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Modeling of the Response to Hypofractionated Stereotactic Pulmonary Irradiation

Multiscale Modeling / Simulation of the Response to Pulmonary Stereotactic Hypofractionated Irradiation

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03175861
Acronym
MUMOFRAT
Enrollment
60
Registered
2017-06-05
Start date
2017-06-14
Completion date
2020-06-30
Last updated
2018-10-19

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

Conditions

Oncology

Brief summary

Identify 18-Fluorodeoxyglucose (18F-FDG) positron emission tomography-computed tomography (PET-CT) parameters predictive of tumor response and local control

Detailed description

The identification of robust prognostic and predictive markers could allow the individualization of pulmonary stereotactic radiotherapy treatments and the selection of patients at high risk of relapse, who could then benefit from a dose escalation in order to increase the chances of local control . Beyond the pulmonary RTS (Radiotherapy in stereotactic condition), this study will aim to generate one or more models of multi-scale response to hypofractionated irradiation from biomarkers (biological or images) extracted from preclinical or clinical literature data and to allow simulations of Various modified fractionation irradiation schemes, potentially leading to new regimens that reduce side effects and increase therapeutic efficacy.

Interventions

OTHERStereotactic radiotherapy

The patient will have an initial pre-therapeutic assessment in the 8 weeks before the start of radiotherapy Then, radiation therapy planning with 3 free breathing 4D (4 dimensions) scanners performed over 8 days without injection of iodinated contrast agent. Then the patient will receive his treatment by conventional stereotactic radiotherapy

Sponsors

University Hospital, Brest
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* Age\> 18 years * Performance Index WHO (World Health Organization) ≤ 2 * Bronchopulmonary carcinoma not in small cells proved histologically or cytologically (epidermoid, adenocarcinoma, or large cell carcinoma). * Tumor classified T1 - T2 (Tumor=1-2) N0 (Node=0) M0 (Metastasis=0) and diameter ≤ 5 cm or Tumor classified T3 (≤5cm) N0M0 of the chest wall * Tumor located more than 2 cm from the trachea and bronchus stem and more than 1.5 cm from the organs at risk * Medically inoperable or refusing surgery * Indication of stereotactic radiotherapy validated in multidisciplinary consultation meeting * Formulation of consent

Exclusion criteria

* Age \<18 years. * History of pulmonary irradiation * Pulmonary surgery of the tumor * Different histology of non-small cell carcinoma * Patient with a T2 or T3\> 5 cm tumor or patients with a T3 tumor invading a structure other than the chest wall * Patient with a tumor within 2 cm of the trachea and bronchus stem and within 1.5 cm of the organs at risk in the proximal area of the no fly zone (defined as a volume Located 2 cm in all directions of the proximal bronchial tree - Pulmonary metastases * Declared pregnancy, breast-feeding * Refusal to use effective contraception * Against indication to the realization of the PET to the 18FDG (18-fluorodeoxyglucose)(uncontrolled diabetes) * Refusal or inability to consent to participate in the study. * Estimated life expectancy \<2 months in the absence of treatment * Other invasive tumors diagnosed in the previous 2 years, with the exception of non-melanocytic cutaneous carcinomas.

Design outcomes

Primary

MeasureTime frameDescription
Kinetics of PET-CT parameters : standardized uptake value (SUV) max2 yearsSUV max will be measured before and after stereotactic irradiation.
Tumor metabolic response2 yearsTumor metabolic response, as assessed on 18F-FDG PET-CT at 6 months of end of radiotherapy
Local control2 yearsLocal control defined by the absence of progression in the irradiated area
Kinetics of PET-CT parameters : metabolic tumor volume2 yearsMetabolic tumor volume (MTV) will be measured before and after stereotactic irradiation.
Kinetics of PET-CT parameters : texture parameters :quantitative extraction of images by specific software2 yearsThe first-order form parameters and statistical parameters, the second order (based on the matrix of co-occurrence of the grey levels and the matrix of differences of grey levels) and of the third order (based on the matrices of alignment of the grey levels and the matrices of sizes of zones) will be studied.

Secondary

MeasureTime frameDescription
Survival without metastasis at a distance2 yearsThe survival without metastasis will be observed
Kinetics of serum markers2 yearsThe kinectic will be measured
Radiation-induced toxicity2 yearsThe radiation-induced toxicity will be observed
Predictive power of serum markers for tumor response and local control2 yearsThis predictive power will be measured
Predictive power of metabolic imaging parameters for tumor response and local control Predictive power of metabolic imaging parameters for tumor response and local control2 yearsThis predictive power will be measured
Correlation between these parameters2 yearsThe correlation will be measured
Survival in disease2 yearsThe survival in desease will be observed

Countries

France

Contacts

Primary ContactUlrike Schick, Doctor
ulrike.schick@chu-brest.fr0298223398

Outcome results

None listed

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