Amazon cover image
Image from Amazon.com

A Life of Ernest Starling [electronic resource] / by John Henderson.

By: Contributor(s): Series: People and Ideas SeriesPublisher: New York, NY : Springer New York : Imprint: Springer, 2005Description: 256 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781461475262
Subject(s): Genre/Form: DDC classification:
  • 612 23
LOC classification:
  • QP34-38
Online resources:
Contents:
Prelude -- Hearts and Capillaries -- 1890–1899 -- Secretin, Politics, and the New Institute -- Starling’s Law and Related Matters -- Interlude: The Haldane Commission (1910–13) -- The Great War -- 1918–1920 -- Back to Research -- The End of the Trail -- A Life Surveyed.
In: Springer eBooksSummary: Ernest Starling (1866-1927) was pre-eminent in the golden age of British Physiology. His name is usually associated with his "Law of the Heart,” but his discovery of secretin (the first hormone whose mode of action was explained) and his work on capillaries were more important contributions. He coined the word 'hormone' one hundred years ago. His analysis of capillary function demonstrated that equal and opposite forces move across the capillary wall--an outward (hydrostatic) force and an inward (osmotic) force derived from plasma proteins.
Item type: eBooks
Star ratings
    Average rating: 0.0 (0 votes)
No physical items for this record

Prelude -- Hearts and Capillaries -- 1890–1899 -- Secretin, Politics, and the New Institute -- Starling’s Law and Related Matters -- Interlude: The Haldane Commission (1910–13) -- The Great War -- 1918–1920 -- Back to Research -- The End of the Trail -- A Life Surveyed.

Ernest Starling (1866-1927) was pre-eminent in the golden age of British Physiology. His name is usually associated with his "Law of the Heart,” but his discovery of secretin (the first hormone whose mode of action was explained) and his work on capillaries were more important contributions. He coined the word 'hormone' one hundred years ago. His analysis of capillary function demonstrated that equal and opposite forces move across the capillary wall--an outward (hydrostatic) force and an inward (osmotic) force derived from plasma proteins.

Copyright © 2020 Alfaisal University Library. All Rights Reserved.
Tel: +966 11 2158948 Fax: +966 11 2157910 Email:
librarian@alfaisal.edu