Mouse Hippocampal Mitochondrial and Neuronal Data After Whole-Brain Radiation and Fasting
by Yaqi Li·Updated 23d ago
761.5 KB1files
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Description
A 761.5 KB document details a study on intermittent fasting's effects on radiation-induced brain injury in mice. Author Yaqi Li published the supplementary file on figshare under a CC-BY-4.0 license, last updated May 14, 2026. The research evaluated mitochondrial swelling, ATP concentrations, neurogenesis, and cognitive behavior in C57BL/6J mice at 6 hours and 6 weeks post-irradiation.
Use Cases
Analyzing the relationship between intermittent fasting and mitochondrial ultrastructure changes based on electron microscopy data.
Modeling the time-dependent effects of dietary intervention on neurogenesis based on DCX+ neuron counts and morphology.
Investigating behavioral outcomes of neuroprotective strategies based on elevated plus-maze test results.
Correlating ATP concentration levels with neuronal structural integrity metrics like branch points and neuron length.
Strengths
The study design includes specific, timed measurements at 6 hours and 6 weeks post-intervention.
Results are supported by statistical p-values for multiple outcome measures, including mitochondrial swelling and neuron morphology.
The document is openly licensed under CC-BY-4.0 for reuse.
Limitations
The dataset is a 761.5 KB DOCX file containing textual results, not a structured data table; column-level documentation is absent.
Row count is unknown, which may limit suitability assessment for quantitative analysis.
The data is derived from a specific mouse model (C57BL/6J), which may limit generalizability.
Provenance
Source
Yaqi Li via figshare.
Collection Method
Experimental study using a whole-brain radiotherapy mouse model with intermittent fasting intervention.
Time Range
Measurements taken at 6 hours and 6 weeks post-irradiation.
Freshness
Last updated 2026-05-14 05:43:23; freshness should be verified.
Data is presented in a DOCX document format; extraction of quantitative results may require manual parsing.