Difference between revisions of Normalized

User (talk | contribs)
No edit summary
User (talk | contribs)
No edit summary
 
(One intermediate revision by the same user not shown)
Line 1: Line 1:
'''Normalized''' ([[EM:JARGON|jargon]]) (normal use or distance) are glasses for [[distance vision]] as the '''primary [[stimulus]]''' to improve eyesight.
'''Normalized''' lenses ([[EM:JARGON|jargon]]) (normal use or distance) are for [[distance vision]] as the '''primary [[stimulus]]''' to improve eyesight.


Normalized reduce the [[blur horizon]] by just enough to give good stimulus from [[blur]] and [[double vision]] challenge, but definitely not enough to make the world significantly [[blur]]ry. A good pair of normalized allow the wearer to continue their daily activities without any difference for the most part - an exception may be night time driving, in which a higher correction is a very good choice. (Always ensure your eyesight meets the minimum legal requirement while driving.) Normalized induce a small amount of [[myopic defocus]], which has been shown to reduce axial length in a clinical study.<ref>{{Cite journal |last=Read |first=Scott A. |last2=Collins |first2=Michael J. |last3=Sander |first3=Beata P. |date=December 2010 |title=Human Optical Axial Length and Defocus |url=https://iovs.arvojournals.org/article.aspx?articleid=2126435 |journal=Investigative Ophthalmology & Visual Science}}</ref>
Normalized lenses reduce the [[blur horizon]] by just enough to give good stimulus from [[blur]] and [[double vision]] challenge, but definitely not enough to make the world significantly [[blur]]ry. Good normalized lenses allow the user to continue daily activities without impairment, except night time driving, for which [[20/20 correction|a higher correction]] is a very good choice. (Always ensure your eyesight meets the minimum legal requirement while driving.) Normalized lenses induce a small amount of [[myopic defocus]], which has been shown to reduce axial length in a clinical study.<ref>{{Cite journal |last=Read |first=Scott A. |last2=Collins |first2=Michael J. |last3=Sander |first3=Beata P. |date=December 2010 |title=Human Optical Axial Length and Defocus |url=https://iovs.arvojournals.org/article.aspx?articleid=2126435 |journal=Investigative Ophthalmology & Visual Science}}</ref>


== How strong should normalized be? ==
== How strong should normalized be? ==