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

Year Number of Results
1783 1
1786 1
1788 1
1791 2
1792 3
1793 2
1794 8
1796 1
1797 6
1799 1
1800 10
1801 5
1802 2
1803 3
1804 5
1805 5
1806 5
1807 5
1808 5
1809 6
1810 3
1811 6
1812 4
1813 4
1814 9
1815 1
1816 4
1817 3
1818 1
1819 1
1820 1
1821 1
1822 5
1823 2
1824 5
1825 1
1826 14
1827 5
1828 7
1829 5
1830 14
1831 9
1832 3
1833 5
1834 6
1835 6
1836 3
1837 5
1838 4
1840 10
1841 11
1842 71
1843 10
1844 16
1845 22
1846 18
1847 18
1848 17
1849 23
1850 17
1851 9
1852 11
1853 18
1854 16
1855 16
1856 10
1857 14
1858 11
1859 13
1860 14
1861 19
1862 12
1863 7
1864 13
1865 6
1866 12
1867 14
1868 18
1869 9
1870 12
1871 21
1872 20
1873 19
1874 22
1875 28
1876 34
1877 36
1878 38
1879 26
1880 31
1881 43
1882 31
1883 32
1884 23
1885 25
1886 40
1887 40
1888 33
1889 46
1890 51
1891 18
1892 32
1893 68
1894 40
1895 49
1896 58
1897 53
1898 84
1899 99
1900 115
1901 145
1902 120
1903 113
1904 115
1905 112
1906 121
1907 114
1908 91
1909 116
1910 155
1911 115
1912 100
1913 147
1914 134
1915 106
1916 107
1917 109
1918 87
1919 113
1920 79
1921 89
1922 95
1923 115
1924 121
1925 117
1926 180
1927 167
1928 185
1929 196
1930 183
1931 191
1932 228
1933 196
1934 185
1935 199
1936 139
1937 113
1938 101
1939 106
1940 104
1941 111
1942 96
1943 70
1944 107
1945 210
1946 138
1947 191
1948 186
1949 132
1950 370
1951 658
1952 689
1953 557
1954 463
1955 445
1956 524
1957 497
1958 497
1959 499
1960 440
1961 572
1962 601
1963 1918
1964 3073
1965 1783
1966 1302
1967 1379
1968 1645
1969 2206
1970 2454
1971 2527
1972 2581
1973 3210
1974 3438
1975 6868
1976 6956
1977 6362
1978 6423
1979 7040
1980 7622
1981 8111
1982 8782
1983 10112
1984 10683
1985 11009
1986 11325
1987 12159
1988 13433
1989 14961
1990 15493
1991 15556
1992 16965
1993 17264
1994 17377
1995 17441
1996 18321
1997 18169
1998 18974
1999 20326
2000 24499
2001 25833
2002 27410
2003 29366
2004 29663
2005 32833
2006 34902
2007 37522
2008 39931
2009 41659
2010 44752
2011 49045
2012 52191
2013 55573
2014 66311
2015 71946
2016 74587
2017 77462
2018 86607
2019 94569
2020 110613
2021 121635
2022 121218
2023 118775
2024 56863
2025 3

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The following term was not found in PubMed: H.Nazarifar
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Erratum for the Report "Global distribution of earthworm diversity" by H. R. P. Phillips, C. A. Guerra, M. L. C. Bartz, M. J. I. Briones, G. Brown, T. W. Crowther, O. Ferlian, K. B. Gongalsky, J. van den Hoogen, J. Krebs, A. Orgiazzi, D. Routh, B. Schwarz, E. M. Bach, J. Bennett, U. Brose, T. Decaens, B. Konig-Ries, M. Loreau, J. Mathieu, C. Mulder, W. H. van der Putten, K. S. Ramirez, M. C. Rillig, D. Russell, M. Rutgers, M. P. Thakur, F. T. de Vries, D. H. Wall, D. A. Wardle, M. Arai, F. O. Ayuke, G. H. Baker, R. Beausejour, J. C. Bedano, K. Birkhofer, E. Blanchart, B. Blossey, T. Bolger, R. L. Bradley, M. A. Callaham, Y. Capowiez, M. E. Caulfield, A. Choi, F. V. Crotty, A. Davalos, D. J. Diaz Cosin, A. Dominguez, A. E. Duhour, N. van Eekeren, C. Emmerling, L. B. Falco, R. Fernandez, S. J. Fonte, C. Fragoso, A. L. C. Franco, M. Fugere, A. T. Fusilero, S. Gholami, M. J. Gundale, M. Gutierrez Lopez, D. K. Hackenberger, L. M. Hernandez, T. Hishi, A. R. Holdsworth, M. Holmstrup, K. N. Hopfensperger, E. Huerta Lwanga, V. Huhta, T. T. Hurisso, B. V. Iannone III, M. Iordache, M. Joschko, N. Kaneko, R. Kanianska, A. M. Keith, C. A. Kelly, M. L. Kernecker, J. Klaminder, A. W. Kone, Y. Kooch, S. T. Kukkonen, H. Lalthanzara, D. R. Lammel, I. M. Lebedev, Y. Li, J. B. Jesus Lidon, N. K. Lincoln, S. R. Loss, R. Marichal, R. Matula, J. H. Moos, G. Moreno, A. Moron-Rios, B. Muys, J. Neirynck, L. Norgrove, M. Novo, V. Nuutinen, V. Nuzzo, M. Rahman P, J. Pansu, S. Paudel, G. Peres, L. Perez-Camacho, R. Pineiro, J.-F. Ponge, M. I. Rashid, S. Rebollo, J. Rodeiro-Iglesias, M. A. Rodriguez, A. M. Roth, G. X. Rousseau, A. Rozen, E. Sayad, L. van Schaik, B. C. Scharenbroch, M. Schirrmann, O. Schmidt, B. Schroder, J. Seeber, M. P. Shashkov, J. Singh, S. M. Smith, M. Steinwandter, J. A. Talavera, D. Trigo, J. Tsukamoto, A. W. de Valenca, S. J. Vanek, I. Virto, A. A. Wackett, M. W. Warren, N. H. Wehr, J. K. Whalen, M. B. Wironen, V. Wolters, I. V. Zenkova, W. Zhang, E. K. Cameron, N. Eisenhauer.
[No authors listed] [No authors listed] Science. 2020 Jul 31;369(6503):eabd9834. doi: 10.1126/science.abd9834. Science. 2020. PMID: 32732396 No abstract available.
Ground and excited electronic structures of metal encapsulated nanocages: the cases of endohedral M@C(20)H(20) (M = K, Rb, Ca, Sr) and M@C(36)H(36) (M = Na, K, Rb).
Ariyarathna IR . Ariyarathna IR . Phys Chem Chem Phys. 2021 Sep 14;23(34):18588-18594. doi: 10.1039/d1cp03146e. Epub 2021 Aug 17. Phys Chem Chem Phys. 2021. PMID: 34612395
High-level electronic structure calculations were performed to analyze ground and excited states of neutral and cationic endohedral M@C(20)H(20) (M = K, Rb, Ca, Sr) and M@C(36)H(36) (M = Na, K, Rb). ...On the other hand, excited electronic spectra of …
High-level electronic structure calculations were performed to analyze ground and excited states of neutral and cationic endohedral M
Wigner numbers.
Allen WD. Allen WD. J Chem Phys. 2019 Dec 28;151(24):244122. doi: 10.1063/1.5135721. J Chem Phys. 2019. PMID: 31893864
All reduced Wigner rotation matrix elements d(M(')M) (J)(teta) can be evaluated very efficiently as a linear combination of either cos(Nteta) or sin(Nteta) terms as N runs in unit steps from either 0 or 12 to J. ...The solutions involve collections of numbers W(m
All reduced Wigner rotation matrix elements d(M(')M) (J)(teta) can be evaluated very efficiently as a linear combination of ei …
Theoretical descriptions of novel triplet germylenes M(1)-Ge-M(2)-M(3) (M(1) = H, Li, Na, K; M(2) = Be, Mg, Ca; M(3) = H, F, Cl, Br).
Kassaee MZ, Ashenagar S. Kassaee MZ, et al. J Mol Model. 2018 Feb 6;24(2):49. doi: 10.1007/s00894-017-3575-6. J Mol Model. 2018. PMID: 29411107
Triplets with M(1) = K (i.e., the K-Ge-M(2)-M(3) series) seem to be more stable than the corresponding triplets with M(1) = H, Li, or Na. ...Singlet species of formulae K-Ge-Ca-Cl and K-Ge-Ca-Br form unexpected cyclic structures. Finally, the triplet g …
Triplets with M(1) = K (i.e., the K-Ge-M(2)-M(3) series) seem to be more stable than the corresponding triplets with …
Experimental and theoretical study on activation of the C-H bond in pyridine by [M(m)]- (M = Cu, Ag, Au, m = 1-3).
Liu XJ, Hamilton IP, Han KL, Tang ZC. Liu XJ, et al. Phys Chem Chem Phys. 2010 Sep 21;12(35):10602-9. doi: 10.1039/c002503h. Epub 2010 Jul 7. Phys Chem Chem Phys. 2010. PMID: 20607195
Activation of the C-H bond of pyridine by [M(m)](-) (M = Cu, Ag, Au, m = 1-3) is investigated by experiment and theory. ...Our study shows that C(5)H(4)N bonds to the metal clusters through a M-C sigma bond and [M(m)-C(5)H(4)N](-) …
Activation of the C-H bond of pyridine by [M(m)](-) (M = Cu, Ag, Au, m = 1-3) is investigated by experiment and …
The Principles of Biomedical Scientific Writing: Materials and Methods.
Ghasemi A, Bahadoran Z, Zadeh-Vakili A, Montazeri SA, Hosseinpanah F. Ghasemi A, et al. Int J Endocrinol Metab. 2019 Jan 28;17(1):e88155. doi: 10.5812/ijem.88155. eCollection 2019 Jan. Int J Endocrinol Metab. 2019. PMID: 30881471 Free PMC article. Review.
Although there are several disciplinary differences in the M&M, similar dos and don'ts may be considered to organize a well-written M&M. Briefly, authors need to provide clear-cut, adequate, and detailed information in the M&M
Although there are several disciplinary differences in the M&M, similar dos and don'ts may be considered to organize a wel …
MPH-M, AODV-M and DSR-M Performance Evaluation under Jamming Attacks.
Del-Valle-Soto C, Mex-Perera C, Monroy R, Nolazco-Flores JA. Del-Valle-Soto C, et al. Sensors (Basel). 2017 Jul 5;17(7):1573. doi: 10.3390/s17071573. Sensors (Basel). 2017. PMID: 28678180 Free PMC article.
Moreover, we also find that MPH-M benefits much more of the mitigation scheme than AODV-M and DSR-M. ...We also measure the resilience of these algorithms from the average packet re-transmissions perspective, and we find that MPH-M has around a 15% low …
Moreover, we also find that MPH-M benefits much more of the mitigation scheme than AODV-M and DSR-M. ...We also measure …
[Malassezia infections].
Sei Y. Sei Y. Med Mycol J. 2012;53(1):7-11. doi: 10.3314/mmj.53.7. Med Mycol J. 2012. PMID: 22467125 Free article. Japanese.
To date, the genus is composed of one non lipid-dependent species M. pachydermatis and lipid-dependent species M. furfur, M. sympodialis, M. globosa, M. obtusa, M. restricta, M. slooffiae, M. dermatis, M. yamatoensis, …
To date, the genus is composed of one non lipid-dependent species M. pachydermatis and lipid-dependent species M. furfur, M
Mycobacterial infections in domestic and wild animals due to Mycobacterium marinum, M. fortuitum, M. chelonae, M. porcinum, M. farcinogenes, M. smegmatis, M. scrofulaceum, M. xenopi, M. kansasii, M. simiae and M. genavense.
Bercovier H, Vincent V. Bercovier H, et al. Rev Sci Tech. 2001 Apr;20(1):265-90. doi: 10.20506/rst.20.1.1269. Rev Sci Tech. 2001. PMID: 11288516 Free article. Review.
The epidemiology and the natural distribution of Mycobacterium marinum, M. fortuitum, M. chelonae, M. porcinum, M. farcinogenes, M. smegmatis, M. scrofulaceum, M. xenopi, M. kansasii, M. simiae and M. genavense …
The epidemiology and the natural distribution of Mycobacterium marinum, M. fortuitum, M. chelonae, M. porcinum, M
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