To report calculated crystalline lens power and describe the distribution of ocular biometry and its association with refractive error in older Chinese adults.Random clustering sampling was used to identify adults aged 50 years and above in Xuhui and Baoshan districts of Shanghai. Refraction was determined by subjective refraction that achieved the best corrected vision based on monocular measurement. Ocular biometry was measured by IOL Master. The crystalline lens power of right eyes was calculated using modified Bennett-Rabbetts formula.We analyzed 6099 normal phakic right eyes. The mean crystalline lens power was 20.34 ± 2.24D (range: 13.40-36.08). Lens power, spherical equivalent, and anterior chamber depth changed linearly with age; ho...
We measured optical and biometric parameters of emmetropic eyes as a function of age. There were app...
The eye lens grows throughout life by cell accrual on its surface and can change shape to adjust the...
Purpose: To calculate age-related and per diopter (D) accommodative changes in crystalline lens and ...
To report calculated crystalline lens power and describe the distribution of ocular biometry and its...
PURPOSE: To investigate longitudinal changes in refraction and biometry in Chinese adults. DESIGN: P...
To investigate longitudinal changes in refraction and biometry in Chinese adults.Population-based pr...
Purpose. To study the relationships between the refractive power of the crystalline lens, overall re...
Purpose. To report on calculated lens power in adults in relation to other ocular components of refr...
Purpose: To explore the relationship between lens power and refractive error in older adults followi...
Purpose: To quantify changes in ocular dimensions associated with age, refractive error, and accommo...
Background: To investigate the distribution of refractive errors and their characteristics in older ...
Abstract Background Few studies have investigated the prevalence of refractive error (RE) in older a...
Purpose: To describe the prevalence of and risk factors for myopia and other refractive errors in a ...
To report the methodology and findings of a large scale investigation of burden and distribution of ...
ObjectiveTo describe the ocular biometry and determinants of refractive error in an adult population...
We measured optical and biometric parameters of emmetropic eyes as a function of age. There were app...
The eye lens grows throughout life by cell accrual on its surface and can change shape to adjust the...
Purpose: To calculate age-related and per diopter (D) accommodative changes in crystalline lens and ...
To report calculated crystalline lens power and describe the distribution of ocular biometry and its...
PURPOSE: To investigate longitudinal changes in refraction and biometry in Chinese adults. DESIGN: P...
To investigate longitudinal changes in refraction and biometry in Chinese adults.Population-based pr...
Purpose. To study the relationships between the refractive power of the crystalline lens, overall re...
Purpose. To report on calculated lens power in adults in relation to other ocular components of refr...
Purpose: To explore the relationship between lens power and refractive error in older adults followi...
Purpose: To quantify changes in ocular dimensions associated with age, refractive error, and accommo...
Background: To investigate the distribution of refractive errors and their characteristics in older ...
Abstract Background Few studies have investigated the prevalence of refractive error (RE) in older a...
Purpose: To describe the prevalence of and risk factors for myopia and other refractive errors in a ...
To report the methodology and findings of a large scale investigation of burden and distribution of ...
ObjectiveTo describe the ocular biometry and determinants of refractive error in an adult population...
We measured optical and biometric parameters of emmetropic eyes as a function of age. There were app...
The eye lens grows throughout life by cell accrual on its surface and can change shape to adjust the...
Purpose: To calculate age-related and per diopter (D) accommodative changes in crystalline lens and ...