed at different moment during the follow-up, and a specific dosimetric assessment of organs involved in the beam fields is performed. Firstly, leukoencephalopathy incidence rate will be estimated in this population. Secondly, correlations between cognitive impairments and dosimetry, biomarkers ranges and anomalies on imagery will be analyzed in order to better understand the onset and evolution of cognitive decrement associated with radiotherapy. Furthermore, a new cognitive test, quickly and easily performed, will be studied to determine its sensibility to detect leukoencephalopathy decrement. DISCUSSION: With an original multidisciplinary approach, the EpiBrainRad study aims to improve knowledge on radio-induced leukoencephalopathy in order to improve its early diagnosis and prevention. The main challenge is to preserve quality-of-life after cancer treatments which imply to study the incidence of radiation-induced complications and their associated risk factors. TRIAL REGISTRATION: NCT02544178.


Subject(s)
Brain Neoplasms/therapy , Glioma/therapy , Leukoencephalopathies/diagnosis , Radiotherapy/adverse effects , Adult , Antineoplastic Agents, Alkylating/therapeutic use , Chemotherapy, Adjuvant , Cognition Disorders/diagnosis , Cognition Disorders/etiology , Cognition Disorders/prevention & control , Dacarbazine/analogs & derivatives , Dacarbazine/therapeutic use , Early Diagnosis , Female , Follow-Up Studies , Humans , Leukoencephalopathies/etiology , Leukoencephalopathies/prevention & control , Male , Prospective Studies , Temozolomide
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