Method of providing surgical guidance
Methods, systems, and computer readable media for automated intraoperative surgical guidance in medical images are disclosed. A system and method generally for analyzing subject image data, calculating surgical decision risks and autonomously providing recommended pathways or actions that support the decision-making process of a surgeon to predict optimized implant and subject outcomes (ex. implant guidance, fracture reduction, anatomical alignment) by a graphical user interface.
1. A method to provide a surgical guidance indicator for use in an orthopedic implant procedure comprising: providing a computing platform configured to execute one or more automated artificial intelligence models, wherein the one or more automated artificial intelligence models are trained on data from a data layer, wherein the data layer includes a plurality of annotated fluoroscopic images, wherein the automated artificial intelligence models are trained to provide a user with intra-operative surgical guidance; receiving an intra-operative fluoroscopic image of the orthopedic implant; analyzing said intra-operative fluoroscopic image using a deep learning model from the algorithm layer and the plurality of annotated fluoroscopic images from the data layer, and generating a grid data predictive, by artificial intelligence engine, map showing surgical outcome classification values as color hues on an electronic display device based on the alignment of the fluoroscopic intra-operative image with the grid data predictive map, wherein each color hue shows a predicted track for success level of surgical outcome selected from the group consisting of: a nail entry point, a screw trajectory, and an implant position.
2. The method of claim 1 wherein each color hue shows predicted track for success level of surgical outcome for an instrument position.