Supplements

Intrahippocampal ripple propagation is proportionally greater in less-irritative non-seizure onset zone tissue than in epileptogenic hippocampus.

In a study of 49 patients with hippocampal contacts, intrahippocampal propagation of ripples on oscillations (RonO, 80-250 Hz) was highest in less-irritative non-SOZ tissue (less than 6 IED/min) compared to more-irritative non-SOZ (p<0.05) and seizure onset zone (p<0.001). This suggests RonO propagation may serve as a metric for hippocampal epileptogenicity along a continuous spectrum.

Last updated: Jul 9, 2026โ€ข0 RCTsโ€ข๐Ÿ“– Read as article โ†’

Evidence Score

Evidence Score34/100
Human RCTโ˜†โ˜†โ˜†โ˜†โ˜†
Meta-analysisโ˜†โ˜†โ˜†โ˜†โ˜†
Mechanismโ˜…โ˜…โ˜…โ˜…โ˜…
Safetyโ˜…โ˜…โ˜…โ˜…โ˜†
Confidencelow

Study Evidence

Study 1. Epileptogenicity alters intrahippocampal ripple propagation.

observational

Chen Y, Ye H, Ye L, Hu L, Chen C, Staba R, Wang S, Weiss SA ยท medRxiv : the preprint server for health sciences (2026)

Participants: N/A
Duration: N/A
Intervention: Comparison of hippocampal groups stratified by epileptogenicity: seizure onset zone (SOZ), more-irritative non-SOZ (>6 IED/min), and less-irritative non-SOZ (<6 IED/min).
Outcome: Proportion of statistically significant propagating RonO (80-250 Hz) and FRonO (250-600 Hz) originating from hippocampal contacts.
Effect Size: N/A (p-values reported: p<0.05 and p<0.001 for group comparisons)
Population: 49 patients (68 hemispheres) with verified hippocampal contacts undergoing non-REM sleep stereo-EEG.

Result:

Mechanism Graph

Hippocampal tissue is stratified by epileptogenicity based on IED rate and seizure onset.
โ†“
Empirical temporal networks of HFO propagation are constructed with 150 ms maximum latency.
โ†“
Significant propagation pathways are validated against 1,000 permutation-generated surrogates.
โ†“
Intrahippocampal RonO propagation proportion is highest in less-irritative non-SOZ tissue, indicating a continuous physiological-to-pathological spectrum.

Limitations

  • โš The study is based on a preprint and has not undergone peer review.
  • โš Distinguishing physiological from pathological RonO using signal features alone remains challenging, limiting clinical applicability.

Frequently Asked Questions

What are ripples on oscillations (RonO)?โ–ผ

RonO are high-frequency oscillations in the 80-250 Hz range that occur on top of slower brain oscillations, often studied in the context of epilepsy and memory.

How was hippocampal epileptogenicity measured in this study?โ–ผ

Hippocampi were stratified by excitability into three groups: seizure onset zone (SOZ), more-irritative non-SOZ (>6 interictal epileptiform discharges per minute), and less-irritative non-SOZ (<6 IED/min).

Did the study find differences in fast ripple propagation?โ–ผ

No, propagation proportions for fast ripples on oscillations (FRonO, 250-600 Hz) did not differ significantly across the hippocampal epileptogenicity spectrum, even though their rates were higher in SOZ.

What is the clinical implication of this finding?โ–ผ

Intrahippocampal RonO propagation may serve as a novel metric to quantify hippocampal epileptogenicity, potentially aiding in surgical planning for epilepsy patients.

Products

Affiliate links coming soon. We only recommend products that match the doses and forms used in the cited research.

References

  1. 1.Chen Y, Ye H, Ye L, Hu L, Chen C, Staba R, Wang S, Weiss SA. "Epileptogenicity alters intrahippocampal ripple propagation.." medRxiv : the preprint server for health sciences, 2026. PMID: 42369499 DOI: 10.64898/2026.06.13.26355594
Disclaimer: This content is for educational purposes only and is not medical advice. Evidence scores reflect the quality and quantity of available research, not clinical recommendations. Always consult a healthcare professional before starting any supplement or intervention.