HOUSE_OVERSIGHT_013711.jpg
1.77 MB
Extraction Summary
5
People
1
Organizations
0
Locations
1
Events
2
Relationships
2
Quotes
Document Information
Type:
Scientific publication / evidentiary document
File Size:
1.77 MB
Summary
This document is page 211 of a scientific text discussing statistical descriptors (Hurst exponent, Fano factors) in biological dynamics. It details research by Liebovitch and Sullivan regarding membrane ion conductance channels and power law scaling. The page bears a 'HOUSE_OVERSIGHT' Bates stamp, indicating it was part of an evidentiary production, likely related to investigations into Jeffrey Epstein's connections to the scientific community or funding.
People (5)
| Name | Role | Context |
|---|---|---|
| Liebovitch | Researcher/Author |
Cited in text regarding biological dynamics and membrane ion conductance channels (1998, 1987, 1989).
|
| Sullivan | Researcher |
Co-author cited with Liebovitch (1987; 1989).
|
| Careri | Researcher |
Cited regarding autonomous protein motion (1975).
|
| Gurd | Researcher |
Cited regarding autonomous protein motion (1979).
|
| Rothgeb | Researcher |
Cited regarding autonomous protein motion (1979).
|
Organizations (1)
| Name | Type | Context |
|---|---|---|
| House Oversight Committee |
Indicated by the Bates stamp 'HOUSE_OVERSIGHT_013711' at the bottom right.
|
Timeline (1 events)
1987; 1989
Experiments using analogue to digital transformation of current recordings from corneal epithelial channels and potassium channels in mouse hippocampal cells.
Laboratory (implied)
Relationships (2)
Cited together in research from 1987 and 1989.
Key Quotes (2)
"We see that the Hurst exponent, Fano and Allen factors, Levy exponent and power spectral scaling exponent are kindred statistical descriptors."Source
HOUSE_OVERSIGHT_013711.jpg
Quote #1
"Liebovitch (and Sullivan, 1987; 1989) used analogue to digital transformation of current recordings... and found similarly shaped, α < 2, nonconvergent distributions across temporal scales."Source
HOUSE_OVERSIGHT_013711.jpg
Quote #2
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