Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 4.8 mm, Short, Veterinary Use Only (US
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 4.8 mm, Short, Veterinary Use Only (US
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 7mm, Veterinary Use Only (US Only)
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 7mm, Veterinary Use Only (US Only)
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 5mm, Veterinary Use Only (US Only)
30% higher magnification over standard otoscopes. Nearly a full view of the tympanic membrane. Ability to focus to fine tune the view. Greater tip retention and easier tip removal., MacroView Reusable Specula, 5mm, Veterinary Use Only (US Only)