Zdanovskis, N.;                     Kaļva, K.;                     Platkājis, A.;                     Kostiks, A.;                     Šneidere, K.;                     Karelis, G.;                     Stepens, A.    
        Fractional Anisotropy Alterations in Key White Matter Pathways Associated with Cognitive Performance Assessed by MoCA. Neurol. Int. 2025, 17, 154.
    https://doi.org/10.3390/neurolint17100154
    AMA Style
    
                                Zdanovskis N,                                 Kaļva K,                                 Platkājis A,                                 Kostiks A,                                 Šneidere K,                                 Karelis G,                                 Stepens A.        
                Fractional Anisotropy Alterations in Key White Matter Pathways Associated with Cognitive Performance Assessed by MoCA. Neurology International. 2025; 17(10):154.
        https://doi.org/10.3390/neurolint17100154
    
    Chicago/Turabian Style
    
                                Zdanovskis, Nauris,                                 Kalvis Kaļva,                                 Ardis Platkājis,                                 Andrejs Kostiks,                                 Kristīne Šneidere,                                 Guntis Karelis,                                 and Ainārs Stepens.        
                2025. "Fractional Anisotropy Alterations in Key White Matter Pathways Associated with Cognitive Performance Assessed by MoCA" Neurology International 17, no. 10: 154.
        https://doi.org/10.3390/neurolint17100154
    
    APA Style
    
                                Zdanovskis, N.,                                 Kaļva, K.,                                 Platkājis, A.,                                 Kostiks, A.,                                 Šneidere, K.,                                 Karelis, G.,                                 & Stepens, A.        
        
        (2025). Fractional Anisotropy Alterations in Key White Matter Pathways Associated with Cognitive Performance Assessed by MoCA. Neurology International, 17(10), 154.
        https://doi.org/10.3390/neurolint17100154