Purpose:To assess the test-retest repeatability of intraocular pressure (IOP) and ocular pulse amplitude (OPA) measurements by Pascal tonometer (PT) and evaluate possible influential factors. Methods:The study included 200 consecutive subjects (100 normal, 100 POAG) from 5 different Italian clinics. IOP was measured once by Goldmann applanation tonometer (GAT) and twice by PT (PT1, PT2) in randomized sequence. Difference between PT1 and PT2, OPA1 and OPA2, and GAT and PT1 and 2 was assessed by t-test. The percentage of PT2 and OPA2 falling respectively within \ub11.0 mmHg from PT1 and within \ub10.5 mmHg from OPA1 was calculated. Regression analysis was used to assess the influence of demographic factors (age, sex), ophthalmic data (diagnos...
Background: Repeatability and validity are important components of precision in any measurement syst...
[Excerpt] Purpose: The aim of this study was to evaluate the accuracy of measurement of intraocular ...
Purpose:To assess repeatability (intra-observer variability) and reproducibility (inter-observer var...
Aims: To assess the test - retest variability of intraocular pressure (IOP) and ocular pulse amplitu...
AIMS: To assess the test-retest variability of intraocular pressure (IOP) and ocular pulse ampli...
Purpose: The Pascal (R) dynamic contour tonometer (DCT) was designed to measure IOP independently of...
The Pascal dynamic contour tonometer (PDCT) is designed to measure intraocular pressure (IOP) largel...
PURPOSE: The Pascal dynamic contour tonometer (DCT) allows measurement of intraocular pressure (IOP)...
PURPOSE: To compare intraocular pressure (IOP) measurements by Goldmann applanation tonometer (GAT),...
PURPOSE: Comparison of the magnitude and repeatability of the intraocular pressure (IOP) measured wi...
PURPOSE: To compare the intraocular pressure (IOP) readings taken by ICare, Pascal dynamic contour...
Background: The purpose of this study was to assess the repeatability and reproducibility of the PT1...
Background: This study investigates: agreement in intraocular pressure measurements between three to...
BACKGROUND: To assess repeatability (intra-observer variability) and reproducibility (inter-operator...
Background: To assess repeatability (intra-observer variability) and reproducibility (inter-operator...
Background: Repeatability and validity are important components of precision in any measurement syst...
[Excerpt] Purpose: The aim of this study was to evaluate the accuracy of measurement of intraocular ...
Purpose:To assess repeatability (intra-observer variability) and reproducibility (inter-observer var...
Aims: To assess the test - retest variability of intraocular pressure (IOP) and ocular pulse amplitu...
AIMS: To assess the test-retest variability of intraocular pressure (IOP) and ocular pulse ampli...
Purpose: The Pascal (R) dynamic contour tonometer (DCT) was designed to measure IOP independently of...
The Pascal dynamic contour tonometer (PDCT) is designed to measure intraocular pressure (IOP) largel...
PURPOSE: The Pascal dynamic contour tonometer (DCT) allows measurement of intraocular pressure (IOP)...
PURPOSE: To compare intraocular pressure (IOP) measurements by Goldmann applanation tonometer (GAT),...
PURPOSE: Comparison of the magnitude and repeatability of the intraocular pressure (IOP) measured wi...
PURPOSE: To compare the intraocular pressure (IOP) readings taken by ICare, Pascal dynamic contour...
Background: The purpose of this study was to assess the repeatability and reproducibility of the PT1...
Background: This study investigates: agreement in intraocular pressure measurements between three to...
BACKGROUND: To assess repeatability (intra-observer variability) and reproducibility (inter-operator...
Background: To assess repeatability (intra-observer variability) and reproducibility (inter-operator...
Background: Repeatability and validity are important components of precision in any measurement syst...
[Excerpt] Purpose: The aim of this study was to evaluate the accuracy of measurement of intraocular ...
Purpose:To assess repeatability (intra-observer variability) and reproducibility (inter-observer var...