Ezer Ultra-Widefield Retinal Camera Ezer Panorama
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Ezer Panorama Ultra-Widefield Retinal Camera
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ezer panorama - us ophthalmic
170° in a single shot — see what a 45° camera never shows

Traditional fundus imaging covers only 15%–20% of the posterior retina, which is why peripheral tears, holes, detachments and peripheral diabetic changes are so easily missed. A single Ezer Panorama capture covers 82% of the total retinal area and reaches all the way to the ora serrata. The lesion you were not looking for is already in the frame.

ezer panorama - us ophthalmic
Up to 260° with 9-point automatic montage

Nine internal fixation targets guide the patient automatically, with no operator intervention, and the system stitches the captures into a single seamless 260° panorama in real time — no manual post-processing. Seven selectable fields of view (8°, 23°, 45°, 90°, 135°, 145° and 170°) switch with one click as lossless optical zoom, so you go from a detailed macula or disc study to a full-retina overview without changing a lens.

ezer panorama - us ophthalmic
Confocal laser imaging — four wavelengths, four depths

Instead of a single white flash, the Panorama scans with four laser wavelengths simultaneously and separates the retina into layers, so you can localize a lesion by depth and not just by position.
Blue (488 nm) images the vitreous and the vitreoretinal interface.
Green (525 nm) gives clean detail of the retinal vascular layer for microvascular abnormalities.
Red (635 nm) penetrates to the retinal pigment epithelium and choroid.
Infrared (785 nm) goes deepest, showing the full retinal structure and overall thickness.
Confocal scanning also suppresses stray light, which is what makes high-contrast imaging possible through an undilated pupil of just 2.5 mm.

ezer panorama - us ophthalmic
No dilation, no waiting room, no contact

The Panorama reaches the ora serrata without pharmacological dilation, which removes the 20–30 minute wait, the blurred vision and the light sensitivity that keep patients from coming back for screening. The adjustable chin rest and flexible forehead rest mean the patient's face never presses against an imaging window and the operator never has to reposition the patient's head by hand — better comfort, and one less infection-control concern in a shared lane.

Fully automatic — the image quality does not depend on who takes it

Automatic left/right eye recognition, automatic eye-position guidance, automatic pupil localization, autofocus, automatic refractive compensation from -25D to +20D, automatic capture and automatic montage. One click completes the exam. Capture takes ≤0.12 seconds per frame, with real-time infrared preview so the operator sees the fundus live before firing. In practice this means a technician on their first week produces the same image a retinal photographer would, and results are comparable from visit to visit and from site to site — which is what makes a real screening program possible.

ezer panorama - us ophthalmic
4096 × 4096 sensor — the panorama holds up under magnification

A wide field is only useful if it survives being zoomed into. A full-frame 4096 × 4096 CMOS sensor at 4 μm/pixel resolves microcapillary networks and subtle peripheral lesions across the entire field, center and periphery alike, and guarantees distortion-free stitching when the field expands to 170° and 260°. Real-time noise reduction, super-resolution processing and automatic image-quality assessment are applied on capture.

Type Non-mydriatic ultra-widefield confocal scanning laser fundus camera (CSLO)
Light source Four lasers: blue 488 nm, green 525 nm, red 635 nm, infrared 785 n
Single-shot field of view 170°
Montage field of view Up to 260° (real-time, automatic and manual stitching)
Selectable fields of view 8° / 23° / 45° / 90° / 135° / 145° / 170° — one-click lossless optical zoom
Imaging modes ≥9: MC (four-laser layered), IR, RF, G-FAF, B-FAF, FFA, ICGA, simultaneous FFA+ICGA, photoreceptor imaging, blood flow imaging, vitreous dynamic recording
Image size 4096 × 4096 pixels
Image resolution Optical ≤12 μm/pixel · Digital ≤4 μm/pixel
Image capture speed ≤0.12 seconds per frame
Image capture speed ≤0.12 seconds per frame
Real-time IR preview 15 frames per second
Video capture 0.4 ~ 3.35in (10 ~ 85mm)
Video capture 30 fps independent mode · 15 fps synchronous mode
Fixation targets 9 internal positions
Refractive compensation -25D to +20D
Minimum pupil size 2.5 mm
Mydriasis Not required
Automation Auto L/R eye recognition, eye-position guidance, pupil localization, focus, refractive compensation, capture and montage
Image processing Real-time noise reduction, super-resolution processing, image quality assessment
AI analysis 15+ quantitative structural indicators · 40+ fundus lesion annotations · DR staging
Patient positioning Adjustable chin rest and flexible forehead rest (no operator–patient head contact)
Head movement Up / down / left / right / forward / backward
Operation Mouse-click and remote control (no joystick required)
3D simulation 3D stereoscopic eyeball display of fundus images
Data sharing ≥3 viewing accounts; records viewable in exam room and consultation room
Type Non-mydriatic ultra-widefield confocal scanning laser fundus camera (CSLO)
Light source Four lasers: blue 488 nm, green 525 nm, red 635 nm, infrared 785 n
Single-shot field of view 170°
Montage field of view Up to 260° (real-time, automatic and manual stitching)
Selectable fields of view 8° / 23° / 45° / 90° / 135° / 145° / 170° — one-click lossless optical zoom
Imaging modes ≥9: MC (four-laser layered), IR, RF, G-FAF, B-FAF, FFA, ICGA, simultaneous FFA+ICGA, photoreceptor imaging, blood flow imaging, vitreous dynamic recording
Image size 4096 × 4096 pixels
Image resolution Optical ≤12 μm/pixel · Digital ≤4 μm/pixel
Image capture speed ≤0.12 seconds per frame
Image capture speed ≤0.12 seconds per frame
Real-time IR preview 15 frames per second
Video capture 0.4 ~ 3.35in (10 ~ 85mm)
Video capture 30 fps independent mode · 15 fps synchronous mode
Fixation targets 9 internal positions
Refractive compensation -25D to +20D
Minimum pupil size 2.5 mm
Mydriasis Not required
Automation Auto L/R eye recognition, eye-position guidance, pupil localization, focus, refractive compensation, capture and montage
Image processing Real-time noise reduction, super-resolution processing, image quality assessment
AI analysis 15+ quantitative structural indicators · 40+ fundus lesion annotations · DR staging
Patient positioning Adjustable chin rest and flexible forehead rest (no operator–patient head contact)
Head movement Up / down / left / right / forward / backward
Operation Mouse-click and remote control (no joystick required)
3D simulation 3D stereoscopic eyeball display of fundus images
Data sharing ≥3 viewing accounts; records viewable in exam room and consultation room

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