TowardPi BMizar 400kHz Full-Range Ultra-Widefield Swept-Source OCT

BMizar (BM-400K) showcases the industry’s most powerful OCT “engine” with a 400kHz swept-source. Its exceptional optic design elevates the experience of OCT Angiography to an unprecedented level.

BMizar (BM-400K) showcases the industry's most powerful OCT "engine" with a 400kHz swept-source. Its exceptional optic design elevates the experience of OCT Angiography to an unprecedented level. With high-definition imaging of the retina, choroid, and anterior, it effortlessly covers an incredibly large area in a single scan (achieving a 24 mm width OCTA in just 7-15 seconds).

This revolutionary technology is a game changer for clinical practices, particularly in the diagnosis and treatment of diseases such as DR, RVO, RAO, and more. Furthermore, the BMizar offers a vast dioptric adaptive range, making it feasible to perform all types of OCT/OCTA scans on small animals like rabbits, cavies, and even mice without the need for additional lenses.

It is truly a dream machine for any OCT user.

OCT optical source Swept Source
Center wavelength 1060nm
OCT B - scan
Scan speed 400,000 A - scans/sec
Max. Length (posterior) 24mm
Max. Length (anterior) 24mm
Scan depth (posterior) 6mm
Scan depth (anterior) 6mm
Refractive adjustment range -35D to +45D
Axial optical resolution ≤6μm
Transverse optical resolution 10μm
Fundus Imaging
Methodology Scanning Laser Ophthalmoscopy (SLO)
SLO wavelength 850nm
SLO FOV 60°×60°
Minimum pupil diameter 2.0mm
Eye tracking speed 128Hz
OCT Angiography
Max. Single scan size (anterior) 18mm×18mm
Max. Single scan size (posterior) 24mm×20mm
Maximum resolution (single scan) 1536×1280
Max. size (montage) 42mm×40mm
Software Functions
Anterior segment (AS) quantification
AS panoramic parameters
Thickness/volume measurement (retina)
Thickness/volume measurement (choroid)
Glaucoma analysis (GMA, ONH, etc.)
Blood flow quantification (retina)
Blood flow quantification (choroid)
Blood flow quantification (optic disk)
Blood flow quantification (AS)
Posterior curvature
3D structure
3D vessel