



Applications
The 3-D MCS converter functions as a mechanism to transform 2D images to 3-D in the operating room. This allows laparoscopic surgery to be presented to the surgeon in full real time volume. Studies have shown that this decreases Time and increases accuracy. A simple HDMI connection from the camera to the monitor is all that is required. All personnel in the operating theater can view the procedure in 3D to include all medical students and residents as well as All nursing personnel.
Medical students and residents can study anatomy and view surgical procedures directly from any video source as YouTube and visualize all these images by a simple HDMI connection. Internet downloads of most surgical procedures and anatomy are widely available. The addition of 3D increases greatly the level of understanding Of all this knowledge. This is especially notable in areas of microsurgery and small sized operative zones where viewing of the actual procedure is otherwise limited to only a few individuals.
Schools and libraries can utilize the 3D MCS converter to transform videos and images of geography architecture, scientific materials engineering and even artistic materials into full high definition 3G through a mere laptop connection.
Family and friends will find the 3D MCS converter box to be a portable and adaptable platform to bring many enjoyable activities Into the home. Family movies, pictures and all TV and videos can be seen in serious high definition 3D. The wow factor for children and family members is incredible. Sports fans can watch all their favorite sports events in amazing 3D. Children can have serious good times playing all their favorite video games cartoons and shows immersed in the third dimension. Just imagine being able to show all family and friends home videos pictures in glorious 3D. It’s a whole new world of viewing pleasure opening up.
Specialty Applications
General surgery
Cases of laparoscopic surgery are enhanced for both performance accuracy and teaching. Specialized instrumentation is not required as standard equipment adapts.
Otolaryngology
Specialists in this field can perform and teach small zone and microsurgical cases in full volume increasing safety and providing assistance with depth and defining close quarters anatomy and decreasing the learning curve while increasing safety. FESS cases can benefit greatly.
Ophthalmology
Teaching of microsurgical cases and performance in the anterior chambers and posterior chambers as well as cataracts is better defined, where volume creations are a great asset for performance and teaching.
Neurosurgery
Delicate and technical zones of surgery are better defined for both surgical engagement and training.
Radiology
X-rays, CT, and MRI scans, and numerous radiological studies are enhanced significantly by adding volumetric data. 3D is increasing greatly as a mode to utilize CT and MRI data both in terms of interpretations and reformatting.
Gastroenterology
3D adds depth and helps define monotonous anatomy which accentuates flat lesions for EMR and ESR that otherwise can be confusing to the endoscopist.
Urology
Major urological procedures and robotic cases are more defined for training and performance when added volume data is provided. Ureteroscopic cases can be better performed and taught.
Gynecology
3D enhances visualization of deep pelvic structures and endoscopic surgery so procedures are performed more safely and technically better defined.