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Experimental Eye Research|April 29, 2022
ON than OFF pathway disruption leads to greater deficits in visual function and retinal dopamine signalingMoe H Aung, Kelleigh Hogan, Reece E Mazade, et al.
Food Additives & Contaminants. Part A, Chemistry, Analysis, Control, Exposure & Risk Assessment|June 15, 2017
Determination of 26 anti-diabetic compounds in dietary supplements using a validated UPLC methodNam Sook Kim, Kyu Yeon Kim, Geum Joo Yoo, et al.
Investigative Ophthalmology & Visual Science|October 18, 2016
Altered Refractive Development in Mice With Reduced Levels of Retinal DopamineMichael A Bergen, Han Na Park, Ranjay Chakraborty, et al.
Investigative Ophthalmology & Visual Science|November 11, 2016
Genome-Wide Scleral Micro- and Messenger-RNA Regulation During Myopia Development in the MouseRavikanth Metlapally, Han Na Park, Ranjay Chakraborty, et al.
Investigative Ophthalmology & Visual Science|January 27, 2021
Ambient Light Regulates Retinal Dopamine Signaling and Myopia SusceptibilityErica G Landis, Han Na Park, Micah Chrenek, et al.
Food Additives & Contaminants. Part A, Chemistry, Analysis, Control, Exposure & Risk Assessment|November 17, 2017
Determination of illegal adulteration of dietary supplements with synthetic hair-growth compounds by UPLC and LC-Q-TOF/MSJi Hyun Lee, Gihaeng Kang, Han Na Park, et al.
Investigative Ophthalmology & Visual Science|September 4, 2014
Visually-driven ocular growth in mice requires functional rod photoreceptorsHan na Park, Seema B Jabbar, Christopher C Tan, et al.
Experimental Eye Research|January 4, 2019
Lack of cone mediated retinal function increases susceptibility to form-deprivation myopia in miceRanjay Chakraborty, Victoria Yang, Han Na Park, et al.
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