Corneal Topography & Keratometry
Placido-ring measurements map the curvature and refractive power of the front corneal surface and provide keratometric values used for corneal assessment and contact-lens fitting.

Our office offers Rabin color testing, ERG/VEP, B-scan, UBM, retinal and anterior OCT, corneal topography, OCULUS Keratograph 5M testing, and Pentacam tomography for precise diagnosis and monitoring.
Schedule Comprehensive ExamHigh-resolution imaging allows us to see structures of the eye in unprecedented detail.
Non-contact optical imaging that creates detailed cross-sections of the retina, macula, and optic nerve. Essential for detecting and monitoring:
Non-contact cross-sectional imaging of the front of the eye. It complements Pentacam and UBM by documenting:
Rotating Scheimpflug camera that captures a complete 3D model of the anterior segment, measuring:
Placido-ring topography maps the front corneal surface and supports advanced ocular-surface analysis. Critical for:
Diagnostic ultrasound that images the internal structures of the eye when direct visualization is not possible:
High-frequency ultrasound provides detailed imaging of anterior structures that may be hidden behind the iris. Used for:
The Keratograph 5M platform combines corneal topography, dry-eye analysis, contact-lens fitting tools, and high-resolution imaging. Some analyses require optional software modules, so availability depends on the office configuration. Your doctor selects and confirms the tests that answer your specific clinical question.
Placido-ring measurements map the curvature and refractive power of the front corneal surface and provide keratometric values used for corneal assessment and contact-lens fitting.
Analyzes corneal-shape patterns and indices that may flag keratoconus or other corneal irregularity for closer clinical evaluation.
Separates the corneal power map into spherical power, decentration, regular astigmatism, and irregular components to help explain image distortion.
Evaluates optical aberration patterns from the front corneal surface, including higher-order irregularities that may affect visual quality.
Uses the corneal map and lens database to support lens selection and simulate a fluorescein pattern before comparing it with the actual fit.
Automatically measures how long the tear film remains stable after a blink without placing fluorescein dye in the eye.
Measures the height of the tear reservoir along the lower eyelid to help assess tear quantity.
Records the tear film’s surface interference pattern to evaluate the distribution and appearance of its protective oil layer.
Documents movement of visible particles within the tear film after blinking, providing information about tear-film behavior and viscosity.
Infrared imaging shows the structure of the meibomian glands in the upper and lower lids and documents gland shortening or dropout.
Detects conjunctival vessels and objectively grades bulbar and limbal redness in nasal and temporal regions.
Blue-light photography and video document fluorescein patterns used to assess ocular-surface staining, tear-film break-up, and contact-lens fit.
Measures pupil size under different illumination conditions and can compare the two eyes for asymmetry.
High-resolution images and video document visible corneal, conjunctival, eyelid, and contact-lens findings for comparison over time.
Measures the position of the near zone or segment when evaluating multifocal and specialty contact-lens designs.
Uses the camera image and measurement tools to document eyelid orientation and position when clinically relevant.
Lid-parallel conjunctival folds are assessed separately at the slit lamp, then the clinician manually enters the grade into the Keratograph/JENVIS dry-eye report; the Keratograph does not acquire this finding.
Combines symptom-questionnaire results with tear meniscus height, NIKBUT, redness, and other selected findings in an organized dry-eye report.
Beyond imaging, we assess how well your eyes function and respond.
Measures the electrical response of retinal cells to light stimulation. Used to diagnose:
Quantitatively measures red-, green-, and blue-cone contrast sensitivity rather than giving only a pass/fail screening result.
Maps your peripheral vision to detect blind spots and vision loss patterns. Essential for:
Advanced analysis system that grades cataract density and type, helping determine:
Comprehensive evaluation of tear film quality and meibomian gland health.
Infrared imaging of the meibomian glands reveals gland structure and health. This helps diagnose meibomian gland dysfunction (MGD), a leading cause of dry eye.
Intense Pulsed Light (IPL) therapy treats meibomian gland dysfunction and inflammatory dry eye by targeting abnormal blood vessels and reducing inflammation.
Rapid in-office tests provide immediate answers for targeted treatment.
Detects elevated MMP-9 levels, a marker of ocular surface inflammation. Results in 10 minutes help determine if anti-inflammatory treatment is needed for dry eye.
Identifies adenoviral conjunctivitis (pink eye) with high accuracy. Helps distinguish viral from bacterial infection for appropriate treatment.
Traditional lab tests can take days. Our in-office diagnostics provide immediate results, allowing us to start the right treatment during your visit. No waiting, no follow-up calls — just accurate diagnosis and prompt care.
Neurolens addresses eye misalignment that causes digital eye strain, headaches, and neck pain. Our advanced measurement system detects even small misalignments that traditional exams miss.
You may benefit from a Neurolens evaluation.
Our advanced diagnostic technology allows for earlier detection and better treatment outcomes. Schedule your comprehensive exam today.
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