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Year Number of Results
1934 2
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1949 2
1950 2
1951 1
1953 1
1955 3
1956 3
1957 2
1958 2
1959 1
1961 2
1962 2
1963 3
1964 3
1965 1
1966 3
1967 7
1968 6
1969 2
1970 3
1971 5
1972 4
1973 6
1974 4
1975 7
1976 4
1977 5
1978 8
1979 8
1980 7
1981 6
1982 5
1983 6
1984 9
1985 15
1986 4
1987 8
1988 7
1989 9
1990 13
1991 22
1992 16
1993 9
1994 20
1995 8
1996 23
1997 19
1998 15
1999 19
2000 16
2001 21
2002 23
2003 21
2004 17
2005 13
2006 15
2007 24
2008 22
2009 20
2010 15
2011 27
2012 19
2013 30
2014 35
2015 33
2016 48
2017 46
2018 48
2019 32
2020 57
2021 55
2022 74
2023 55
2024 62
2025 47

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Page 1
Competitive exclusion.
Urban JK. Urban JK. Politics Life Sci. 2009 Sep;28(2):69-83. doi: 10.2990/28_2_69. Politics Life Sci. 2009. PMID: 20205523
The Principle of Competitive Exclusion, first articulated by Gause in 1934, states that two species or populations cannot inhabit the same niche: one will consistently out-compete the other. Of four possible outcomes, the logistic equations that describe such interaction p …
The Principle of Competitive Exclusion, first articulated by Gause in 1934, states that two species or populations cannot inhabit the …
Georgii F. Gause's The Struggle for Existence and the Integration of Natural History and Mathematical Models.
Halperin T. Halperin T. Am Nat. 2025 Mar;205(3):251-264. doi: 10.1086/734003. Epub 2025 Jan 10. Am Nat. 2025. PMID: 39965228
Gause's integration was based on a compelling verbal argument in which he reinterpreted the competition coefficient in terms of the niche concept. This interpretation was highly influential and was later embedded in models of modern coexistence theory. The discussio
Gause's integration was based on a compelling verbal argument in which he reinterpreted the competition coefficient in terms o
Atrial Fibrillation.
Young M. Young M. Crit Care Nurs Clin North Am. 2019 Mar;31(1):77-90. doi: 10.1016/j.cnc.2018.11.005. Crit Care Nurs Clin North Am. 2019. PMID: 30736937 Review.
Georgy Gause's shift from ecology and evolutionary biology to antibiotics research: reasons, objectives, circumstances.
Kodash N, Fischer M. Kodash N, et al. Theory Biosci. 2018 Apr;137(1):79-83. doi: 10.1007/s12064-018-0262-9. Epub 2018 Apr 3. Theory Biosci. 2018. PMID: 29616406
Georgy Gause (1910-1986) is best known for his contribution to ecology and evolutionary theory. ...Superficially, this shift looked like an attempt to switch from purely theoretical to applied research during the years of World War II, but Gause's decision ma …
Georgy Gause (1910-1986) is best known for his contribution to ecology and evolutionary theory. ...Superficially, this shift looked l …
gauseR: Simple methods for fitting Lotka-Volterra models describing Gause's "Struggle for Existence".
Mühlbauer LK, Schulze M, Harpole WS, Clark AT. Mühlbauer LK, et al. Ecol Evol. 2020 Oct 26;10(23):13275-13283. doi: 10.1002/ece3.6926. eCollection 2020 Dec. Ecol Evol. 2020. PMID: 33304536 Free PMC article.
The package includes several methods for parameter estimation and optimization, and includes 42 datasets from Gause's species interaction experiments and related work. Additionally, we include with this paper a short blog post discussing the historical importance of …
The package includes several methods for parameter estimation and optimization, and includes 42 datasets from Gause's species …
Gause's principle and the effect of resource partitioning on the dynamical coexistence of replicating templates.
Szilágyi A, Zachar I, Szathmáry E. Szilágyi A, et al. PLoS Comput Biol. 2013;9(8):e1003193. doi: 10.1371/journal.pcbi.1003193. Epub 2013 Aug 22. PLoS Comput Biol. 2013. PMID: 23990769 Free PMC article.
Here we show by analytical and numerical calculations that Gause's principle of competitive exclusion holds for template replicators if resources (nucleotides) affect growth linearly and coexistence is at fixed point attractors. ...
Here we show by analytical and numerical calculations that Gause's principle of competitive exclusion holds for template repli …
Did Gause Have a Yeast Infection?
Pritchard JO, Porter AH, Montagnes DJ. Pritchard JO, et al. J Eukaryot Microbiol. 2016 Sep;63(5):552-7. doi: 10.1111/jeu.12299. Epub 2016 Feb 11. J Eukaryot Microbiol. 2016. PMID: 27593699
We planned to develop predator-prey models using Paramecium and yeast, but they have not been empirically examined since work by Gause in the 1930s. Therefore, we evaluated if Paramecium aurelia ingests and grows on eight yeasts. ...Simulations were compared to P. aurelia- …
We planned to develop predator-prey models using Paramecium and yeast, but they have not been empirically examined since work by Gause
Gramicidin S.
GAUSE GF. GAUSE GF. Lancet. 1946 Jul 13;2(6411):46. Lancet. 1946. PMID: 20991452 No abstract available.
Differences in initial abundances reveal divergent dynamic structures in Gause's predator-prey experiments.
Mühlbauer LK, Harpole WS, Clark AT. Mühlbauer LK, et al. Ecol Evol. 2022 Dec 18;12(12):e9638. doi: 10.1002/ece3.9638. eCollection 2022 Dec. Ecol Evol. 2022. PMID: 36545367 Free PMC article.
Here, we show how to quantify the relative contributions of these factors to prediction error using Georgii Gause's iconic predator-prey microcosm experiments, which, critically, include experimental replicates that differ from one another only in initial abundances …
Here, we show how to quantify the relative contributions of these factors to prediction error using Georgii Gause's iconic pre …
[Cryoglobulinemic vasculitis].
Gause A, Lamprecht P. Gause A, et al. Internist (Berl). 2003 Feb;44(2):165-6, 169-74. Internist (Berl). 2003. PMID: 12674736 Review. German. No abstract available.
1,130 results