Robot Guided Oblique Spinal Stabilization

Patent №

US 8,992,580

Granted

2015-03-31

Filed 2011

Owner

MAZOR ROBOTICS LTD.

Lab

AI components

1

vision

Assignment

Recorded

Dataset

AIPD

2023_r1 edition

Application

13132095

A robotic system for performing minimally invasive spinal stabilization, using two screws inserted in oblique trajectories from an inferior vertebra pedicle into the adjacent superior vertebra body. The procedure is less traumatic than such procedures performed using open back surgery, by virtue of the robot used to guide the surgeon along a safe trajectory, avoiding damage to nerves surrounding the vertebrae. The robot arm is advantageous since no access is provided in a minimally invasive procedure for direct viewing of the operation site, and the accuracy required for oblique entry can readily be achieved only using robotic control. This robotic system also obviates the need for a large number of fluoroscope images to check drill insertion position relative to the surrounding nerves. Disc cleaning tools with flexible wire heads are also described. The drilling trajectory is determined by comparing fluoroscope images to preoperative images showing the planned path.

VisionA61B 34/30A61B 17/1671A61B 17/1757A61B 17/320016A61B 17/3205A61B 17/7001A61B 90/11A61B 17/7064+11 more

AI classification

Vision0.88
Natural language0.00
Evolutionary computation0.00
AI hardware0.00
Machine learning0.00
Knowledge representation0.00
Speech0.00
Planning0.00

Ownership

MAZOR ROBOTICS LTD.

assignment · 313530417

Assignors

BAR, YOSSEF, ZEHAVI, ELI, SHOHAM, MOSHE, LIEBERMAN, ISADOR

On an employer assignment, the assignors are typically the inventors.

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