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CONNEctome-guided Navigation for Eloquent-area Tumor Surgery Trial (CONNECT Trail)

A Prospective, Randomized, Controlled Superiority Trial of Connectome-Guided Navigation-Assisted Microsurgical Resection for Functional Preservation in Eloquent-Area Brain Tumors

This study is designed for patients with brain tumors located in eloquent brain areas involved in language, motor, or major functional brain networks. The purpose of the study is to determine whether connectome-guided navigation-assisted microsurgical resection can better preserve neurological function after surgery than conventional tractography-guided surgery.

Participants who meet the study criteria will be assigned to one of two surgical planning strategies. In the experimental group, patients will undergo preoperative diffusion tensor imaging and resting-state functional MRI for individualized brain network reconstruction, and these data will be integrated with intraoperative navigation and neurophysiological monitoring to guide the resection boundary. In the control group, surgery will be guided by conventional DTI tractography-assisted navigation.

The main outcome is the rate of postoperative functional preservation. Other outcomes include extent of tumor resection, postoperative complications, time to neurological recovery, overall survival, and quality of life. Patients will be evaluated before surgery and followed after surgery with clinical examinations, neurological assessments, and MRI at prespecified time points.

Aperçu de l'étude

Description détaillée

This is a prospective, randomized, controlled superiority trial designed to evaluate whether connectome-guided navigation-assisted microsurgical resection improves postoperative functional preservation in patients with tumors located in eloquent brain regions when compared with conventional tractography-guided surgery.

Brain tumors involving language areas, motor areas, or key large-scale functional networks present a major surgical challenge because maximal resection must be balanced against preservation of neurological function. Conventional neuronavigation based mainly on structural landmarks or tractography may be insufficient to fully characterize the topological relationship between the tumor and critical functional networks. This study therefore applies a connectome-informed surgical strategy that integrates preoperative structural and functional imaging with intraoperative guidance to support individualized surgical planning and functional protection.

Eligible patients are those with brain tumors involving language, motor, or major functional network regions, including the default mode network, central executive network, dorsal attention network, and ventral attention network, with Karnofsky Performance Status of at least 70 and preoperative MRI evidence of a spatial relationship between the tumor and major white matter tracts. Patients with non-neoplastic lesions, multifocal tumors, incomplete evaluation data, pregnancy-related conditions, or extensive adhesion to multiple key network nodes are excluded.

Participants are randomized in a 1:1 ratio to the experimental group or the control group. The experimental intervention includes preoperative DTI and resting-state functional MRI-based brain network reconstruction, intraoperative real-time navigation, electrophysiological monitoring, and resection planning based on network-informed boundaries. The control intervention consists of conventional DTI tractography-guided tumor resection.

The primary endpoint is postoperative functional preservation. Secondary endpoints include extent of resection, postoperative complication rate, time to neurological recovery, overall survival, progression-related outcomes, and quality of life. Exploratory analyses will assess postoperative dynamic changes in brain networks and functional compensation mechanisms using multimodal MRI data, including resting-state functional MRI and diffusion imaging.

Study assessments are performed at baseline, within 24 to 72 hours after surgery, and during postoperative follow-up at 1 month, 3 months, 6 months, and 1 year. MRI is used to evaluate extent of resection, while neurological examinations, performance scales, and clinical rating instruments are used to assess functional outcomes over time. Quality of life is assessed using validated cancer-related instruments during follow-up.

The planned total sample size is 200 participants, with 100 patients in each group, based on a superiority design using postoperative functional preservation as the primary endpoint. Data will be analyzed using predefined statistical methods, including descriptive statistics, between-group comparisons, survival analysis, and modeling of factors associated with postoperative neurological impairment.

Type d'étude

Interventionnel

Inscription (Estimé)

200

Phase

  • N'est pas applicable

Contacts et emplacements

Cette section fournit les coordonnées de ceux qui mènent l'étude et des informations sur le lieu où cette étude est menée.

Coordonnées de l'étude

  • Nom: Fengchun Mu
  • Numéro de téléphone: +8618888294650
  • E-mail: alicemfc@163.com

Lieux d'étude

      • Beijing, Chine, 100021
        • Recrutement
        • National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College
        • Contact:

Critères de participation

Les chercheurs recherchent des personnes qui correspondent à une certaine description, appelée critères d'éligibilité. Certains exemples de ces critères sont l'état de santé général d'une personne ou des traitements antérieurs.

Critère d'éligibilité

Âges éligibles pour étudier

  • Enfant
  • Adulte
  • Adulte plus âgé

Accepte les volontaires sains

Non

La description

Inclusion Criteria:

  1. Patients clinically diagnosed with brain tumors involving language areas, motor areas, or major functional brain networks, including the default mode network, central executive network, dorsal attention network, or ventral attention network.
  2. Karnofsky Performance Status (KPS) score of 70 or higher.
  3. Preoperative MRI demonstrating a spatial relationship between the tumor and major white matter tracts, such as the corticospinal tract or arcuate fasciculus.
  4. No other neurological disease or underlying condition that may cause neurological dysfunction.
  5. No prior treatment for a brain tumor in the same region, such as radiotherapy.
  6. Tumor not extensively adherent to multiple critical network nodes.
  7. Planned craniotomy for tumor resection and provision of written informed consent by the patient or legally authorized representative.

Exclusion Criteria:

  1. Pathologically or clinically suspected non-neoplastic brain lesion.
  2. Multifocal tumors.
  3. Incomplete evaluation data.
  4. Withdrawal from the study by the patient or legally authorized representative for any reason.
  5. Pregnancy, lactation, possibility of pregnancy, or planned pregnancy.

Plan d'étude

Cette section fournit des détails sur le plan d'étude, y compris la façon dont l'étude est conçue et ce que l'étude mesure.

Comment l'étude est-elle conçue ?

Détails de conception

  • Objectif principal: Traitement
  • Répartition: Randomisé
  • Modèle interventionnel: Affectation parallèle
  • Masquage: Aucun (étiquette ouverte)

Armes et Interventions

Groupe de participants / Bras
Intervention / Traitement
Expérimental: Connectome-Guided Surgery Group
Participants in this arm will undergo connectome-guided navigation-assisted microsurgical resection. The surgical strategy includes preoperative diffusion tensor imaging and resting-state functional MRI-based brain network reconstruction, integrated with intraoperative neuronavigation and neurophysiological monitoring to guide resection boundaries and optimize postoperative functional preservation.
Microsurgical resection of eloquent-area brain tumors guided by preoperative diffusion tensor imaging and resting-state functional MRI-based brain network reconstruction. The intervention integrates connectome-informed surgical planning, intraoperative neuronavigation, and neurophysiological monitoring to define individualized resection boundaries with the goal of maximizing tumor removal while preserving neurological function.
Autres noms:
  • Brain network-guided surgery
  • Connectome-guided surgery
  • DTI and rs-fMRI-guided tumor resection
Comparateur actif: Conventional Tractography-Guided Surgery Group
Participants in this arm will undergo conventional DTI tractography-guided microsurgical resection using standard surgical planning and navigation procedures. This group serves as the comparator for evaluating postoperative functional preservation and extent of resection.
Microsurgical resection of eloquent-area brain tumors guided by conventional diffusion tensor imaging tractography-assisted navigation according to standard surgical planning procedures. This intervention serves as the comparator for evaluation of postoperative functional preservation, extent of resection, and other clinical outcomes.
Autres noms:
  • Conventional tractography-guided surgery
  • DTI-guided microsurgical resection
  • Standard tractography-assisted tumor resection

Que mesure l'étude ?

Principaux critères de jugement

Mesure des résultats
Description de la mesure
Délai
Postoperative Functional Preservation Rate
Délai: 6 months after surgery
The proportion of participants with preservation of neurological function at 6 months after surgery compared with baseline, based on neurological examination and protocol-specified functional assessments.
6 months after surgery

Mesures de résultats secondaires

Mesure des résultats
Description de la mesure
Délai
Extent of Resection
Délai: Within 24 to 72 hours after surgery
Extent of tumor resection assessed on postoperative contrast-enhanced brain MRI performed within 24 to 72 hours after surgery.
Within 24 to 72 hours after surgery
Incidence of Postoperative Complications
Délai: Within 30 days after surgery
The incidence of surgery-related postoperative complications, including new or worsened neurological deficits, intracranial hemorrhage, brain edema, seizures, intracranial infection, deep vein thrombosis, and other protocol-defined adverse events.
Within 30 days after surgery

Collaborateurs et enquêteurs

C'est ici que vous trouverez les personnes et les organisations impliquées dans cette étude.

Dates d'enregistrement des études

Ces dates suivent la progression des dossiers d'étude et des soumissions de résultats sommaires à ClinicalTrials.gov. Les dossiers d'étude et les résultats rapportés sont examinés par la Bibliothèque nationale de médecine (NLM) pour s'assurer qu'ils répondent à des normes de contrôle de qualité spécifiques avant d'être publiés sur le site Web public.

Dates principales de l'étude

Début de l'étude (Réel)

1 novembre 2025

Achèvement primaire (Estimé)

31 décembre 2027

Achèvement de l'étude (Estimé)

31 décembre 2028

Dates d'inscription aux études

Première soumission

14 juin 2026

Première soumission répondant aux critères de contrôle qualité

14 juin 2026

Première publication (Réel)

18 juin 2026

Mises à jour des dossiers d'étude

Dernière mise à jour publiée (Réel)

18 juin 2026

Dernière mise à jour soumise répondant aux critères de contrôle qualité

14 juin 2026

Dernière vérification

1 novembre 2025

Plus d'information

Termes liés à cette étude

Plan pour les données individuelles des participants (IPD)

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INDÉCIS

Informations sur les médicaments et les dispositifs, documents d'étude

Étudie un produit pharmaceutique réglementé par la FDA américaine

Non

Étudie un produit d'appareil réglementé par la FDA américaine

Non

Ces informations ont été extraites directement du site Web clinicaltrials.gov sans aucune modification. Si vous avez des demandes de modification, de suppression ou de mise à jour des détails de votre étude, veuillez contacter register@clinicaltrials.gov. Dès qu'un changement est mis en œuvre sur clinicaltrials.gov, il sera également mis à jour automatiquement sur notre site Web .

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