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SeeTreat Medical

SeeTreat Medical offers ART.1, an AI-powered software that automates adaptive radiotherapy workflows. The platform analyzes daily patient imaging and dose delivery, flagging deviations to enable faster treatment decisions and improve accessibility.

Sydney, Australia262K+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

The widespread adoption of adaptive radiotherapy (ART) is hindered by its complexity, high cost, and significant resource requirements, leading to a substantial gap between its proven clinical benefits and actual patient access. Traditional ART workflows are time-consuming and labor-intensive, often requiring manual data analysis across multiple systems, which delays critical treatment decisions and limits scalability.

Solution

SeeTreat Medical provides ART.1, an AI-driven software solution designed to streamline and automate the adaptive radiotherapy workflow. ART.1 integrates with existing linear accelerators and treatment planning systems to automatically analyze daily patient imaging, calculate delivered dose, and propagate contours for every structure and fraction. The platform provides objective, evidence-based decision support by flagging significant deviations and prioritizing cases that require clinical review, thereby reducing the time from detection to decision-making from days to minutes. This enables clinicians to focus on critical cases, enhancing treatment precision and accessibility without requiring hardware upgrades or additional staffing.

Target Audience

Primary customers are radiation oncology departments, hospital networks, and cancer centers seeking to implement or scale their adaptive radiotherapy programs, particularly those facing resource constraints or aiming to improve treatment workflow efficiency.

Features

  • Automated synthetic CT generation from daily CBCT for improved image quality and dose calculation accuracy.
  • Deformable image registration and contour propagation algorithms designed for challenging cases, including artifacts and anatomical changes.
  • Fraction-by-fraction dosimetric and volumetric analytics for all critical structures, providing a longitudinal treatment history.
  • Automated prioritization of patient cases based on configurable protocol thresholds for dosimetric and volumetric deviations.
  • Seamless integration with existing linear accelerators and treatment planning systems, operating as a software-only solution.
  • Decision support tools that present objective evidence of treatment deviations, facilitating faster and more confident replan decisions.
  • Background analysis engine that categorizes and prioritizes results to optimize clinical review workflows.
  • Purpose-built for offline adaptive radiotherapy, enhancing efficiency and scalability for clinics with limited resources.
This profile is AI-generated and may contain inaccuracies.