New Spine Robot to Serve As Backbone of Quadriplegic Robots

 A new spine robot is on the horizon. Called Ecce1, the spine robot is designed to serve as the backbone of quadruped robots. It is based on a mechanical modular model of the human backbone, which incorporates the compliance between vertebrae, and the architecture of the spine. The mechanical modular backbone consists of two setsquares connected by jacks parallel to the diabolo's axis, which minimizes vibration and allows for more precise movements.

The first surgeries performed with the new robot are expected to occur in the current month of 2022. The technology is currently being tested at Medtronic's Yale New Haven Hospital, located on the Saint Raphael campus. Upon successful testing, the robot is expected to be used in spine surgery at Yale New Haven Hospital. It is anticipated that the first  top spine surgery bangalore  will be performed with the robotic spine in the current month of 2022.

This robotic spine system is equipped with sophisticated imaging and planning software. It provides the surgeon with a 3D image of the backbone and plans transactions with extreme accuracy. It also incorporates corporate modules for logic and biomechanical chains and a computing program to provide bone. The surgeon can control the space of all anatomical structures using real-time feedback. In the future, this robot may even replace the surgeon, which will save countless hours of time.

This robotic spine system may also be used for pelvic and cervical fixation. It may also be used for invasive spinal procedures, such as resection of neoplastic lesions or deformity correction. While there are many advantages of using robotic technology, the cost of the robots will likely limit their use in resource-poor settings. It is hoped that this technology will reduce the need for surgery and improve patient outcomes.

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