Multiparametric Diagnostic Model of Thick-section Clinical-quality MRI Data in Detecting Migraine Without Aura
- Conditions
- Migraine Without Aura
- Registration Number
- NCT03570086
- Lead Sponsor
- Xidian University
- Brief Summary
Recently, radiomics combined with machine learning method has been widely used in clinical practice. Compared with traditional imaging studies that explore the underlying mechanisms, the machine learning method focuses on classification and prediction to propose personalized diagnosis and treatment strategies. However, these studies were based on thin-section research-quality brain MR imaging with section thickness of \< 2 mm. Clinical, the usage of thick-section clinical setting instead of thin-section research setting is especially important to shorten the acquisition time to reduce the patient's suffering. Here investigators want to build multiparametric diagnostic model of migraineurs without aura using radiomics features extracted from thick-section clinical-quality brain MR images.
- Detailed Description
Not available
Recruitment & Eligibility
- Status
- UNKNOWN
- Sex
- All
- Target Recruitment
- 400
- right-handed
- International Headache Society criteria for episodic migraine without aura
- addition (including alcohol, nicotine, or drug)
- physical illness
Study & Design
- Study Type
- OBSERVATIONAL
- Study Design
- Not specified
- Primary Outcome Measures
Name Time Method accuracy 2018.7-2019.12 a measure of statistical bias which measures the proportion of health controls and migrainures that are correctly identified as such.
specificity 2018.7-2019.12 true negative rate measures the proportion of actual health controls that are correctly identified as such.
sensitivity 2018.7-2019.12 true positive rate of detection in migraineurs which measures the proportion of actual migraineurs that are correctly identified as such.
- Secondary Outcome Measures
Name Time Method
Related Research Topics
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Trial Locations
- Locations (1)
Xijing Hospital
🇨🇳Xi'an, Shaanxi, China
Xijing Hospital🇨🇳Xi'an, Shaanxi, China