Disior develops 3D image analytics software that automates the measurement and modeling of tissue structures in CT and MRI scans, providing clinicians with objective data for accurate diagnosis and treatment planning. This technology reduces the time required for analysis to under five minutes, minimizing human error and enhancing patient-specific surgical outcomes.
Funding
Funding not disclosed


Founders
Product
Problem
Manual analysis of CT and MRI scans for diagnosis and treatment planning is time-consuming and prone to human error. This can lead to inefficiencies in clinical workflows and potentially impact the accuracy of diagnoses and treatment plans.
Solution
Disior provides 3D image analytics software that automates the measurement and modeling of tissue structures from CT and MRI scans. The software offers anatomy-specific modules that enable clinicians to obtain objective data for diagnosis, treatment planning, and assessment of treatment outcomes. By automating the analysis process, Disior reduces the time required for analysis to under five minutes, minimizes human error, and enhances patient-specific surgical outcomes. The software integrates with existing DICOM and 3D data transfer systems to simplify clinical workflows.
Target Audience
The primary users are specialist clinicians, including orthopedic surgeons and radiologists, who require objective data for diagnosis, treatment planning, and assessment of treatment outcomes.
Features
- Automated segmentation and 3D analysis of human anatomies from CT, CBCT, and WBCT scans
- Anatomy-specific modules for foot & ankle, hand & wrist, CMF orbital, and surgical planning
- Automated analytics that describe the hindfoot, midfoot, forefoot, hallux valgus, and minimum joint gaps
- Automated analytics of orbital shape, volume, surface area, fracture position, and maximum prolapse
- Planning module available in combination with the Foot & Ankle and Hand & Wrist Modules
- Virtual planning tools with live bone alignment measures to support treatment decisions
- Distance mapping to assess bone-to-bone distance in detail
- Ability to create 3D-printed surgical guides (via third parties) based on the surgical plan