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CustomSurg

CustomSurg provides an FDA‑cleared AI algorithm, OrthoPlanner™, that automatically generates pre‑operative fracture plans from imaging scans. The platform delivers detailed surgical insights quickly, helping orthopedic trauma surgeons improve accuracy and efficiency. By integrating deep‑tech research from Harvard and ETH Zurich, it supports evidence‑based decision‑making in fracture surgery.

Zürich, SwitzerlandFounded 20149500+ followers
Updated 20 months ago

Funding

Funding not disclosed

CP
Funding rounds are not available yet.

Founders

Product

Problem

Complex joint fractures often lead to unsatisfactory clinical outcomes, with a significant percentage of patients experiencing severe post-operative complications. Current methods for repairing shattered joints rely heavily on the surgeon's experience, leading to subjective treatment approaches.

Solution

CustomSurg offers an AI-driven platform designed to enhance the objectivity and predictability of complex trauma surgery. The platform leverages data-driven biomechanical processes to develop personalized surgical plans and patient-specific implant designs. By quantifying planned treatment strategies based on individual fracture patterns, CustomSurg aims to reduce complications, shorten treatment times, and improve surgical outcomes. The technology facilitates advanced planning services, provides 3D-printed anatomical models for intraoperative visualization, and offers virtual surgery assistance through augmented reality features, enabling surgeons to revisit fracture details and planned bone reconstructions in a touch-less environment.

Target Audience

CustomSurg's primary customers are surgeons, implant manufacturers, and healthcare systems involved in the treatment of complex bone fractures.

Features

  • AI-driven predictive analytics for personalized surgical planning
  • Data-driven biomechanical process for objective treatment approach
  • Patient-specific implant design
  • Advanced planning services quantifying treatment strategies based on fracture patterns
  • 3D-printed anatomical models for intraoperative physical visualization
  • Augmented reality features for virtual surgery assistance, including touch-less revisit of fracture details and planned bone reconstructions
This profile is AI-generated and may contain inaccuracies.