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Background And Objectives: The present study aims to provide prenatal 2-dimensional ultrasonographic (2D-US) nomograms of the normal cerebellar area.
Materials And Methods: This is a prospective cross-sectional analysis of 252 normal singleton pregnancies, ranging from 13 to 39 weeks of gestation. The operator performed measurements of the fetal cerebellar area in the transverse plane using 2D-US. The relationship between cerebellar area and gestational age (GA) was determined through regression equations.
Results: A significant, strong positive correlation was investigated between the cerebellar area with GA (r-value = 0.89), and a positive correlation indicates that with increasing GA, the cerebellar area increased in all the participants of the study. Several 2D-US nomograms of the normal cerebellar area were provided, and an increase of 0.4% in the cerebellar area each week of GA was reported.
Conclusions: We presented information on the typical dimensions of the fetal cerebellar area throughout gestation. In future studies, it could be evaluated how the cerebellar area changes with cerebellar abnormalities. It should be established if calculating the cerebellar area in addition to the routine transverse cerebellar diameter may help in discriminating posterior fossa anomalies or even help to identify anomalies that would otherwise remain undetected.
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http://dx.doi.org/10.3390/jcm12124080 | DOI Listing |
Neuroscience
September 2025
Department of Psychology & Health Studies, University of Saskatchewan, Saskatoon, Canada. Electronic address:
Attentional processes are crucial to ensure successful reading, and theories of dyslexia propose that dysfunctional attention networks may contribute to the observed reading deficits. The goals of this study were to localize a region of the frontal-eye-field (FEF) involved in both reading and attention and examine its connectivity with regions in the reading and attention networks, given the known role of the FEF in attentional processes and theorized role in reading. In Experiment 1, we revisited the results of our previous hybrid reading and attention study.
View Article and Find Full Text PDFImaging Neurosci (Camb)
September 2025
Human Motor Control Section, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, United States.
Fatigability refers to the inability of the neuromuscular system to generate enough force to produce movements to meet task challenges. Fatigability has a central and a peripheral component linked via the neuromuscular system, but how these two components interact as fatigue develops lacks a complete understanding. The effects of fatigability are experienced in healthy humans but also accompany various disorders, often exacerbating their symptoms.
View Article and Find Full Text PDFMov Disord Clin Pract
September 2025
Department of Neurology, School of Medical Sciences - University of Campinas (UNICAMP), Campinas, Brazil.
Background: The progression of brain damage in CANVAS/RFC1 remains unclear.
Objective: To describe longitudinal brain changes in CANVAS/RFC1.
Methods: Ten RFC1-positive patients and 10 controls underwent 3T-MRI scans 2 years apart.
Cerebellum
September 2025
Human Genetics Laboratory, School of Health Sciences, University of the State of Amazonas - Avenida Carvalho Leal, 1777, Manaus, 69065-001, AM, Brazil.
The Spinocerebellar Ataxias (SCAs) are a group of hereditary neurodegenerative diseases that show a variable distribution among distinct ethnicities and geographic regions. In Brazil, a large and highly admixed country, the prevalence of SCAs has been investigated mostly in limited areas. Here we characterized the frequencies of SCA types in the state of Amazonas, as well as the geographic origin of SCA families, and compared them to the literature data available about the frequency of SCAs in other Brazilian regions.
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