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

Year Number of Results
1797 2
1799 3
1801 2
1803 1
1804 2
1805 1
1807 3
1809 2
1810 1
1813 4
1815 2
1816 2
1817 1
1818 2
1819 2
1820 1
1821 8
1822 1
1823 4
1824 1
1825 5
1826 5
1827 4
1828 7
1829 13
1830 5
1831 5
1832 1
1833 4
1834 2
1835 3
1836 3
1837 1
1838 1
1839 4
1840 3
1841 11
1842 7
1843 9
1844 16
1845 5
1846 8
1847 5
1848 1
1849 3
1850 5
1851 4
1852 4
1853 5
1854 3
1855 9
1856 10
1857 5
1858 21
1859 13
1860 12
1861 7
1862 5
1863 15
1864 18
1865 14
1866 27
1867 6
1868 11
1869 20
1870 17
1871 13
1872 15
1873 16
1874 7
1875 18
1876 13
1877 5
1878 18
1879 30
1880 18
1881 22
1882 31
1883 21
1884 27
1885 27
1886 21
1887 29
1888 24
1889 17
1890 18
1891 17
1892 25
1893 22
1894 23
1895 21
1896 13
1897 11
1898 19
1899 14
1900 12
1901 16
1902 17
1903 13
1904 16
1905 15
1906 16
1907 12
1908 15
1909 21
1910 22
1911 28
1912 44
1913 25
1914 13
1915 22
1916 16
1917 24
1918 26
1919 35
1920 26
1921 37
1922 27
1923 23
1924 21
1925 20
1926 45
1927 31
1928 20
1929 20
1930 23
1931 18
1932 27
1933 25
1934 28
1935 30
1936 36
1937 35
1938 26
1939 53
1940 28
1941 25
1942 19
1943 24
1944 52
1945 290
1946 1187
1947 1142
1948 1346
1949 1314
1950 1611
1951 1930
1952 2155
1953 2183
1954 2098
1955 2259
1956 2269
1957 2313
1958 2169
1959 2068
1960 1923
1961 2615
1962 2418
1963 2818
1964 3781
1965 3447
1966 3744
1967 4294
1968 4864
1969 5391
1970 4965
1971 5256
1972 5460
1973 5360
1974 5321
1975 5678
1976 5434
1977 5689
1978 5716
1979 5895
1980 5825
1981 6133
1982 6554
1983 6612
1984 6731
1985 7337
1986 7094
1987 7672
1988 7846
1989 8476
1990 8601
1991 8494
1992 8808
1993 8840
1994 8959
1995 9262
1996 9683
1997 9864
1998 10596
1999 10683
2000 11101
2001 11218
2002 11816
2003 12446
2004 13061
2005 14487
2006 16031
2007 16495
2008 17270
2009 17580
2010 18360
2011 19613
2012 20715
2013 22659
2014 23784
2015 25314
2016 26549
2017 27572
2018 28924
2019 29901
2020 34684
2021 37794
2022 36226
2023 34395
2024 16131
2025 5

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764,207 results

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Page 1
Anatomy and function of the eye.
Kaplan HJ. Kaplan HJ. Chem Immunol Allergy. 2007;92:4-10. doi: 10.1159/000099236. Chem Immunol Allergy. 2007. PMID: 17264478 Review.
This text is not a generic book on the immunology of the eye, but instead is based on the theme of ocular immune privilege. ...The focus of this chapter is to provide a concise description of both the function and anatomy of the normal eye....
This text is not a generic book on the immunology of the eye, but instead is based on the theme of ocular immune privilege. ...The fo …
Dry Eye Management: Targeting the Ocular Surface Microenvironment.
Zhang X, M VJ, Qu Y, He X, Ou S, Bu J, Jia C, Wang J, Wu H, Liu Z, Li W. Zhang X, et al. Int J Mol Sci. 2017 Jun 29;18(7):1398. doi: 10.3390/ijms18071398. Int J Mol Sci. 2017. PMID: 28661456 Free PMC article. Review.
Dry eye can damage the ocular surface and result in mild corneal epithelial defect to blinding corneal pannus formation and squamous metaplasia. ...Successful treatment of dry eye should be aimed to restore the homeostasis of the ocular surface microenvironment....
Dry eye can damage the ocular surface and result in mild corneal epithelial defect to blinding corneal pannus formation and squamous …
Eye organogenesis: A hierarchical view of ocular development.
Miesfeld JB, Brown NL. Miesfeld JB, et al. Curr Top Dev Biol. 2019;132:351-393. doi: 10.1016/bs.ctdb.2018.12.008. Epub 2019 Jan 3. Curr Top Dev Biol. 2019. PMID: 30797514 Review.
Many of these tissue types are concurrently specified and undergo a complex set of morphogenetic movements that facilitate their structural interconnection. Within the context of vertebrate eye organogenesis, we also discuss the genetic hierarchies of transcription factors …
Many of these tissue types are concurrently specified and undergo a complex set of morphogenetic movements that facilitate their structural …
Eye shape and retinal shape, and their relation to peripheral refraction.
Verkicharla PK, Mathur A, Mallen EA, Pope JM, Atchison DA. Verkicharla PK, et al. Ophthalmic Physiol Opt. 2012 May;32(3):184-99. doi: 10.1111/j.1475-1313.2012.00906.x. Epub 2012 Apr 9. Ophthalmic Physiol Opt. 2012. PMID: 22486366 Free article. Review.
PURPOSE: We provide an account of the relationships between eye shape, retinal shape and peripheral refraction. RECENT FINDINGS: We discuss how eye and retinal shapes may be described as conicoids, and we describe an axis and section reference system for determining …
PURPOSE: We provide an account of the relationships between eye shape, retinal shape and peripheral refraction. RECENT FINDINGS: We d …
How mechanical forces shape the developing eye.
Hosseini HS, Taber LA. Hosseini HS, et al. Prog Biophys Mol Biol. 2018 Sep;137:25-36. doi: 10.1016/j.pbiomolbio.2018.01.004. Epub 2018 Feb 9. Prog Biophys Mol Biol. 2018. PMID: 29432780 Free PMC article. Review.
Taken together, experimental and numerical results suggest that the driving forces for early eye morphogenesis are generated mainly by differential growth, actomyosin contraction, and regional apoptosis, with morphology mediated by physical constraints provided by adjacent …
Taken together, experimental and numerical results suggest that the driving forces for early eye morphogenesis are generated mainly b …
Nodal points and the eye.
Simpson MJ. Simpson MJ. Appl Opt. 2022 Apr 1;61(10):2797-2804. doi: 10.1364/AO.455464. Appl Opt. 2022. PMID: 35471355
Nodal points are defined using parallel object and image rays at very small angles to the optical axis, and Johann Listing described them when characterizing the eye in 1845. They are only distinct from principal points when there is a refractive index difference, but Regi …
Nodal points are defined using parallel object and image rays at very small angles to the optical axis, and Johann Listing described them wh …
Microdissection of the Rodent Eye.
Mohan KV, Sinha P, Swami B, Muniyasamy A, Nagarajan P, Upadhyay P. Mohan KV, et al. J Vis Exp. 2023 Apr 21;(194). doi: 10.3791/64414. J Vis Exp. 2023. PMID: 37154568
The ocular micro-dissection of the rodent eye involves the segmentation of the enucleated eyeball with the attached nictitating membrane, or third eyelid, to obtain the anterior and posterior eyecups. ...The presence of the third eyelid presents unique and significant adva …
The ocular micro-dissection of the rodent eye involves the segmentation of the enucleated eyeball with the attached nictitating membr …
Eye morphogenesis and patterning of the optic vesicle.
Fuhrmann S. Fuhrmann S. Curr Top Dev Biol. 2010;93:61-84. doi: 10.1016/B978-0-12-385044-7.00003-5. Curr Top Dev Biol. 2010. PMID: 20959163 Free PMC article. Review.
Organogenesis of the eye is a multistep process that starts with the formation of optic vesicles followed by invagination of the distal domain of the vesicles and the overlying lens placode resulting in morphogenesis of the optic cup. The late optic vesicle becomes pattern …
Organogenesis of the eye is a multistep process that starts with the formation of optic vesicles followed by invagination of the dist …
Ion Channels in the Eye: Involvement in Ocular Pathologies.
Giblin JP, Comes N, Strauss O, Gasull X. Giblin JP, et al. Adv Protein Chem Struct Biol. 2016;104:157-231. doi: 10.1016/bs.apcsb.2015.11.006. Epub 2015 Dec 31. Adv Protein Chem Struct Biol. 2016. PMID: 27038375 Review.
The eye is the sensory organ of vision. There, the retina transforms photons into electrical signals that are sent to higher brain areas to produce visual sensations. ...Here, we have reviewed the roles of different ion channels expressed in ocular tissues (cornea, conjunc …
The eye is the sensory organ of vision. There, the retina transforms photons into electrical signals that are sent to higher brain ar …
Proteomics and the eye.
Semba RD, Enghild JJ. Semba RD, et al. Proteomics Clin Appl. 2014 Apr;8(3-4):127-9. doi: 10.1002/prca.201470024. Proteomics Clin Appl. 2014. PMID: 24729286 Free PMC article. No abstract available.
764,207 results
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