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Hemorrhage Stroke Decision Making Model Based Deep Learning (BrainHemoAI System)

29 avril 2026 mis à jour par: Xingen Zhu, Second Affiliated Hospital of Nanchang University

Construction of an Integrated Intelligent Model for Spontaneous Intracerebral Hemorrhage Based on Deep Learning

Although hemorrhagic stroke also has the characteristics of high mortality and disability rates, and constitutes a major public health problem worldwide, there is a relative lack of in-depth research teams for hemorrhagic stroke in China. The current preoperative imaging evaluation of spontaneous cerebral hemorrhage is still limited to the traditional Tada formula, and there are subjective differences in diagnosis among different doctors, making it difficult to achieve homogenization in clinical decision-making. Hemorrhagic stroke is a common and frequently occurring disease in Jiangxi Province. Therefore, establishing a new diagnosis and treatment system focused on hemorrhagic stroke can not only fill the research gap in this field in China, improve the accuracy and homogeneity of hemorrhagic stroke diagnosis and treatment, but also promote related research progress to reduce the mortality and disability rates of this disease and improve the clinical prognosis of patients.

Aperçu de l'étude

Statut

Recrutement

Les conditions

Description détaillée

Hemorrhagic stroke is a serious cerebrovascular disease, accounting for about 20% of all strokes. It refers to cerebral hemorrhage and subarachnoid hemorrhage caused by intracranial vascular diseases such as intracranial aneurysms, cerebral and spinal vascular malformations and moyamoya disease under the effect of blood flow. It has the characteristics of high incidence rate, high disability rate and high mortality rate, and has caused huge economic burden to patients, families and society.

Hemorrhagic stroke is one of the high-risk diseases in Jiangxi Province, and has become a major public health challenge and a key social issue that urgently needs to be addressed. On the one hand, the diagnosis and treatment of hemorrhagic stroke have a certain degree of complexity, involving multiple disciplines, especially neurology and endocrinology, which have established multiple diagnostic, evaluation, treatment, and rehabilitation systems. Different systems have different focuses, but limited by the level of understanding of the disease, there have been only basic treatment principles for decades, and there has been no breakthrough in specific treatment plans. On the other hand, with the development of the economy and the improvement of living standards, clinical physicians and patients not only focus on the survival rate after hemorrhagic stroke, but also pay more attention to neurological function recovery and long-term quality of life. Due to the limitations of detection technology in the past, it was difficult to accurately describe diseases and truly develop individualized diagnosis and treatment plans, resulting in significant differences in patient prognosis. How to leverage advances in diagnosis and treatment technology to ultimately achieve precision, individualization, and homogenization in the diagnosis and treatment of hemorrhagic stroke is a key focus for the future.

Although hemorrhagic stroke also has the characteristics of high mortality and disability rates, and constitutes a major public health problem worldwide, there is a relative lack of in-depth research teams for hemorrhagic stroke in China. The current preoperative imaging evaluation of spontaneous cerebral hemorrhage is still limited to the traditional Tada formula, and there are subjective differences in diagnosis among different doctors, making it difficult to achieve homogenization in clinical decision-making. Hemorrhagic stroke is a common and frequently occurring disease in Jiangxi Province. Therefore, establishing a new diagnosis and treatment system focused on hemorrhagic stroke can not only fill the research gap in this field in China, improve the accuracy and homogeneity of hemorrhagic stroke diagnosis and treatment, but also promote related research progress to reduce the mortality and disability rates of this disease and improve the clinical prognosis of patients.

Type d'étude

Observationnel

Inscription (Estimé)

7100

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: Ping Hu, PhD;MD
  • Numéro de téléphone: 13207109734
  • E-mail: hp666edu@163.com

Sauvegarde des contacts de l'étude

Lieux d'étude

      • Nanchang, Chine
        • Recrutement
        • The Second Affiliated Hospital of Nanchang University
        • 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

Oui

Méthode d'échantillonnage

Échantillon non probabiliste

Population étudiée

Spontaneous hemorrhagic stroke, including parenchymal hemorrhage, subarachnoid hemorrhage, intraventricular hemorrhage, and subdural hemorrhage(including chronic subdural hemorrhage).

La description

Inclusion Criteria:

  1. Age >= 8 years old;
  2. Patients diagnosed with spontaneous hemorrhagic stroke based on medical history and auxiliary examinations;
  3. Received non-contrast computed tomography (NCCT) in the outpatient or emergency department;
  4. Treated in accordance with standard clinical guidelines during hospitalization;
  5. Have complete clinical data.

Exclusion Criteria:

  1. Had undergone surgical treatment in another hospital before admission;
  2. Was in a state of shock upon admission;
  3. Had severe heart, liver, or kidney dysfunction or other life-threatening systemic diseases;
  4. Died during hospitalization;
  5. Had an expected lifespan of less than six months or was unable to complete the study follow-up for other reasons.

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

Que mesure l'étude ?

Principaux critères de jugement

Mesure des résultats
Description de la mesure
Délai
Area Under Curve
Délai: 90-day and 180-day
90-day and 180-day mRS score, survival status, functional independence (Barthel index).
90-day and 180-day

Mesures de résultats secondaires

Mesure des résultats
Description de la mesure
Délai
Sensitivity ,Specificity,True Positive Rate,False Positive Rate
Délai: Baseline (admission), 24 hours postoperatively, 3 days postoperatively, 7 days postoperatively, discharge, 90-day follow-up, 180-day follow-up
Including hospital stay, ICU stay, hospitalization costs, rebleeding, delayed cerebral ischemia, intracranial infection, and hydrocephalus flow surgery needs
Baseline (admission), 24 hours postoperatively, 3 days postoperatively, 7 days postoperatively, discharge, 90-day follow-up, 180-day follow-up

Collaborateurs et enquêteurs

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

Publications et liens utiles

La personne responsable de la saisie des informations sur l'étude fournit volontairement ces publications. Il peut s'agir de tout ce qui concerne l'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 septembre 2022

Achèvement primaire (Estimé)

1 août 2026

Achèvement de l'étude (Estimé)

30 décembre 2026

Dates d'inscription aux études

Première soumission

29 avril 2026

Première soumission répondant aux critères de contrôle qualité

29 avril 2026

Première publication (Réel)

6 mai 2026

Mises à jour des dossiers d'étude

Dernière mise à jour publiée (Réel)

6 mai 2026

Dernière mise à jour soumise répondant aux critères de contrôle qualité

29 avril 2026

Dernière vérification

1 avril 2026

Plus d'information

Termes liés à cette étude

Plan pour les données individuelles des participants (IPD)

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

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Non

Étudie un produit d'appareil réglementé par la FDA américaine

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