Skip to content

Neurocognition After Radiotherapy in CNS- and Skull-base Tumors

Neurocognition After Radiotherapy in Adult Brain and Base of Skull Tumors

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05727605
Acronym
NARCiS
Enrollment
120
Registered
2023-02-14
Start date
2023-02-08
Completion date
2027-02-01
Last updated
2024-05-08

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Brain Tumor, Cognition, Glioma, Magnetic Resonance Imaging, Meningioma, Pituitary Adenoma

Brief summary

The goal of this multicenter prospective longitudinal study is to study the long-term impact of multimodal treatment (chemotherapy, radiotherapy and surgery) in adult brain and base of skull tumors on neurocognitive functioning. All included patients will complete a self-report inventory (subjective cognitive functioning, QoL, confounders), a cognitive test battery, an advanced MR at multiple timepoints. Moreover, toxicity will be scored according to the CTCAEv5.0 in these patients over time.

Detailed description

This study will combine MR imaging techniques together with elaborate neuropsychological assessments and RT dosimetry in 120 patients who will be examined baseline (before RT) and followed longitudinally after RT. The first objective is to build an NTCP model for neurocognitive decline after RT (for each cognitive domain separately), linking dose-volume parameters to structures within the brain susceptible to neurological damage and neurocognitive decline after radiotherapy. These NTCP models can be used to make predictions on neurocognitive decline in future primary brain tumour patients receiving cranial RT. The second objective is to evaluate dose-dependent neurocognitive decline. In particular, the investigators will assess: * Prevalence and severity of neurocognitive decline after RT for all cognitive domains * Brain structures or functional brain connections important in neurocognitive functioning (based on dedicated MRI). * Dose-dependencies of specific neurocognitive skills after RT in adult brain tumour patients * Correlations between RT dosimetry and early brain changes (MRI)

Interventions

BEHAVIORALNeurocognitive tests: WAIS digit span, HVLT-R, COWAT, MOCA, WAIS digit symbol substitution, TMT A&B, Stroop Color Word Test

Primary brain tumour patients will be evaluated longitudinally at the following timepoints: baseline (minimal 4 weeks after surgery, before radiotherapy), three months after end of radiotherapy, 1 year after end of radiotherapy and 2 years after end of radiotherapy. At each visit, neurocognitive testing, a self-report inventory and/or advanced MR imaging will take place. Time points: baseline, 12 months post-radiotherapy and 24 months post-radiotherapy

DIAGNOSTIC_TESTMRI

Advanced MRI: all participants will be scanned on a 3T Siemens of Philips MR scanner (multicenter protocol): MPRAGE, FLAIR, T2, DWI, rsfMRI, SWI & ASL Time points: baseline, 3 months post-radiotherapy and 12 months post-radiotherapy

BEHAVIORALQuestionnaires: EORTC QLQ C30 & BN20, STAI, CFQ, BDI-II, BRIEF-A, FACIT-F, PSQI

Time points: baseline, 12 months post-radiotherapy and 24 months post-radiotherapy

OTHERToxicity scoring

During and after radiotherapy and at at the end of the study, adverse events will be monitored using CTCAEv5.0.

Sponsors

University Hospital, Ghent
CollaboratorOTHER
Gasthuis Zusters Antwerpen
CollaboratorOTHER
Universitaire Ziekenhuizen KU Leuven
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Adult patients (≥ 18 years at the time of diagnosis) with a primary brain or base of skull tumour, who are amenable for conventionally fractionated radiotherapy (photon or proton irradiation)

Exclusion criteria

* Patients with tumours with poor prognostic characteristics: * Incompletely resected IDH-wild-type glioma * Completely resected IDH-wild-type and MGMT-promotor unmethylated glioma * grade III meningioma * H3K27M+ midline glioma * Patients with tumours requiring craniospinal irradiation (CSI)/whole ventricular irradiation (WVI) * Hypofractionated/stereotactic radiation (fraction sizes \> 2 Gy per fraction) * Inability to perform the cognitive tests or self-report inventories because of motor/sensory deficits or insufficient Dutch language proficiency * Mental retardation documented before diagnosis * Pre-diagnosis/pre-existing psychiatric diagnosis resulting in cognitive deficits like psychoses, neurodevelopmental disorders (autism/learning disorders) * Relapse previously treated by chemo and/or radiation therapy * Genetic syndrome (e.g. Down) * Unable to perform MR imaging (claustrophobia, metallic implants like pacemaker/ICD/neurostimulator)

Design outcomes

Primary

MeasureTime frameDescription
Prevalence of neurocognitive decline (changes in z-scores) compared to baseline at one year post-radiotherapy, for all cognitive domains (memory, executive functioning, attention and language)2 years
Development of a Normal Tissue Complication Probability model (NTCP-model) for each cognitive domain (memory, executive functioning, attention and language)4 yearsConstruct NTCP models to predict neurocognitive decline based on RT dosimetric and other explanatory variables (gender, age at diagnosis, comorbidities, level of education, social factors such as social activity and occupation, tumour size and localization, pathological/genetic/molecular characteristics, therapy protocols (surgery, radiotherapy and/or chemotherapy)) in an NTCP model for each cognitive domain

Secondary

MeasureTime frameDescription
Early (3 months post-radiotherapy) changes identified on structural and functional MR imaging (graph measures)4 yearsChanges on advanced MR imaging at 3 months post-RT compared to baseline
Late (12 months post-radiotherapy) changes identified on structural and functional MR imaging (graph measures)4 yearsChanges on advanced MR imaging at 12 months post-RT compared to baseline

Countries

Belgium

Contacts

Primary ContactLaurien De Roeck, MD
Laurien.deroeck@uzleuven.be016 34 76 00
Backup ContactMaarten Lambrecht, MD PhD
Maarten.lambrecht@uzleuven.be016 34 76 00

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026