Ziehm Vision RFD 3D
The revolution in 3D imaging
Healthcare providers are challenged to cut costs, meet the needs of an aging demographic, improve the accuracy of clinical outcomes and reduce X-ray exposure during surgical procedures. The answer - led by the C-arm Ziehm Vision RFD 3D - lies in balancing cost efficiency with improved patient care, shorter hospital stays and less-invasive approaches. This groundbreaking mobile 3D C-arm helps to improve surgical outcomes and patient satisfaction while optimizing costs. Building on more than a decade of experience in 3D imaging, the Ziehm Vision RFD 3D features cutting-edge CMOS technology, bundling 2D and 3D functionality for greater intraoperative control, reducing the need for postoperative CT scans, and costly corrective surgeries.
High Resolution
With resolution up to 512³ voxel, the mobile 3D C-arm provides a suitable option for zoom-in or intraoperative imaging in cochlear implantation.The single electrodes with a width of only 0.3 mm are clearly displayed due to the latest enhancements with CMOS flat-panel technology. The implant can be differentiated from the bone very well to determine the exact position.
Ziehm Iterative Reconstruction
The specially developed algorithm ZIR (Ziehm Iterative Reconstruction) optimally minimizes fan and metal artifacts in 3D reconstructions. Additionally, this feature leads to significantly more distinguishable anatomy, defined bone crests and optimum slice views in the coronal, axial, sagittal and individually adjustable planes.
With ZIR
Without ZIR
Color Brings Clarity
Intuitive screw evaluation in 3D imaging
Simplified localization and color-coded differentiation of screws for effective intraoperative communication in 3D imaging.
Excellence in 2D and 3D imaging
2D excellence with advanced 3D technology, delivering high-end multidisciplinary capabilities
Latest CMOS flat-panel technology
Pulsed monoblock generator with 30 kW power performance
Advanced Active Cooling for optimal generator temperature
Automatic optimization of dose and image quality with advanced anatomical programs
Beam Filtration for reduced skin entrance dose without compromising on image quality for all CMOSline systems