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Zeiss Cirrus HD-OCT 4000 OCT Spectral Domain OCT HD

$4,500.00

The Cirrus HD-OCT is a non-contact, high resolution tomographic and biomicroscopic imaging device. It is indicated for in-vivo viewing, axial cross-sectional, and three-dimensional imaging and measurement of anterior and posterior ocular structures, including cornea, retina, retinal nerve fiber layer, ganglion cell plus inner plexiform layer, macula, and optic nerve head. The Cirrus normative databases are quantitative tools for the comparison of retinal nerve fiber layer thickness, macular thickness, ganglion cell plus inner plexiform layer thickness, and optic nerve head measurements to a database of normal subjects. The Cirrus HD-OCT is intended for use as a diagnostic device to aid in the detection and management of ocular diseases including, but not limited to, macular holes, cystoid macular edema, diabetic retinopathy, age-related macular degeneration, and glaucoma.

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Description

Zeiss Cirrus HD-OCT 4000 OCT Spectral Domain OCT HD

Accessories

  •     The ZEISS Certified Factory Direct Cirrus 4000 HD-OCT also includes the full Accessory Kit
  •     External Fixation Light
  •     Test Eye
  •     Mini Keyboard
  •     Optical Mouse
  •     Dust Cover
  •     Metric 5A/250v Fuse
  •     14 Ft. CAT 5e Network Cable
  •     USB Cable
  •     IEC 320 to NEMA 12 inch Power Cable
  •     IEC 320 39in. Power Cable
  •     Install Disc including Roxio Basic
  •     Symbol Sheet
  •     OCT Primer Guide
  •     Quick Start Guide

HD-OCT Imaging

  • Methodology: Spectral Domain OCT
  • Optical Source: superluminescent diode (SLD), 840 nm
  • Optical Power: < 725 μW at the cornea
  • Scan Speed: 27,000 A-scans per second
  • A-Scan depth: 2.0 mm (in tissue), 1024 points
  • Axial resolution: 5 μm (in tissue)
  • Transverse resolution: 15 μm (in tissue)

Fundus Imaging

  • Methodology: Line scanning ophthalmoscope
  • Live Fundus Image: During alignment and during OCT scan
  • Optical Source: Superluminescent diode (SLD), 750 nm
  • Optical Power: < 1.5 mW at the cornea
  • Field of View: 36 degrees W x 30 degrees H
  • Frame rate: >20 Hz
  • Transverse resolution: 25 μm (in tissue)

Iris Imaging

  • Methodology: CCD Camera
  • Resolution: 1280 x 1024
  • Live iris image: During alignment

Electrical, Physical and Environmental

  • Weight: 38kg (83 lbs)
  • Dimensions: 65L x 44W x 53H (cm)
  • Fixation: Internal, external
  • Internal fixation focus adjustment: -20D to +20D (diopters)
  • Input devices: Keyboard, mouse
  • Electrical rating (115V) Single Phase, 100/120V~ systems:50-60Hz, 5A
  • Fuse rating (115V) T 5A 250V
  • Electrical rating (230V) Single Phase, 220/240V~ systems:50-60 Hz, 2.5A
  • Fuse rating (230V) Fuse rating: T 5A 250V
  • Convenience Receptacle output ratings 115V~, 0.5 A Max, 50-60 Hz
  • Temperature (transport and storage) -40º to +70º C
  • Relative humidity (transport and storage) 10% to 100%, including condensation
  • Atmospheric pressure (transport and storage): 500 hPa to 1060 hPa
  • Temperature (operation) +10º to +35º C
  • Relative humidity (operation) 30% to 75%, excluding condensation
  • Atmospheric Pressure (operation) 700 hPa to 1060 hPa

Computer Zeiss Cirrus HD-OCT 4000 OCT Spectral Domain OCT HD

  • • High performance multi-core processor
  • • Internal storage: > 80,000 scans
  • • CD-RW, DVD-ROM drive
  • • Integrated 15″ color flat panel display.

The Cirrus HD-OCT is a non-contact, high resolution tomographic and biomicroscopic imaging device. It is indicated for in-vivo viewing, axial cross-sectional, and three-dimensional imaging and measurement of anterior and posterior ocular structures, including cornea, retina, retinal nerve fiber layer, ganglion cell plus inner plexiform layer, macula, and optic nerve head. The Cirrus normative databases are quantitative tools for the comparison of retinal nerve fiber layer thickness, macular thickness, ganglion cell plus inner plexiform layer thickness, and optic nerve head measurements to a database of normal subjects. The Cirrus HD-OCT is intended for use as a diagnostic device to aid in the detection and management of ocular diseases including, but not limited to, macular holes, cystoid macular edema, diabetic retinopathy, age-related macular degeneration, and glaucoma.

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DescriptionThe Cirrus HD-OCT is a non-contact, high resolution tomographic and biomicroscopic imaging device. It is indicated for in-vivo viewing, axial cross-sectional, and three-dimensional imaging and measurement of anterior and posterior ocular structures, including cornea, retina, retinal nerve fiber layer, ganglion cell plus inner plexiform layer, macula, and optic nerve head. The Cirrus normative databases are quantitative tools for the comparison of retinal nerve fiber layer thickness, macular thickness, ganglion cell plus inner plexiform layer thickness, and optic nerve head measurements to a database of normal subjects. The Cirrus HD-OCT is intended for use as a diagnostic device to aid in the detection and management of ocular diseases including, but not limited to, macular holes, cystoid macular edema, diabetic retinopathy, age-related macular degeneration, and glaucoma.In recent years, the medical aesthetic industry has seen rapid growth in the number of body sculpting and body contouring procedures performed. The trend is projected to continue growing with the overall market growth of 16.3% year over year through 2020.Sculpting With Open ArmstruSculpt iD offers a unique and personalized approach to improve upper arm contouring and definition. Unlike other devices, there is no placement limitation, it is easy to set up, and fast to treat. Provide your patients improved freedom to open their arms and wear sleeveless shirts with confidence.
  • Unique approach to treat skin with laxity
  • Sculpt challenging areas
  • Synchronized treatment zones
  • No downtime
The OPD-Scan III is an automated 5 in 1 instrument that combines topography, wavefront, autorefraction, keratometry, and pupillometry — allowing accurate and reliable analysis of corneal aberration.

Experience 6 analyses in 1 device: refraction, keratometry, topography, tonometry, pachymetry and dry eye analysis.

CIRRUS HD-OCT 5000 is configured with the highest resolution visualization capabilities and sophisticated clinical applications such as Advanced RPE analysis to track retinal pigment epithelial integrity and Ganglion Cell Analysis to assess glaucomatous loss in the macula that may not be evident in the peripapillary region. The new FastTrac  retinal tracking reduces eye motion artifacts without sacrificing patient throughput with a proprietary scan acquisition strategy, high speed 20 Hz LSO camera, and single-pass alignment scanning. This feature enables the highest resolution B-Scans to be captured in identical locations from visit to visit providing precise assessment of change in targeted pathologies.

Combination of auto and manual analyses

All three manual analysis methods can be performed on the same image and also on auto-analyzed images. The versatility of combining automated and manual analyses allows analysis of the range of pathology in a comprehensive practice.
The CEM-530 with new advanced software and enhanced image capture system allows rapid image acquisition. 
Content

Zeiss Cirrus HD-OCT 4000 OCT Spectral Domain OCT HD

Accessories
  •     The ZEISS Certified Factory Direct Cirrus 4000 HD-OCT also includes the full Accessory Kit
  •     External Fixation Light
  •     Test Eye
  •     Mini Keyboard
  •     Optical Mouse
  •     Dust Cover
  •     Metric 5A/250v Fuse
  •     14 Ft. CAT 5e Network Cable
  •     USB Cable
  •     IEC 320 to NEMA 12 inch Power Cable
  •     IEC 320 39in. Power Cable
  •     Install Disc including Roxio Basic
  •     Symbol Sheet
  •     OCT Primer Guide
  •     Quick Start Guide
HD-OCT Imaging
  • Methodology: Spectral Domain OCT
  • Optical Source: superluminescent diode (SLD), 840 nm
  • Optical Power: < 725 μW at the cornea
  • Scan Speed: 27,000 A-scans per second
  • A-Scan depth: 2.0 mm (in tissue), 1024 points
  • Axial resolution: 5 μm (in tissue)
  • Transverse resolution: 15 μm (in tissue)
Fundus Imaging
  • Methodology: Line scanning ophthalmoscope
  • Live Fundus Image: During alignment and during OCT scan
  • Optical Source: Superluminescent diode (SLD), 750 nm
  • Optical Power: < 1.5 mW at the cornea
  • Field of View: 36 degrees W x 30 degrees H
  • Frame rate: >20 Hz
  • Transverse resolution: 25 μm (in tissue)
Iris Imaging
  • Methodology: CCD Camera
  • Resolution: 1280 x 1024
  • Live iris image: During alignment
Electrical, Physical and Environmental
  • Weight: 38kg (83 lbs)
  • Dimensions: 65L x 44W x 53H (cm)
  • Fixation: Internal, external
  • Internal fixation focus adjustment: -20D to +20D (diopters)
  • Input devices: Keyboard, mouse
  • Electrical rating (115V) Single Phase, 100/120V~ systems:50-60Hz, 5A
  • Fuse rating (115V) T 5A 250V
  • Electrical rating (230V) Single Phase, 220/240V~ systems:50-60 Hz, 2.5A
  • Fuse rating (230V) Fuse rating: T 5A 250V
  • Convenience Receptacle output ratings 115V~, 0.5 A Max, 50-60 Hz
  • Temperature (transport and storage) -40º to +70º C
  • Relative humidity (transport and storage) 10% to 100%, including condensation
  • Atmospheric pressure (transport and storage): 500 hPa to 1060 hPa
  • Temperature (operation) +10º to +35º C
  • Relative humidity (operation) 30% to 75%, excluding condensation
  • Atmospheric Pressure (operation) 700 hPa to 1060 hPa
Computer Zeiss Cirrus HD-OCT 4000 OCT Spectral Domain OCT HD
  • • High performance multi-core processor
  • • Internal storage: > 80,000 scans
  • • CD-RW, DVD-ROM drive
  • • Integrated 15″ color flat panel display.
The Cirrus HD-OCT is a non-contact, high resolution tomographic and biomicroscopic imaging device. It is indicated for in-vivo viewing, axial cross-sectional, and three-dimensional imaging and measurement of anterior and posterior ocular structures, including cornea, retina, retinal nerve fiber layer, ganglion cell plus inner plexiform layer, macula, and optic nerve head. The Cirrus normative databases are quantitative tools for the comparison of retinal nerve fiber layer thickness, macular thickness, ganglion cell plus inner plexiform layer thickness, and optic nerve head measurements to a database of normal subjects. The Cirrus HD-OCT is intended for use as a diagnostic device to aid in the detection and management of ocular diseases including, but not limited to, macular holes, cystoid macular edema, diabetic retinopathy, age-related macular degeneration, and glaucoma.
2020 Cutera Trusculpt iD Monopolar RF Body ContouringPersonalized Body Sculpting:truSculpt iD is the latest body sculpting treatment solution from Cutera, providing a personalized, hands-free and hand-held solution to revolutionize your practice. This powerful, non-invasive, Monopolar RF platform tailors to patients’ individual needs and features Real-Time Temperature Control for clinically proven results, safety, and patient experience. truSculpt iD treats the entire fat layer, resulting in an average of 24% fat reduction.It offers unique handpiece and placement location versatility and customized 15-minute protocols to treat a full abdomen or multiple body areas simultaneously.Sculpting With Open ArmstruSculpt iD offers a unique and personalized approach to improve upper arm contouring and definition. Unlike other devices, there is no placement limitation, it is easy to set up, and fast to treat. Provide your patients improved freedom to open their arms and wear sleeveless shirts with confidence.
  • Unique approach to treat skin with laxity
  • Sculpt challenging areas
  • Synchronized treatment zones
  • No downtime

Sculpting To Get A Leg Up

Thighs are commonly out of proportion with the rest of the lower body causing growing interest in leg sculpting. truSculpt iD offers an individualized and unmatched solution to regain proportion to inner and outer thighs of all shapes and sizes. Give your patients a leg up and the desire to flaunt their youthful shape.
  • Versatile to treat various tissue densities
  • Tailored for areas large and small
  • Flexible treatment configurations
  • Immediately resume normal activities
truSculpt iD Technology truSculpt iD provides an innovative RF technology that delivers clinically proven results to expand your body sculpting business. The system versatility allows for customized treatments to multiple body areas simultaneously based on patients need in as little as one 15-minute treatment protocol.Radiofrequency (RF) Energy truSculpt iD delivers heat to the entire fat layer while maintaining a comfortable skin temperature – optimizing clinical efficacy and maintaining patient comfort.

Nidek OPD-Scan III Corneal Analyzer

Comprehensive vision analysis

OPD-Scan III VS is a device that mainly measures corneal shape (topographer) and refractive error (refractometer). It clarifies causes of vision difficulties through wavefront analysis of information measured over a wide area.


Solutions for face-to-face consulting

Tablet viewer provides four kinds of easy-to-understand reports for explanation and consulting. *The tablet is not included or sold with the OPD-Scan III VS.




Basic information report

Basic information to generally judge the patient’s eye conditions.




Topography report

Intuitive maps and numerical data for comprehending the corneal surface.



Simulation report

Visual performance simulations and MTF graphs for a variety of conditions.




Eye diagram image report

Eye model to visually understand eye conditions ranging from eye fundus to cornea.




Wide range of display patterns


Placido image


Axial map (Additional indication)


Visual Acuity map (Image charts)

Features Nidek OPD-Scan III Corneal Analyzer
  • Five-in-One true refractive workstation for all practitioners
  • Overview summary for optimal clinical decisions
  • A number of summaries
  • Wider measurement area
  • Greater topography resolution, blue placido rings
The OPD-Scan lll is the Five-in-One true refractive workstation combining
  • Wavefront Aberrometer
  • Topographer
  • Auto Refractometer
  • Auto Keratometer
  • Pupillometer and Pupillographer
  1. Irregularity helps determine the best strategy for vision correction. Separation into Total, Corneal and Internal components allows determination of the source of the optical pathology.
  2. PSF images of OPD, Axial, and Internal OPD map simulate objective retinal visual quality from each component of the eye for easy clinical assessment and patient education.
  3. Corneal Spherical Aberration aids in the selection of aspheric IOLs and contact lenses.
  4. Color coded Classification Indices help identify post-LASIK corneas and Keratoconus.
  5. The Astigmatism index aids the implantation of toric IOLs such as incision placement and lens alignment.
  6. A retroillumination image of cataracts captured during the OPD exam allows better understanding of pupillary effects on vision and in patient education.

Rodenstock Alino Multifunction Refractometer

Tune-up your businessExperience 6 analyses in 1 device: Rodenstock Alino Multifunction Refractometer Are you ready for something that is all-in-one, timesaving, space-saving and suits your business perfectly?Have a look at how powerful ALINO can be.6 in 1 solution01 RefractionHaving a good starting value for subjective refraction is essential. The QUICK REF MODE supports this even for uncooperative patients.02 KeratometryKAI (Kerato-asymmetry index) & KRI (Kerato-regularity index) give the first hint of possible irregularities on the cornea. This supports evaluation of the best vision correction or best-fitting contact lens.03 TonometryThe very gentle air puff created by a new generation of air-flow technology means that patients more readily accept the need for regular check-ups of the IOP measurement.04 PachymetryCorrecting the IOP by measuring the central corneal thickness is essential in interpreting the intraocular pressure.05 TopographyVarious topographic maps support you in carrying out vision screenings, contact lens fittings and in patient education.06 Dry EyeObserve the customers’ eye health and evaluate the long-term tolerability of contact lenses.Take advantage of the combination of tests:Additional servicesTonometry + PachymetryContact lens fitting andtolerance controlKeratometry + Topography + Dry EyeEye healthcareTopography + Tonometry + Pachymetry + Dry EyeSpecifications Rodenstock Alino Multifunction Refractometer REFRACTIVE POWER MEASUREMENTSpherical refractive power (S)            -30.00 D to + 25.00 D (at VD = 12.0 mm)Cylindrical power (C)                          0.00 D to ± 12.50 D (at VD = 12.0 mm)Astigmatic axis (A)                              0° to 180°KERATOMETRY MEASUREMENTCorneal curvature radius                    5.00 mm to 13.00 mmCorneal astigmatic axis                      0° to 180°INTRAOCULAR PRESSURE MEASUREMENTMeasurement range                           1 mmHg to 60 mmHG (1 hPa to 80 hPa)PACHYMETRY MEASUREMENTMeasurement range                           300 μm to 800 μmTOPOGRAPHY MEASUREMENTCorneal curvature radius                    5.50 mm to 10.00 mmCorneal astigmatic axis                      0° to 180°AUXILIARY FUNCTIONInterpupillary distance                         Measurement range: 20 mm to 85 mmCorneal diameter and pupil diameter Measurement range: 1.00 mm to 14.00 mmDry eye observation                            Blinking Analysis, Tear Meniscus height, Hyperemia, Meibomian glandsDATA MANAGEMENTInternal Database                               Integrated SD CardPrinter                                                 Integrated thermal printerData Output Type                               3x USB 2.0, 1x LAN, 1x SD Card-slot, 1x WLANExport Format                                     CSV, XML, JPG, PDFDIMENSIONS & ELECTRIC REQUIREMENTSDimensions WDH                               312 × 491 × 450 mmWeight                                                 Approx. 23 kgVoltage                                                100 VAC to 240 VACFrequency                                           50/60 HzPower consumption                            110 VA
Carl Zeiss Cirrus HD-OCT 5000 Smart Advanced Topography HD

Advancing Smart OCT

for Anterior Segment, Glaucoma and Retina
  • Anterior Segment Premier Module
  • PanoMap Wide-Field Display
  • Smart HD Scans
  • En face report
Measurement centering with Foveafinder

Visualization at the speed of CIRRUS

Analyzing a single pathology from multiple views provides comprehensive insight and analysis of the clinical situation. How this helps you:
  • Spot small areas of pathology. Tightly spaced B-scans, (either 30 or 47 μm apart), in the cube ensure that small areas of pathology are imaged. For reference, a human hair is about 40-120 μm in diameter.
  • Visualize the fovea. Scans that are spaced further apart than in the CIRRUS cube may miss the central fovea.
  • Fuel for analysis. Millions of data points from the cube are fed into the Zeiss proprietary algorithms for accurate segmentation, reproducible measurements and registration for change analysis.
  • Take the pressure off the operator. As long as the scan is placed in the vicinity of the fovea or optic nerve, the software automatically centers the measurements after the capture.
  • See the tissue from different perspectives. View the cube data from all angles, with 3D rendering, OCT fundus images and Advanced Visualization™.
  • Future ready. Previously captured CIRRUS cubes can be analyzed using new analyses.
 
Measurement centering with Foveafinder

Tracking at the speed of CIRRUS

FastTrac™ reduces eye motion artifacts without sacrificing patient throughput with a proprietary scan acquisition strategy, high speed 20 Hz LSO camera, and single-pass alignment scanning With FastTrac, scan at the highest resolution at the same location at each visit.
Watch video
Measurement centering with Foveafinder

Assessment at the speed of CIRRUS

Measurement centering with FoveaFinder and AutoCenter
On the macula, the unique FoveaFinder technology ensures the ETDRS and ganglion cell plus inner plexiform layer measurement frameworks are centered on the fovea.AutoCenter™ function automatically centers the 3.4 mm diameter peripapillary RNFL calculation circle around the disc for precise placement and repeatable registration. The placement of the circle is not operator dependent. Accuracy, registration and reproducibility are assured.
Measurement centering with Foveafinder

Manage at the speed of CIRRUS Carl Zeiss Cirrus HD-OCT 5000 Smart Advanced Topography HD

Guided Progression Analysis (GPA™) for Assessing RNFL and Optic Disc Change
GPA™ compares RNFL thickness and optic disc measurements over time and determines if statistically significant change has occurred.Focal Progression Analysis – Up to 6 progression maps are compared to two baselines. Areas of statistically significant change are color-coded yellow when first noted and then red when the change is sustained over consecutive visits. Trend Analysis with Rate of Change – RNFL thickness values are plotted over time. Trends are calculated and confidence intervals are shaded when rate of change is statistically significant.
 

Nidek CEM-530 Specular Microscope

The analysis results with graphic and color-coded cell images helps the clinician to rapidly and effectively evaluate the endothelial cell layer.In addition to conventional central and peripheral specular microscopy, the CEM-530 includes a unique function to capture paracentral images.
  • Paracentral specular microscopy
  • Faster measurements and two-second auto analysis
  • Comprehensive analysis
  • Advanced manual analysis functions
  • Easy operation
  • Additional features with CEM Viewer for NAVIS-EX
Combination of auto and manual analyses
All three manual analysis methods can be performed on the same image and also on auto-analyzed images. The versatility of combining automated and manual analyses allows analysis of the range of pathology in a comprehensive practice.Features
  • Multi area specular microscopy
  • Enhanced usability and quick analysis
  • Advanced manual analysis functions
  • Combination of auto and manual analyses
  • Additional features with CEM Viewer for NAVIS-EX
Multi area specular microscopy
In addition to conventional central and peripheral specular microscopy, the CEM-530 includes a NIDEK original function that captures paracentral images. The combination of central, paracentral, and peripheral imaging provides a broader, overall view that can be used for detailed morphological and quantitative evaluation of the endothelial layer and individual cells.


Enhanced usability and quick analysis

The 3D auto tracking and auto shot functions result in a user friendly and patient friendly experience. Data analysis within 2 seconds allows efficient patient flow.

Detail analysis


Advanced manual analysis functions
Center point

Select the approximate center of a cell. The cells are detected based on the surrounding points. This method is effective for areas where groups of cells are clumped together.




Corner point

Trace the outlines of the cells to be analyzed by selecting the corners of each cell. This method is suitable for detailed identification of the size and dimension of isolated cells.




Pattern select

Select a hexagonal reference pattern that is similar to the cell size and drag it onto the cell to be analyzed. This method is effective for rough identification of the size and dimension of the cells.


 Combination of auto and manual analyses 
All three manual analysis methods can be performed on the same image and on auto-analyzed images. The versatility of combining automated and manual analysis on the same image allows for better clinical interpretation of the diverse range of pathology in a comprehensive practice.


Additional features with CEM Viewer for NAVIS-EX* (optional)
CEM Viewer is software used for viewing and working with CEM-530 data via NAVIS-EX. This function enhances the capability of the CEM-530 with additional features and increases the efficiency of any clinic. *NAVIS-EX is optional software and is required for use of the CEM Viewer.
Data management and endothelial cell count

Unlimited NAVIS-EX database is available for review on the CEM Viewer. The basic functions of the CEM-530 such as endothelial cell count are available on the CEM Viewer.




Progression follow-up and comparison

Multiple examination data sets are displayed in chronological order for follow-up. Additionally, two data sets are displayed for comparison. Endothelial changes can be monitored over time with this function.





Paracentral display with peripheral
The images and analyses of the paracentral and peripheral areas are displayed providing a comprehensive image of endothelial cells.

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