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Table representation of search results timeline featuring number of search results per year.

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1807 1
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1849 2
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1854 1
1857 1
1859 1
1868 1
1871 1
1874 3
1875 1
1879 2
1881 1
1883 1
1884 1
1885 1
1886 2
1887 1
1889 2
1890 1
1893 3
1895 1
1896 1
1898 1
1900 1
1901 2
1904 1
1905 2
1906 4
1907 3
1908 3
1909 3
1910 1
1911 2
1913 1
1914 2
1915 1
1916 2
1918 4
1919 4
1920 7
1921 2
1922 18
1923 3
1924 9
1925 9
1926 10
1927 13
1928 13
1929 19
1930 18
1931 10
1932 23
1933 20
1934 11
1935 13
1936 12
1937 8
1938 12
1939 16
1940 20
1941 15
1942 9
1943 5
1944 46
1945 117
1946 225
1947 250
1948 215
1949 310
1950 756
1951 981
1952 986
1953 1098
1954 1171
1955 1365
1956 1360
1957 1540
1958 1661
1959 1068
1960 216
1961 317
1962 339
1963 1647
1964 2316
1965 2546
1966 2484
1967 2568
1968 2666
1969 2833
1970 2797
1971 2878
1972 2986
1973 3022
1974 2948
1975 4220
1976 4162
1977 4004
1978 4110
1979 4146
1980 4244
1981 4396
1982 4635
1983 5211
1984 5608
1985 6006
1986 6152
1987 6421
1988 6893
1989 7427
1990 7465
1991 7446
1992 7473
1993 7367
1994 7403
1995 7592
1996 8474
1997 8597
1998 8494
1999 9649
2000 11767
2001 12245
2002 12646
2003 12448
2004 13319
2005 14983
2006 15775
2007 16128
2008 17277
2009 17911
2010 18697
2011 20103
2012 21061
2013 19596
2014 19483
2015 19852
2016 21754
2017 25915
2018 28337
2019 30836
2020 36263
2021 40884
2022 42136
2023 43624
2024 48132
2025 52225
2026 832

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773,283 results

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The following term was not found in PubMed: Hosseini-Sunny
Page 1
Physiology and Pathophysiology of Potassium Homeostasis: Core Curriculum 2019.
Palmer BF, Clegg DJ. Palmer BF, et al. Am J Kidney Dis. 2019 Nov;74(5):682-695. doi: 10.1053/j.ajkd.2019.03.427. Epub 2019 Jun 19. Am J Kidney Dis. 2019. PMID: 31227226 Review.
Total-body potassium (K(+)) content and appropriate distribution of K(+) across the cell membrane is vitally important for normal cellular function. Total-body K(+) content is determined by changes in excretion of K(+) by the kidneys in response to int …
Total-body potassium (K(+)) content and appropriate distribution of K(+) across the cell membrane is vitally important for nor …
Pathophysiology and management of hypokalemia: a clinical perspective.
Unwin RJ, Luft FC, Shirley DG. Unwin RJ, et al. Nat Rev Nephrol. 2011 Feb;7(2):75-84. doi: 10.1038/nrneph.2010.175. Nat Rev Nephrol. 2011. PMID: 21278718 Review.
Potassium (K(+)) ions are the predominant intracellular cations. K(+) homeostasis depends on external balance (dietary intake [typically 100 mmol per day] versus excretion [95% via the kidney; 5% via the colon]) and internal balance (the distribution of K(+) …
Potassium (K(+)) ions are the predominant intracellular cations. K(+) homeostasis depends on external balance (dietary intake …
Long-term efficacy and safety of romiplostim in refractory aplastic anemia: follow-up of a phase 2/3 study.
Mitani K, Lee JW, Jang JH, Tomiyama Y, Miyazaki K, Nagafuji K, Usuki K, Uoshima N, Fujisaki T, Kosugi H, Matsumura I, Sasaki K, Kizaki M, Sawa M, Hidaka M, Kobayashi N, Ichikawa S, Yonemura Y, Murotani K, Shimizu M, Matsuda A, Ozawa K, Nakao S. Mitani K, et al. Blood Adv. 2024 Mar 26;8(6):1415-1419. doi: 10.1182/bloodadvances.2023010959. Blood Adv. 2024. PMID: 38134300 Free PMC article. Clinical Trial. No abstract available.
k-Isocoronal tilings.
Taganap E, De Las Peñas MLA. Taganap E, et al. Acta Crystallogr A Found Adv. 2019 Jan 1;75(Pt 1):94-106. doi: 10.1107/S2053273318013992. Epub 2019 Jan 1. Acta Crystallogr A Found Adv. 2019. PMID: 30575587
In this article, a framework is presented that allows the systematic derivation of planar edge-to-edge k-isocoronal tilings from tile-s-transitive tilings, s k. A tiling {\cal T} is k-isocoronal if its vertex coronae form k orbits or k transitiv …
In this article, a framework is presented that allows the systematic derivation of planar edge-to-edge k-isocoronal tilings from tile …
Rain Leaks Under the Trusted Tree.
Goto K. Goto K. J Thorac Oncol. 2024 Jul;19(7):963-965. doi: 10.1016/j.jtho.2024.04.016. J Thorac Oncol. 2024. PMID: 38972708 Free article. No abstract available.
Astrocytic modulation of potassium under seizures.
Wang F, Qi X, Zhang J, Huang JH. Wang F, et al. Neural Regen Res. 2020 Jun;15(6):980-987. doi: 10.4103/1673-5374.270295. Neural Regen Res. 2020. PMID: 31823867 Free PMC article. Review.
The contribution of an impaired astrocytic K(+) regulation system to epileptic neuronal hyperexcitability has been increasingly recognized in the last decade. A defective K(+) regulation leads to an elevated extracellular K(+) concentration ([K(+)](o)) …
The contribution of an impaired astrocytic K(+) regulation system to epileptic neuronal hyperexcitability has been increasingly recog …
Comparison of K(+) Channel Families.
Taura J, Kircher DM, Gameiro-Ros I, Slesinger PA. Taura J, et al. Handb Exp Pharmacol. 2021;267:1-49. doi: 10.1007/164_2021_460. Handb Exp Pharmacol. 2021. PMID: 34247281
K(+) channels enable potassium to flow across the membrane with great selectivity. There are four K(+) channel families: voltage-gated K (K(v)), calcium-activated (K(Ca)), inwardly rectifying K (K(ir)), and two-pore domain potassiu
K(+) channels enable potassium to flow across the membrane with great selectivity. There are four K(+) channel families: volta
Potassium in Root Growth and Development.
Sustr M, Soukup A, Tylova E. Sustr M, et al. Plants (Basel). 2019 Oct 22;8(10):435. doi: 10.3390/plants8100435. Plants (Basel). 2019. PMID: 31652570 Free PMC article. Review.
K(+) transport is crucial for its physiological role. A wide range of K(+) transport proteins has developed during evolution and acquired specific functions in plants. ...However, recent research confirms both systemic and localized growth response in Arabidopsis th
K(+) transport is crucial for its physiological role. A wide range of K(+) transport proteins has developed during evolution a
Arabidopsis HAK5 under low K(+) availability operates as PMF powered high-affinity K(+) transporter.
Maierhofer T, Scherzer S, Carpaneto A, Müller TD, Pardo JM, Hänelt I, Geiger D, Hedrich R. Maierhofer T, et al. Nat Commun. 2024 Oct 3;15(1):8558. doi: 10.1038/s41467-024-52963-6. Nat Commun. 2024. PMID: 39362862 Free PMC article.
Plants can survive in soils of low micromolar potassium (K(+)) concentrations. Root K(+) intake is accomplished by the K(+) channel AKT1 and KUP/HAK/KT type high-affinity K(+) transporters. ...Therefore, optimizing K(+) use efficiency of crops, …
Plants can survive in soils of low micromolar potassium (K(+)) concentrations. Root K(+) intake is accomplished by the K
A Single-Arm Phase 2 Study of Sotorasib Plus Carboplatin and Pemetrexed in Patients With Advanced Nonsquamous NSCLC With KRAS G12C Mutation (WJOG14821L, SCARLET).
Akamatsu H, Sakata S, Azuma K, Yoshioka H, Uemura T, Tsuchiya-Kawano Y, Esumi S, Kurosaki T, Sato Y, Sakamoto T, Ninomiya K, Toyozawa R, Yoneshima Y, Shukuya T, Kozuki T, Watanabe K, Daga H, Kato T, Takahashi T, Osuga M, Koh Y, Morita S, Yamamoto N. Akamatsu H, et al. J Thorac Oncol. 2025 Jun;20(6):775-785. doi: 10.1016/j.jtho.2025.01.006. Epub 2025 Jan 17. J Thorac Oncol. 2025. PMID: 39828218 Free article. Clinical Trial.
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