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

Year Number of Results
1781 1
1784 1
1785 1
1790 1
1792 1
1793 1
1796 2
1797 1
1798 1
1799 1
1800 2
1801 1
1802 2
1803 3
1804 1
1806 2
1809 6
1810 1
1811 2
1813 1
1816 2
1817 2
1818 4
1819 2
1820 1
1821 7
1823 5
1824 1
1825 1
1826 4
1827 2
1828 4
1829 6
1830 1
1831 4
1832 2
1833 2
1834 3
1835 3
1836 1
1837 2
1838 1
1840 2
1841 1
1842 9
1843 7
1844 5
1845 7
1846 5
1847 4
1848 4
1849 3
1850 1
1851 1
1852 5
1853 5
1854 2
1855 2
1856 4
1857 1
1858 5
1859 15
1860 26
1861 6
1862 1
1864 3
1865 4
1866 6
1867 5
1868 11
1869 7
1870 8
1871 3
1872 5
1873 4
1874 6
1875 10
1876 11
1877 7
1878 10
1879 4
1880 12
1881 6
1882 1
1883 9
1884 10
1885 19
1886 13
1887 16
1888 20
1889 9
1890 15
1891 10
1892 11
1893 16
1894 10
1895 15
1896 14
1897 19
1898 14
1899 15
1900 29
1901 22
1902 17
1903 15
1904 13
1905 13
1906 15
1907 23
1908 15
1909 10
1910 16
1911 20
1912 14
1913 16
1914 14
1915 15
1916 4
1917 4
1918 3
1919 11
1920 8
1921 9
1922 7
1923 21
1924 21
1925 14
1926 20
1927 19
1928 16
1929 20
1930 11
1931 20
1932 22
1933 24
1934 16
1935 19
1936 16
1937 26
1938 9
1939 12
1940 10
1941 17
1942 13
1943 10
1944 10
1945 100
1946 193
1947 228
1948 261
1949 227
1950 251
1951 384
1952 452
1953 455
1954 482
1955 506
1956 564
1957 541
1958 535
1959 503
1960 504
1961 608
1962 756
1963 1125
1964 1474
1965 1267
1966 1241
1967 1485
1968 1745
1969 1785
1970 1822
1971 1963
1972 2165
1973 2090
1974 2326
1975 2597
1976 2492
1977 2533
1978 2657
1979 2787
1980 3030
1981 3004
1982 3016
1983 3422
1984 3765
1985 3919
1986 4207
1987 4178
1988 4468
1989 5215
1990 5421
1991 5586
1992 5668
1993 5880
1994 5990
1995 6050
1996 6190
1997 6300
1998 6502
1999 6756
2000 7342
2001 7658
2002 8192
2003 8769
2004 10045
2005 11353
2006 11960
2007 12730
2008 13837
2009 14434
2010 15669
2011 16974
2012 17747
2013 18850
2014 19195
2015 19709
2016 19932
2017 20054
2018 20556
2019 21045
2020 22629
2021 23430
2022 22696
2023 22023
2024 8042

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490,557 results

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Page 1
Magnetic Measurement and Stimulation of Cellular and Intracellular Structures.
Wang X, Law J, Luo M, Gong Z, Yu J, Tang W, Zhang Z, Mei X, Huang Z, You L, Sun Y. Wang X, et al. ACS Nano. 2020 Apr 28;14(4):3805-3821. doi: 10.1021/acsnano.0c00959. Epub 2020 Apr 6. ACS Nano. 2020. PMID: 32223274 Review.
From single-pole magnetic tweezers to robotic magnetic-field generation systems, the development of magnetic micromanipulation systems, using electromagnets or permanent magnets, has enabled a multitude of applications for cellular and intracellular me …
From single-pole magnetic tweezers to robotic magnetic-field generation systems, the development of magnetic micromanip …
Magnetic particles in motion: magneto-motive imaging and sensing.
Kubelick KP, Mehrmohammadi M. Kubelick KP, et al. Theranostics. 2022 Jan 24;12(4):1783-1799. doi: 10.7150/thno.54056. eCollection 2022. Theranostics. 2022. PMID: 35198073 Free PMC article. Review.
Superparamagnetic nanoparticles have become an important tool in biomedicine. Their biocompatibility, controllable small size, and magnetic properties allow manipulation with an external magnetic field for a variety of diagnostic and therapeutic applications. ...In …
Superparamagnetic nanoparticles have become an important tool in biomedicine. Their biocompatibility, controllable small size, and magnet
The role of macromolecules in the formation of kidney stones.
Rimer JD, Kolbach-Mandel AM, Ward MD, Wesson JA. Rimer JD, et al. Urolithiasis. 2017 Feb;45(1):57-74. doi: 10.1007/s00240-016-0948-8. Epub 2016 Dec 2. Urolithiasis. 2017. PMID: 27913854 Free PMC article. Review.
The formation of crystal aggregates, one of the critical processes in kidney stone pathogenesis, involves interactions between crystals (predominantly calcium oxalate monohydrate, COM) and urinary constituents (e.g., proteins), which serve as an adhesive "glue" between cry …
The formation of crystal aggregates, one of the critical processes in kidney stone pathogenesis, involves interactions between crysta …
Single-molecule force spectroscopy: optical tweezers, magnetic tweezers and atomic force microscopy.
Neuman KC, Nagy A. Neuman KC, et al. Nat Methods. 2008 Jun;5(6):491-505. doi: 10.1038/nmeth.1218. Nat Methods. 2008. PMID: 18511917 Free PMC article. Review.
Single-molecule force spectroscopy has emerged as a powerful tool to investigate the forces and motions associated with biological molecules and enzymatic activity. The most common force spectroscopy techniques are optical tweezers, magnetic tweezers a …
Single-molecule force spectroscopy has emerged as a powerful tool to investigate the forces and motions associated with biolog …
Spatial Manipulation of Particles and Cells at Micro- and Nanoscale via Magnetic Forces.
Panina LV, Gurevich A, Beklemisheva A, Omelyanchik A, Levada K, Rodionova V. Panina LV, et al. Cells. 2022 Mar 10;11(6):950. doi: 10.3390/cells11060950. Cells. 2022. PMID: 35326401 Free PMC article. Review.
Many of these applications, including tissue engineering, cell sorting, biosensors, drug delivery, and lab-on-chip devices, require remote manipulation of magnetic objects. High-gradient magnetic fields generated by micromagnets in the range of 10(3)-10(5) T/m are s …
Many of these applications, including tissue engineering, cell sorting, biosensors, drug delivery, and lab-on-chip devices, require remote m …
Magnetic Guiding with Permanent Magnets: Concept, Realization and Applications to Nanoparticles and Cells.
Blümler P. Blümler P. Cells. 2021 Oct 9;10(10):2708. doi: 10.3390/cells10102708. Cells. 2021. PMID: 34685688 Free PMC article. Review.
The idea of remote magnetic guiding is developed from the underlying physics of a concept that allows for bijective force generation over the inner volume of magnet systems. ...The equations of magnetic fields and forces as well as velocities ar …
The idea of remote magnetic guiding is developed from the underlying physics of a concept that allows for bijective force gene …
A giant tonsillolith.
Alfayez A, Albesher MB, Alqabasani MA. Alfayez A, et al. Saudi Med J. 2018 Apr;39(4):412-414. doi: 10.15537/smj.2018.4.21832. Saudi Med J. 2018. PMID: 29619494 Free PMC article.
Tonsillar stones are common findings and the known cause of bad breath (halitosis). Development of large tonsillar stones, however, is rare with only a few cases reported in the literature. ...
Tonsillar stones are common findings and the known cause of bad breath (halitosis). Development of large tonsillar stones, how …
Fundamentals and application of magnetic particles in cell isolation and enrichment: a review.
Plouffe BD, Murthy SK, Lewis LH. Plouffe BD, et al. Rep Prog Phys. 2015 Jan;78(1):016601. doi: 10.1088/0034-4885/78/1/016601. Epub 2014 Dec 4. Rep Prog Phys. 2015. PMID: 25471081 Free PMC article. Review.
Due to the inherent ability of magnets to provide forces at a distance, magnetic cell manipulation is now a standardized process step in numerous processes in tissue engineering, medicine, and in fundamental biological research. Herein we review the current s …
Due to the inherent ability of magnets to provide forces at a distance, magnetic cell manipulation is now a standardize …
Improved magnetic drug targeting with maximized magnetic forces and limited particle spreading.
Van Durme R, Crevecoeur G, Dupré L, Coene A. Van Durme R, et al. Med Phys. 2023 Mar;50(3):1715-1727. doi: 10.1002/mp.16180. Epub 2023 Jan 6. Med Phys. 2023. PMID: 36542430
PURPOSE: During the particles' movement through the vascular network, they are affected by magnetic forces, fluid (drag) forces, particle interactions, diffusion, etc. Adequate targeting is hindered when drag forces overcome the magnetic forc
PURPOSE: During the particles' movement through the vascular network, they are affected by magnetic forces, fluid (drag) fo
Relative Magnetic Force Measures and Their Potential Role in MRI Safety Practice.
Panych LP, Kimbrell VK, Mukundan S Jr, Madore B. Panych LP, et al. J Magn Reson Imaging. 2020 Apr;51(4):1260-1271. doi: 10.1002/jmri.26924. Epub 2019 Sep 11. J Magn Reson Imaging. 2020. PMID: 31507003
In addition to magnetic field line markings, relative magnetic force, or ratio of magnetic to gravitational forces on an object, may be considered a useful complementary metric to quantify the risk associated with bringing objects containing fer …
In addition to magnetic field line markings, relative magnetic force, or ratio of magnetic to gravitational f
490,557 results
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