Related Experiment Video
Updated: Aug 2, 2026

16:31
Fixed Volume or Fixed Pressure: A Murine Model of Hemorrhagic Shock
Published on: June 6, 2011
[Outline of general shock theory]
Patologicheskaia Fiziologiia I Eksperimental'Naia Terapiia
|October 2, 2003
Summary
Organisms exhibit a protective torpid syndrome when dangerously affected, but this ancient reaction conflicts with advanced brain functions, leading to shock syndrome. Effective anti-shock therapy is crucial for survival.
Area of Science:
- Physiology
- Pathology
Context:
- The organism's response to extreme danger involves ancient hypobiotic protective reactions.
- Superior brain formations are evolutionarily unsuited to hypobiotic conditions.
Purpose:
- To explore the functional conflict between new and old regulatory systems during dangerous physiological stress.
- To describe the development and characteristics of shock syndrome as a pathological outcome.
Summary:
- Extreme danger triggers a hypobiotic torpid syndrome, an ancient protective reaction.
- This reaction conflicts with evolved brain functions, creating a regulatory imbalance.
- Pathological regulation leads to a stereotypical shock syndrome, which paradoxically preserves life by preventing immediate death.
Impact:
- Shock syndrome, while pathological, is vital for immediate survival post-insult.
- Successful outcomes depend on adequate anti-shock therapy, biological reserves, and organ deficiency severity.
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