Estimation of ocular volume from axial length.
Where this comes from
- Record sourced from PubMed, PMID 24985726.
- Also identified by DOI 10.1136/bjophthalmol-2013-304652.
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Abstract
To determine which biometric parameters provide optimum predictive power for ocular volume. Sixty-seven adult subjects were scanned with a Siemens 3-T MRI scanner. Mean spherical error (MSE) (D) was measured with a Shin-Nippon autorefractor and a Zeiss IOLMaster used to measure (mm) axial length (AL), anterior chamber depth (ACD) and corneal radius (CR). Total ocular volume (TOV) was calculated from T2-weighted MRIs (voxel size 1.0 mm(3)) using an automatic voxel counting and shading algorithm. Each MR slice was subsequently edited manually in the axial, sagittal and coronal plane, the latter enabling location of the posterior pole of the crystalline lens and partitioning of TOV into anterior (AV) and posterior volume (PV) regions. Mean values (±SD) for MSE (D), AL (mm), ACD (mm) and CR (mm) were -2.62±3.83, 24.51±1.47, 3.55±0.34 and 7.75±0.28, respectively. Mean values (±SD) for TOV, AV and PV (mm(3)) were 8168.21±1141.86, 1099.40±139.24 and 7068.82±1134.05, respectively. TOV showed significant correlation with MSE, AL, PV (all p<0.001), CR (p=0.043) and ACD (p=0.024). Bar CR, the correlations were shown to be wholly attributable to variation in PV. Multiple linear regression indicated that the combination of AL and CR provided optimum R(2) values of 79.4% for TOV. Clinically useful estimations of ocular volume can be obtained from measurement of AL and CR.
Medical subject headings
- Adolescent
- Adult
- Anterior Chamber
- Anterior Chamber/anatomy & histology
- Axial Length, Eye
- Axial Length, Eye/anatomy & histology
- Biometry
- Cornea
- Cornea/anatomy & histology
- Eye
- Eye/anatomy & histology
- Female
- Humans
- Interferometry
- Magnetic Resonance Imaging
- Male
- Organ Size
- Refraction, Ocular
- Refraction, Ocular/physiology
- Young Adult