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Customized Low-Field MRI Solutions for Next-Generation MRI-Guided Radiotherapy

This innovation enables transformation of conventional radiotherapy systems into MRI-guided adaptive therapy platforms with affordable cost and minimal siting rennovations.

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Next-generation Technologies

Our innovative low-field MRI hardware combined with AI-empowered software is designed to revolutionize radiotherapy by delivering advanced imaging for precise and effective treatment, streamlining MRI-guided radiotherapy workflow, and enabling personalized treatment decision making. We are committed to delivering meaningful value to the entire radiation oncology community and advancing cancer treatment.

Retrofit Low-Field MRI

We develop customized low-field MRI retrofits for existing radiotherapy systems, seamlessly integrating advanced MRI technology to enable image-guided treatment adaptation and personalized therapy. Designed with affordability and minimal site renovation, our solution facilitates widespread clinical adoption and makes upgrading existing radiotherapy systems more accessible.

AI-Driven Adaptive Platforms 

Our next-generation platform enables true adaptive radiotherapy on conventional LINACs by seamlessly integrating low-field MRI with existing CBCT—without compromising system functionality. With advanced image processing, integrated dose engines, and real-time data pipelines, it streamlines clinical workflows and bridges the gap to AI-driven, image-guided adaptive radiotherapy.

AI-Driven Personalized Solutions

By leveraging MR-based tissue features and predictive modeling, clinicians can tailor dosimetry and

fractionation strategies to individual patient response patterns. Integrating imaging, clinical data, and prior dose plans into a decision-support model enables data-driven, personalized treatment - enhancing treatment efficacy, outcomes, and patient quality of life.

Milestones

Scroll to learn about our company’s journey

YEAR

2018

Technology Initiation

Proprietary imaging and system design, PCTs filed at iTORCH lab, UT Southwestern Medical Center, Dallas, TX, USA

YEAR

2020

Funded Research

Received Cancer Prevention & Research Institute of Texas (CPRIT) High-Risk High-Impact award to iTORCH lab

Resources

Strategic Partnerships

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