OCT Huvitz

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OCT Huvitz

Features of HOCT-1 Optical Coherence Tomography
▪ High Speed
▪ Accurate and Stable Image Averaging
▪ Vividly Visualized Retinal Layers
▪ Brightness Level Adjustment
▪ Combined-One
▪ Compact Design
▪ Web Browsing System
▪ Fast and Stable Full Auto Mode
▪ Semi Auto Mode
▪ Wide Area Scan
▪ Smart Scan Technology with Motion Detection Technology
▪ Providing Various and Useful Scan Patterns
▪ Progression to track pathological changes

▪ Compare before and after patient's symptom
▪ 3D Modeling in High Speed and Wide Area
▪ OU to Cross-Analyze Function of Binocular
▪ Summary : Monocular-Scan and OCT / Fundus image
▪ Detailed Report
▪ 9mm Wide Chamber View
▪ 9mm High Resolution Cornea Thickness Measurement
▪ Corneal Thickness Map
▪ High Resolution and Performance 12 Megapixel Camera
▪ Auto-Detection Of Pupil Size and Auto Flash Level Function
▪ Panorama Function for Wide Range of Peripherals
▪ Fixation Target for Flexible Configuration



optical coherence tomography hoct-1 huvitz - us ophthalmic

High Speed
Provides High-speed Scan (68,000 A-scan/sec.), High-quality Image by using Huvitz’s outstanding optical technology and innovative image software. Shows extensive information, such as 3D structure of Retina, Macula's thickness and separation, in a vivid image.

Accurate and Stable Image Averaging
It is very important to obtain high-quality images that are accurate and stable in all OCTs. However, it’s not easy to capture these due to patient eye movement over the period of the test. The HOCT detects fast eye movements with image processing algorithms of fast Scan Speed* and Smart Viewing Technology(SVT)** and scans up to 68,000 points per second, and calibrates to create a high-quality optical image. HOCT can acquire high-quality images without any repetitive operation for first time users.

*68,000 A-scan / sec., Less than 1.4 sec. in 6x6 mm2 3D shooting
** Smart Viewing Technology : Huvitz’s Speckle-Noise-Reduction System & Pre-Acquiring Algorithm to acquire high-quality images


optical coherence tomography hoct-1 huvitz - us ophthalmic

Vividly Visualized Retinal Layers
Visualizing with precise B scans and smooth 3D images at faster scan speeds makes it easier to observe pathological shapes and status in stratified Retinal Layers. It is also useful to further elucidate the pathological rheobase of Macula and Optic Disc, including factors that impair Photoreceptor Function, Retinal & Choroidal Vasculature(vascular system) in a slice image for Retinal Layer consists of 7 pieces.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Brightness Level Adjustment
Precisely identify lesions by minutely adjusting image's brightness and contrast. In this way, specific parts of lesions can be highlighted which help users to easily see details.


optical coherence tomography hoct-1 huvitz - us ophthalmic


Combined-One
By combining OCT, and PC, it can generate high resolution images providing multi-purpose functions for diagnosis. It saves both time and space by performing frontal view(Enface) of eye diseases, Tomography, cross-compare and diagnosis in a single run.
Provides maximum psychological stability to the patient without re-shooting and reduces stress during shooting*. Easily checking lesion’s position by Fundus Image, it precisely guides the location of the OCT Scan Image.

*Motion detection technology:Smart Scan Technology (SST) is applied to achieve perfect images without re-shooting even though there’re flicker or movement (see Smart Scan page).



Compact Design
Thanks to HOCT's space-saving design its perfect for hospitals and research areas with many diagnosis devices and treatment equipment, It can maximize the convenience of users as well as patients, thus saving time and space.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Web Browsing System
Patient's test data can be analyzed anywhere on the Internet. You can check and analyze all data of HOCT through Web Browser such as Internet Explorer, Safari, Chrome without installing special software separately.



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Fast and Stable Full Auto Mode
Simply press the button once to capture the image quickly and easily without any errors with Auto Tracking, Optimize, Auto Shooting at the correct position. Depending on the application, select Semi Auto to obtain more detailed images.

Semi Auto Mode
You can obtain a more precise image by shooting Semi Auto Mode turning one’s gaze to the side for patients with eye diseases such as cataract, strabismus, or optic disk and peripheral measurements. Semi Auto Mode can also be applied to eyes with weak signals. XY alignment, focus is automatically adjusted, and manual operation during auto adjustment is also possible. Focusing and Firing functions can be judged and involved by users so that users can obtain images in an intuitive way.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Wide Area Scan(12mm x 9mm)
A quick scan covers Macula and Optic Disk areas extensively. By scanning around Optic Disc or Macula for patient's pathological status, you can check the Thickness Maps between RNFL(Retinal Nerve Fiber Layer), GCL(Ganglion Cell Layer) and RPE Layers.

Smart Scan Technology with Motion Detection Technology
Image analyzer with Huvitz's unique Smart Scan Technology(SST) obtains a complete and perfect C-scan image by detecting any motion of eye flicker or movement that would prevent disappearance of scan line and image collection during measurement.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Providing Various and Useful Scan Patterns
12 different patterns make it available to choose and apply the optimized pattern to the main symptoms or the area of retinal disease without repetitive work or time-wasting.



optical coherence tomography hoct-1 huvitz - us ophthalmic


Progression to track pathological changes
OCT scan and fundus image of a patient can be compared at a glance to sequential measurement results from baseline to present. Progression from past to present helps analyze disease progression and treatment process. Thickness, Enface, and ETDRS can be superimposed on the IR or Fundus at each measurement point so that the change in thickness of nerve fiber can be confirmed according to the transition. It also provides a trace graph so you can study at a glande.



Compare before and after patient's symptom
You can compare and analyze the baseline data of a patient with the current data.



optical coherence tomography hoct-1 huvitz - us ophthalmic

3D Modeling in High Speed and Wide Area
High-speed, wide area(12mm x 9mm) 3D images help you quickly and comprehensively understand the condition of the Retina. Also, layer thickness maps can be used from ILM to RPE, respectively and Morphological changes on the measured surface of the layers can also be visually confirmed.



optical coherence tomography hoct-1 huvitz - us ophthalmic

OU to Cross-Analyze Function of Binocular
Provides comparative analysis for Macular Thickness, RNFL Thickness, ONH(Optic Nerve Head) of binocular.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Summary : Monocular-Scan and OCT / Fundus image
Provides a summary analysis of Macula retina, RNFL, ONH at a glance. Helps identify whether follow-up examinations are needed or not. Easy to explain the results to the patient after diagnosis.



Detailed Report
Provides patient's pathological structure and relevant & important data in easy-to-read format and also can print out the report on analysis screen. Analysis results can be viewed via Web Browser and printed out with different types of reports.

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optical coherence tomography hoct-1 huvitz - us ophthalmic

9mm Wide Chamber View
Measurement of ACA(Anterior Chamber Angle) between cornea and Iris allows diagnosis and management of angle-closure glaucoma patients.

9mm High Resolution Cornea Thickness Measurement
The 9mm high-resolution Cornea Scan provides an objective view of the structure of the eyeball and displays a cross-sectional image of the measured corneal thickness.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Corneal Thickness Map
Corneal's irregularity, Thinnest point, etc. can be identified with a corneal thickness map to visualize the patient's corneal thickness at a glande.



optical coherence tomography hoct-1 huvitz - us ophthalmic

High Resolution and Performance 12 Megapixel Camera
High performance camera with Motion Artifact Suppression Technique provides high resolution images and also its low intensity of flash, fast & quiet operation maximize measurement quality.



Auto-Detection Of Pupil Size and Auto Flash Level Function
It accurately measures the pupil size and automatically adjusts the intensity of light according to pupil size. Even patients with small pupil size can be easily measured without switching mode. Selecting Small Pupil Mode, to be adjusted more intensive light for the small pupil size.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Panorama Function for Wide Range of Peripherals
Multiple built-in capture color fundus images at different positions and automatically stitch them to optimized total overview. By providing high-resolution images with minimal distortion, you can immediately see key information for a comprehensive assessment of patient’ eye.



optical coherence tomography hoct-1 huvitz - us ophthalmic

Fixation Target for Flexible Configuration
Fixation target can be set on the display for fine adjustment of a specific part of the eyeball.



CLINIC EXAMS with HOCT-1F
High-quality, high-resolution OCT and color fundus images from HOCT are extremely useful for analysis and clinical diagnosis as the pathologic structure and status of each layer is accurately observed and recorded.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Vitreomacular Traction(VMT) Syndrome : 80-years old, female, OD
Vitreomacular traction syndrome is a potentially visually significant disorder of the vitreoretinal interface characterized by an incomplete posterior vitreous detachment with the persistently adherent vitreous exerting tractional pull on the macula and resulting in morphologic alterations and consequent decline of visual function.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Glaucoma : 51-years old, male, OD
Glaucoma is a disease that damages your eye's optic nerve. The same symptoms are found at Thickness map, Fundus, TSNIT chart, Clock chart.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Macular Hole(MH) : 63-years old, female, OS
A macular hole is a retinal break commonly involving the fovea.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Macular Degeneration(MD) : 94-years old, male, OD
Age-related macular degeneration is a disease that blurs the sharp, central vision you need for straight-ahead activities.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Epiretinal Membrane(ERM) : 62-years old, male, OD
Epiretinal membrane is a disease of the eye in response to changes in the vitreous humor or more rarely, diabetes.


optical coherence tomography hoct-1 huvitz - us ophthalmic

Diabetic Retinopath(DR) : 76-years old, male, OD
Diabetic retinopathy is when high blood sugar levels cause damage to blood vessels in the retina. These blood vessels can swell and leak. Or they can close, stopping blood from passing through. Sometimes abnormal new blood vessels grow on the retina.

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