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University of Calgary - Advanced Contract Award Notice / Notice of Proposed Procurement - Autonomous Medical Platform

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AB-2026-06673International

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The University of Calgary is seeking to acquire the CODI Cobot autonomous medical platform from Cobionix Corporation, which includes a three-year software license agreement. This procurement is intended for the Cumming School of Medicine to standardize breast and axilla ultrasound examinations for patients undergoing neo-adjuvant therapy for breast cancer. By utilizing a robotic-assisted system, the university aims to eliminate variability caused by operator technique, probe pressure, and positioning, thereby ensuring more consistent imaging results and reliable comparisons over time. The CODI platform will provide controlled movement, repeatable probe positioning, and logged force data, while capturing synchronized imaging and trajectory data for research and reproducibility auditing. This system is designed to support clinical and research workflows through robotic-assisted scanning and patient guidance. The procurement process is managed under solicitation number AB-2026-06673, with the performance of the contract taking place in Calgary, Alberta.

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University of Calgary acquiring Cobionix CODI platform for standardized breast ultrasound medical imaging.

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AgencyUniversity of Calgary
Contacts1 person available
OfficeN/A
Organization / AgencyUniversity of Calgary
Office AddressN/A
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Francis BrosnanSenior Procurement Specialist

Full Description

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The University of Calgary (UCalgary) intends to purchase an autonomous medical platform, including a three-year software licence agreement, from Cobionix Corporation for its CODI Cobot system. The Cumming School of Medicine (CSM) requires a platform to support greater standardization in breast and axilla ultrasound examinations for breast cancer patients following neo-adjuvant therapy. Current ultrasound examinations can vary due to operator technique, probe pressure, probe angle, sweep path, and patient positioning. This variability may affect consistency across examinations and limit the ability to compare imaging results over time. The required platform must support consistent ultrasound scanning by maintaining controlled movement, repeatable probe positioning, and logged probe force/pressure during the examination. It must also capture synchronized imaging, positional, force, and trajectory data to support downstream analysis, reproducibility auditing, and research use. The CODI platform is an autonomous medical robotic system designed to support patient-facing clinical and research workflows, including robotic-assisted ultrasound scanning, patient guidance, and procedure support. CSM will use the system to improve consistency and reliability in ultrasound examinations.

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