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the claim

Colloid osmotic pressure helps maintain fluid inside blood vessels by opposing hydrostatic pressure

the verdict
SUPPORTED
the evidence backs this
Recorded sources
5 sources for · 0 against

Counts group repeated records of the same source within each side. They do not measure evidence strength or source independence.

Colloid osmotic pressure acts as an oncotic force that helps retain fluid within blood vessels by counterbalancing capillary hydrostatic pressure, as described by the Starling principle.

The analysis

The claim is a fundamental physiological principle (part of the Starling equation) supported extensively in the literature where hydrostatic and colloid osmotic pressures interact to govern transvascular fluid exchange.

Evidence for · 5
Recorded source metadata

D. T. Trung, H. Trieu, B. Wills. Microvascular Fluid Exchange: Implications of the Revised Starling Model for Resuscitation of Dengue Shock Syndrome. 2020. https://doi.org/10.3389/fmed.2020.601520

The classic Starling hypothesis states that opposing hydrostatic and oncotic forces determine fluid flow across the microvascular barrier.

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More for · 4
Recorded source metadata

C Charles Michel, Thomas E Woodcock, Fitz-Roy E Curry. Understanding and extending the Starling principle.. 2020. https://doi.org/10.1111/aas.13603

The Starling principle indicates that fluid movements between blood and tissues are determined by differences in hydrostatic and colloid osmotic pressures.

Recorded source metadata

J L Vincent. The colloid-crystalloid controversy.. 1991. https://pubmed.ncbi.nlm.nih.gov/1813704/

Maintenance of the colloid osmotic pressure can limit the development of pulmonary edema when the hydrostatic pressure is raised.

Recorded source metadata

Carl-Henrik Nordström. Physiological and biochemical principles underlying volume-targeted therapy--the "Lund concept".. 2005. https://doi.org/10.1385/NCC:2:1:083

The balance between effective transcapillary hydrostatic and osmotic pressures constitutes the driving force for transcapillary fluid exchange.

Recorded source metadata

P-O Grände, B Asgeirsson, C-H Nordström. Volume-targeted therapy of increased intracranial pressure: the Lund concept unifies surgical and non-surgical treatments.. 2002. https://doi.org/10.1034/j.1399-6576.2002.460802.x

The driving force for transcapillary fluid exchange is determined by the balance between effective transcapillary hydrostatic and osmotic pressures.

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first checked31 Jul 2026
judged → SUPPORTED · 8031 Jul 2026
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