Oxygen deprivation alters neural firing rates and induces synaptic failure
Oxygen deprivation disrupts normal neural function, leading to altered firing patterns and synaptic failure.
The claim states that oxygen deprivation alters neural firing rates and induces synaptic failure. Paper [0] directly demonstrates that oxygen-glucose deprivation results in the cessation of synaptic transmission and mitochondrial/neuronal dysfunction. Paper [4] shows that intermittent hypoxia alters functional electrical activity and causes structural/functional anomalies in neural and muscular circuits. No retrieved papers refute the connection between oxygen deprivation and impaired neural/synaptic function.
Yuliya V. Medvedeva, Bin Lin, C. William Shuttleworth, John H. Weiss. Intracellular Zn<sup>2+</sup>Accumulation Contributes to Synaptic Failure, Mitochondrial Depolarization, and Cell Death in an Acute Slice Oxygen–Glucose Deprivation Model of Ischemia. 2009. https://doi.org/10.1523/jneurosci.4604-08.2009
This study demonstrates that oxygen-glucose deprivation leads to mitochondrial dysfunction and the cessation of synaptic transmission (synaptic failure) in hippocampal neurons.
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Zhang W, Yu L, Pan J, Deng J, Tong X, Zhao B, Liu W, Sun L, Zhang M, Han X, Liu T, Lu Y, Li J, Liu Y. Geometrically-engineered human motor assembloids-on-a-chip for neuromuscular interaction readout and hypoxia-driven disease modeling.. 2025. https://doi.org/10.1038/s41467-025-63736-0
This study shows that oxygen deprivation causes structural anomalies, muscle remodeling, and functional abnormalities in neuromuscular networks.
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