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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
1792 2
1793 2
1794 6
1796 1
1797 5
1799 1
1800 5
1801 5
1802 2
1803 3
1804 3
1805 5
1806 5
1807 5
1808 5
1809 6
1810 3
1811 6
1812 3
1813 4
1814 5
1815 1
1816 4
1817 2
1818 1
1819 1
1820 1
1821 1
1822 5
1823 2
1824 4
1825 1
1826 13
1827 3
1828 6
1829 5
1830 9
1831 7
1832 2
1833 4
1834 1
1835 3
1836 1
1837 5
1838 1
1840 3
1841 10
1842 18
1843 3
1844 1
1845 4
1846 6
1847 4
1848 4
1849 1
1850 2
1851 1
1852 1
1853 1
1854 2
1855 1
1856 2
1857 4
1858 4
1859 2
1860 2
1861 2
1862 3
1863 1
1864 4
1865 1
1866 4
1867 2
1868 2
1869 6
1870 7
1871 9
1872 8
1873 6
1874 9
1875 14
1876 27
1877 31
1878 23
1879 18
1880 22
1881 32
1882 25
1883 22
1884 14
1885 9
1886 22
1887 12
1888 15
1889 20
1890 20
1891 6
1892 10
1893 38
1894 23
1895 27
1896 31
1897 24
1898 60
1899 77
1900 103
1901 131
1902 106
1903 91
1904 105
1905 106
1906 112
1907 111
1908 80
1909 106
1910 143
1911 102
1912 93
1913 127
1914 124
1915 94
1916 87
1917 89
1918 68
1919 92
1920 71
1921 85
1922 92
1923 105
1924 115
1925 113
1926 94
1927 91
1928 110
1929 105
1930 106
1931 100
1932 123
1933 95
1934 74
1935 95
1936 79
1937 99
1938 89
1939 96
1940 96
1941 96
1942 73
1943 60
1944 89
1945 177
1946 114
1947 169
1948 161
1949 108
1950 258
1951 406
1952 341
1953 383
1954 388
1955 334
1956 409
1957 394
1958 391
1959 409
1960 362
1961 483
1962 509
1963 1757
1964 2823
1965 1550
1966 1064
1967 1125
1968 1403
1969 1872
1970 1937
1971 2046
1972 2127
1973 2703
1974 2936
1975 5896
1976 5950
1977 5523
1978 5629
1979 6133
1980 6751
1981 7280
1982 7959
1983 9112
1984 9583
1985 9935
1986 10119
1987 10945
1988 12103
1989 13440
1990 14041
1991 14118
1992 15611
1993 15927
1994 16028
1995 16102
1996 17005
1997 16920
1998 17699
1999 19123
2000 22974
2001 24633
2002 26410
2003 28350
2004 28592
2005 31635
2006 33644
2007 36237
2008 38614
2009 40256
2010 43276
2011 47420
2012 50392
2013 53706
2014 64280
2015 69688
2016 71768
2017 73460
2018 80725
2019 86266
2020 71025
2021 35
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1,231,921 results
Results by year
Filters applied: . Clear all The following term was not found in PubMed: petovec
Page 1
Did you mean petrovec m (93 results)?
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.
A well-organized M&M permits other scientists to evaluate the study findings and repeat the experiments. Although there are several disciplinary differences in the M&M, similar dos and don'ts may be considered to organize a well-written M
A well-organized M&M permits other scientists to evaluate the study findings and repeat the experiments. Although there ar …
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.
The results of our evaluation show that performance for MPH-M is much better than AODV-M and DSR-M. For example, the node energy for MPH-M is 138.13% better than AODV-M and 126.07% better than DSR-M. ...The MPH-M recovery time is 5 …
The results of our evaluation show that performance for MPH-M is much better than AODV-M and DSR-M. For example, the no …
Genome-based taxonomic revision detects a number of synonymous taxa in the genus Mycobacterium.
Tortoli E, Meehan CJ, Grottola A, Fregni Serpini G, Fabio A, Trovato A, Pecorari M, Cirillo DM. Tortoli E, et al. Infect Genet Evol. 2019 Nov;75:103983. doi: 10.1016/j.meegid.2019.103983. Epub 2019 Jul 26. Infect Genet Evol. 2019. PMID: 31352146
The list of synonyms includes: two subspecies of M. chelonae (M. chelonae subsp. bovis and M. chelonae subsp. gwanakae), two subspecies of M. fortuitum (M. fortuitum subsp. fortuitum and M. fortuitum subsp. acetamidolyticum), four subspec …
The list of synonyms includes: two subspecies of M. chelonae (M. chelonae subsp. bovis and M. chelonae subsp. gwanakae) …
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. ...Finally, the triplet germylenes M(1)-Ge-M(2)-M(3) become more stable as the electropositiv …
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 …
Alkynylbis(alkylidynyl)phosphines: {L(n)M[triple bond, length as m-dash]C}(2)PC[triple bond, length as m-dash]CR.
Frogley BJ , Hill AF . Frogley BJ , et al. Chem Commun (Camb). 2018 Oct 30;54(87):12373-12376. doi: 10.1039/c8cc07166g. Chem Commun (Camb). 2018. PMID: 30327800
Sequential treatment of [M([triple bond, length as m-dash]CBr)(CO)2(Tp*)] (M = Mo, W; Tp* = hydrotris(dimethylpyrazolyl)borate) with nBuLi, RPCl2 and LiC[triple bond, length as m-dash]CSiMe3 affords [M{[triple bond, length as m-dash]CPR(C …
Sequential treatment of [M([triple bond, length as m-dash]CBr)(CO)2(Tp*)] (M = Mo, W; Tp* = hydrotris(dimethylpyrazolyl …
Draft Genome Resources for the Phytopathogenic Fungi Monilinia fructicola, M. fructigena, M. polystroma, and M. laxa, the Causal Agents of Brown Rot.
Rivera Y, Zeller K, Srivastava S, Sutherland J, Galvez M, Nakhla M, Poniatowska A, Schnabel G, Sundin G, Abad ZG. Rivera Y, et al. Phytopathology. 2018 Oct;108(10):1141-1142. doi: 10.1094/PHYTO-12-17-0418-A. Epub 2018 Aug 9. Phytopathology. 2018. PMID: 29723113 Free article.
Here, we report the draft genome assemblies of four important phytopathogenic species: M. fructicola, M. fructigena, M. polystroma, and M. laxa. The draft genome assemblies were 39 Mb (M. fructigena), 42 Mb (M. laxa), 43 Mb (M. fru …
Here, we report the draft genome assemblies of four important phytopathogenic species: M. fructicola, M. fructigena, M. …
Second virial coefficient properties of the n-m Lennard-Jones/Mie potential.
Sadus RJ. Sadus RJ. J Chem Phys. 2018 Aug 21;149(7):074504. doi: 10.1063/1.5041320. J Chem Phys. 2018. PMID: 30134705
The (n = m + 1)-m LJ/M potential has an important role in characterising the overall behavior of second virial coefficient properties. Different T(B) , T(max) behavior is observed for n(constant)-m LJ/M and n-m(constant) LJ/M poten …
The (n = m + 1)-m LJ/M potential has an important role in characterising the overall behavior of second virial coeffici …
Rosen's (M,R) system in Unified Modelling Language.
Zhang L, Williams RA, Gatherer D. Zhang L, et al. Biosystems. 2016 Jan;139:29-36. doi: 10.1016/j.biosystems.2015.12.006. Epub 2015 Dec 23. Biosystems. 2016. PMID: 26723228
Robert Rosen's (M,R) system is an abstract biological network architecture that is allegedly non-computable on a Turing machine. If (M,R) is truly non-computable, there are serious implications for the modelling of large biological networks in computer software. ...
Robert Rosen's (M,R) system is an abstract biological network architecture that is allegedly non-computable on a Turing machine. If ( …
Relativistic Effect on (1) J(M,C) in Me(4) M, Me(3) M(-) , Ph(4) M, and Ph(3) M(-) (M=Pb, Sn, Ge, Si, and/or C): Role of s-Type Lone Pair Orbitals in the Distinct Effect for the Anionic Species.
Hayashi S, Nishide T, Nakanishi W, Saito M. Hayashi S, et al. Chemphyschem. 2017 Sep 20;18(18):2466-2474. doi: 10.1002/cphc.201700755. Epub 2017 Aug 22. Chemphyschem. 2017. PMID: 28691742
Indirect one-bond nuclear spin-spin couplings between M and C [(1) J(M,C)] in Me(4) M, Me(3) M(-) , Ph(4) M, and Ph(3) M(-) (M=Pb, Sn, Ge, Si, C) are analyzed with consideration of the relativistic effect and by employing Slater-ty …
Indirect one-bond nuclear spin-spin couplings between M and C [(1) J(M,C)] in Me(4) M, Me(3) M(-) , Ph(4) 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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