Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
about
Accommodative movements of the lens/capsule and the strand that extends between the posterior vitreous zonule insertion zone & the lens equator, in relation to the vitreous face and aging.Extralenticular and lenticular aspects of accommodation and presbyopia in human versus monkey eyes.Age-related changes in centripetal ciliary body movement relative to centripetal lens movement in monkeys.Morphology and accommodative function of the vitreous zonule in human and monkey eyes.Surgical intervention and accommodative responses, II: forward ciliary body accommodative movement is facilitated by zonular attachments to the lens capsule.[PresbyLASIK: treatment approaches with the excimer laser]Effect of the age cross-link breaker alagebrium on anterior segment physiology, morphology, and ocular age and rage.Magnetic resonance imaging of the anteroposterior position and thickness of the aging, accommodating, phakic, and pseudophakic ciliary muscle.Accommodative changes in lens diameter in rhesus monkeys.Influence of amplitude, starting point, and age on first- and second-order dynamics of Edinger-Westphal-stimulated accommodation in rhesus monkeys.Pilocarpine induces an increase in the anterior chamber angular width in eyes with narrow angles.Age-related changes in the anterior segment biometry during accommodation.Oxidative stress impact on barrier function of porcine angular aqueous plexus cell monolayers.Topographical changes of biconvex objects during equatorial traction: an analogy for accommodation of the human lens.Magnetic resonance imaging of aging, accommodating, phakic, and pseudophakic ciliary muscle diametersAccommodative function in rhesus monkeys: effects of aging and calorie restriction.Enhancing trabecular outflow by disrupting the actin cytoskeleton, increasing uveoscleral outflow with prostaglandins, and understanding the pathophysiology of presbyopia interrogating Mother Nature: asking why, asking how, recognizing the signs, foQuantification of age-related and per diopter accommodative changes of the lens and ciliary muscle in the emmetropic human eye.The eye in focus: accommodation and presbyopia.Short-term adaptive modification of dynamic ocular accommodationThe Response AC/A Ratio Before and After the Onset of MyopiaAge-related posterior ciliary muscle restriction - A link between trabecular meshwork and optic nerve head pathophysiology.Edinger--Westphal stimulated accommodative dynamics in anesthetized, middle-aged rhesus monkeys.Edinger-Westphal and pharmacologically stimulated accommodative refractive changes and lens and ciliary process movements in rhesus monkeys.Evaluating relaxed ciliary muscle tone in presbyopic eyes.
P2860
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P2860
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
description
1992 nî lūn-bûn
@nan
1992年の論文
@ja
1992年学术文章
@wuu
1992年学术文章
@zh
1992年学术文章
@zh-cn
1992年学术文章
@zh-hans
1992年学术文章
@zh-my
1992年学术文章
@zh-sg
1992年學術文章
@yue
1992年學術文章
@zh-hant
name
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@en
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@nl
type
label
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@en
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@nl
prefLabel
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@en
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid.
@nl
P2093
P1433
P1476
Age-related loss of ciliary muscle mobility in the rhesus monkey. Role of the choroid
@en
P2093
E Lütjen-Drecoll
P L Kaufman
W Jungkunz
P304
P356
10.1001/ARCHOPHT.1992.01080180143043
P407
P50
P577
1992-06-01T00:00:00Z