The startup develops a clinical process management platform that enhances the safety of stereotactic neurological treatment planning through automated path planning and streamlined procedural workflows. By integrating these technologies, the platform enables medical professionals to deliver more precise and safer treatments to patients undergoing stereotactic procedures.
Funding
$260K 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.
Founders
Product
Problem
Stereotactic neurological procedures, such as SEEG and LiTT, require meticulous planning to ensure accuracy and patient safety. Traditional planning methods can be complex, time-consuming, and may not fully integrate the various imaging modalities required for comprehensive treatment strategies. This can lead to increased risk and suboptimal outcomes for patients undergoing these interventions.
Solution
StereoDive offers a clinical process management platform designed to enhance the safety and efficiency of stereotactic neurological treatment planning. The platform streamlines multidisciplinary workflows by seamlessly integrating different imaging modalities and automating path planning. Its virtual reality environment allows for multimodal visualization, enabling medical professionals to collaboratively plan and optimize sEEG and LiTT pipelines. By providing tools to navigate complex anatomical structures and avoid critical areas, StereoDive aims to facilitate more precise and safer stereotactic procedures.
Target Audience
The primary users are neurosurgeons, neurologists, and other medical professionals involved in stereotactic neurological treatment planning, particularly those specializing in epilepsy surgery and related interventions.
Features
- Multimodal VR environment for comprehensive visualization of patient anatomy
- Streamlined workflows to facilitate multidisciplinary collaboration
- Automated path planning to optimize trajectory selection and minimize risk
- Integration of various imaging modalities for a complete view of the surgical landscape
- Features tailored for sEEG and LiTT pipeline optimization