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Trans-scleral tactile tonometry: an instrumented approach
Péter P Polyvás1, Gholam Peyman, Eniko T Enikov
1Advanced Micro & Nano Systems Laboratory, Department of Aerospace and Mechanical Engineering, University of Arizona, 1130 N. Mountain Ave., Tucson, AZ 85721, USA.
Medical Engineering & Physics
|September 26, 2012
Summary
A new trans-scleral tonometer uses digital palpation to measure intraocular pressure (IOP). This novel device, validated on porcine eyes, shows potential for accurate IOP measurement with specific indentation rate controls.
Area of Science:
- Ophthalmology and Biomedical Engineering
- Ocular Biomechanics
Background:
- Accurate intraocular pressure (IOP) measurement is crucial for diagnosing and managing glaucoma.
- Current tonometry methods have limitations, necessitating novel approaches for improved accuracy and ease of use.
- Digital palpation tonometry offers a principle for IOP assessment, but requires precise instrumentation.
Purpose of the Study:
- To investigate the feasibility of a novel trans-scleral tonometer utilizing instrumented digital palpation.
- To validate the tonometer's performance using enucleated porcine eyes and an analytical model.
- To determine optimal conditions for accurate IOP measurement with the novel device.
Main Methods:
- Development and testing of a trans-scleral tonometer with two offset force probes.
- Experimental validation using enucleated porcine eyes, including distention and indentation tests.
- Analysis of force-indentation data using an analytical model accounting for aqueous humor outflow and visco-elastic properties.
Main Results:
- Observed force data hysteresis attributed to stress relaxation in the corneo-scleral shell.
- Identified optimal indentation rates below 0.5 mm/s for accurate IOP measurement (10-35 mmHg).
- Established a calibration curve: 10 mN force variation correlates to 1 mmHg IOP change.
Conclusions:
- The novel trans-scleral tonometer demonstrates feasibility for IOP measurement.
- Accurate IOP readings require controlled indentation rates and appropriate pressurization methods (anterior chamber preferred).
- The device shows promise for clinical application, potentially with a contoured facial mask implementation.
