Related Experiment Video
Updated: Jan 28, 2026

Measuring Neural and Behavioral Activity During Ongoing Computerized Social Interactions: An Examination of Event-Related Brain Potentials
Published on: November 15, 2014
Glymphatic Dysfunction Coupled with Altered Neural Activity in High Myopia: Multimodal Study of Brain-Eye
Xiaopan Zhang1,2, Liang Liu1, Shaoqiang Han1
1Department of Magnetic Resonance Imaging, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
None:
High myopia is a serious global health issue, with particularly significant impacts on the central nervous system. However, the role of glymphatic system dysfunction and associated neural alterations in high myopia remains largely unexplored, and the underlying brain-eye pathological interactions are poorly understood. Our multimodal magnetic resonance imaging (MRI) study integrates diffusion tensor image analysis along the perivascular space (DTI-ALPS), choroid plexus volumetry, and regional homogeneity (ReHo) analyses to evaluate glymphatic function and neural activity changes in high myopia. Compared to controls, patients exhibited significantly reduced DTI-ALPS indices, enlarged choroid plexus volumes, and distinct ReHo alterations, including increased activity in the superior frontal gyrus, but decreased activity in the calcarine fissure and surrounding cortex, as well as the superior temporal gyrus. Notably, the DTI-ALPS index correlated positively with refractive error but negatively with axial length, whereas choroid plexus volume showed the opposite pattern. Furthermore, glymphatic dysfunction correlated with abnormal ReHo in key brain regions. These findings indicate a pathological cascade linking axial elongation, impaired glymphatic clearance, and disrupted neural synchronization-a pathophysiological state that may underlie the broader neurological risks associated with high myopia. This framework integrates multimodal evidence to elucidate brain-eye interactions, incorporating complementary insights derived from structural, diffusion, and functional MRI methodologies.
More Related Videos
05:26Author Spotlight: Exploring Press Needle Efficacy and Underlying Molecular Pathways
Published on: April 12, 2024
11:14A Novel Experimental and Analytical Approach to the Multimodal Neural Decoding of Intent During Social Interaction in Freely-behaving Human Infants
Published on: October 4, 2015
Related Concept Videos
G-protein Coupled Receptors
Neural Regulation
Alterations in Respiration II
In Biot's breathing, the respiratory rate and depth are irregular, alternating between periods of deep gasping and apnea. Common causes...
Altered States of Awareness
The ingestion of substances like stimulants or hallucinogens leads to chemical alterations in the brain...
Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)
The central atom need not be NMR-active because its electrons are affected by the electron polarization of the spin-active atoms. However, spin information is transmitted less effectively than in one-bond coupling, and 2J values are usually weaker than 1J values. The energy of...
Spin–Spin Coupling: Three-Bond Coupling (Vicinal Coupling)
The extent of coupling depends on the C‑C bond length, the two H‑C‑C angles, any electron-withdrawing substituents, and the dihedral angle between the involved orbitals. The...