Provides AI-powered software and APIs for automated 3D surgical planning, patient-specific instrument design, and real-time CT and X-ray segmentation, enabling faster, more accurate pre-operative workflows. These tools reduce surgery time, improve implant precision, and lower costs by minimizing the need for multiple implant sizes and manual planning.
Funding
$460K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
BIIFFounders
Product
Problem
Traditional surgical planning methods often rely on manual processes and generic implant designs, leading to inefficiencies, increased surgery times, and potential inaccuracies in implant placement. This can result in suboptimal patient outcomes and higher costs due to the need for multiple implant sizes and revisions.
Solution
AlgoSurg offers AI-powered software and APIs that automate 3D surgical planning, patient-specific instrument design, and real-time CT and X-ray segmentation. The platform leverages AI algorithms to generate accurate 3D models from medical imaging data, enabling surgeons to visualize and analyze patient-specific anatomy for optimized pre-operative planning. AlgoSurg's solutions facilitate the design of customized surgical instruments and implants, ensuring precise fit and alignment during procedures. By integrating with surgical robotics platforms and offering cloud-based 3D surgery simulation, AlgoSurg aims to streamline surgical workflows, reduce surgery times, and improve patient outcomes.
Target Audience
AlgoSurg primarily targets orthopedic surgeons, maxillofacial surgeons, and medical device companies seeking to enhance surgical planning, instrument design, and surgical robotics through AI-powered solutions.
Features
- AI-driven auto-segmentation and 3D reconstruction of anatomical structures from CT and X-ray images
- Cloud-based 3D surgery simulation for orthopedic procedures like knee replacement and deformity corrections
- Automatic design of patient-specific instruments (PSIs) based on X-ray or CT data
- AI-based registration of CT and MRI scans for enhanced visualization of bone and soft tissue structures
- Integration with surgical robotics platforms for precise implant placement
- Cloud-based surgery planner for trauma surgeries with bone plate or internal-nail fixation
- API for integrating AI-powered segmentation and 3D reconstruction into existing 3D printing services and software infrastructure
- AI models for customized anatomies and CT data