Edge Rewrite
// HTMLRewriter · presentation

This page was redesigned at the edge.

Cloudflare fetched the original article and streamed it through HTMLRewriter to apply an entirely new visual system without rebuilding the source page.

// request.cf · coarse context

A page that knows where it met you.

Only coarse request metadata is shown. This demo does not display or persist visitor IP addresses.

Country
US
Cloudflare location
CMH
Connection
HTTP/2
Language
Not provided

Ray ID: a223647cc871cf5b

Jump to content

// Workers AI · dad joke modeWho's Richard Altmann? Alt-mann, he's a different guy.

From Wikipedia, the free encyclopedia
Richard Altmann
Born(1852-03-12)12 March 1852
Died8 December 1900(1900-12-08) (aged 48)
OccupationsPathologist, histologist

Richard Altmann (12 March 1852 8 December 1900) was a German pathologist and histologist from Deutsch Eylau in the Province of Prussia.

Altmann studied medicine in Greifswald, Königsberg, Marburg, and Giessen, obtaining a doctorate at the University of Giessen in 1877. He then worked as a prosector at Leipzig, and in 1887 became an anatomy professor (extraordinary). He died in Hubertusburg in 1900 from a nervous disorder.

He improved fixation methods, for instance, his solution of potassium dichromate and osmium tetroxide.[1] Using that along with a new staining technique of applying acid-fuchsin contrasted by picric acid amid delicate heating, he observed filaments in the nearly all cell types, developed from granules.[1][2] He named the granules "bioblasts", and explained them as the elementary living units, having metabolic and genetic autonomy, in his 1890 book "Die Elementarorganismen" ("The Elementary Organism").[3][4] His explanation drew much skepticism and harsh criticism.[5] Altmann's granules are now believed to be mitochondria.[6][7]

He is credited with coining the term "nucleic acid" in 1889, replacing Friedrich Miescher's term "nuclein" when it was demonstrated that nuclein was acidic.[8]

Books

[edit]

Notes

[edit]
  1. 1 2 William Bechtel, Discovering Cell Mechanisms: The Creation of Modern Cell Biology (New York: Cambridge University Press, 2009), pp 80–83.
  2. Erik Nordenskiöld, The History of Biology (New York: Knopf, 1935), pp 538–39.
  3. Richard Altmann, Die Elementarorganismen und ihre Beziehungen zu den Zellen [The cellular organelles and their relations to cells], (Leipzig, Germany: Veit & Co., 1890), p. 125. From p. 125: "Da auch sonst mancherlei Umstände dafür sprechen, dass Mikroorganismen und Granula einander gleichwerthig sind und Elementarorganismen vorstellen, welche sich überall finden, wo lebendige Kräfte ausgelöst werden, so wollen wir sie mit dem gemeinschaftlichen Namen der Bioblasten bezeichnen." (Since in other ways as well various circumstances indicate that microörganisms and granula are equivalent to each other and represent elementary organisms, which are found wherever living forces are initiated, then we will designate them with the common name of "bioblasts".) Available on-line at: Deutsches Textarchiv, Berlin
  4. O'Rourke, B. (2010). "From bioblasts to mitochondria: ever expanding roles of mitochondria in cell physiology". Frontiers in Physiology. 1: 7. doi:10.3389/fphys.2010.00007. PMC 3059936. PMID 21423350.
  5. Wilson, Edmund B. (1900). The Cell in Development and Inheritance (2nd ed.). New York: Macmillan Co. pp. 289–291.
  6. "Altmann's granules", Merriam–Webster, Accessed online: 30 Aug 2013.
  7. Jan Sapp, "Mitochondria and their host", in W F Martin & M Müller, eds, Origin of Mitochondria and Hydrogenosomes (Heidelberg: Springer, 2007), pp 57–59.
  8. Gribbin, John (2002). The Scientists: A History of Science Told Through the Lives of Its Greatest Inventors. New York: Random House. p. 546. ISBN 0812967887.

References

[edit]