Senology

Kaira advances breast cancer detection through precision firmware engineering for digital mammography scanners. Our high-resolution imaging systems integrate real-time data acquisition, adaptive radiation control, and micrometric positioning, enhancing diagnostic accuracy while prioritizing patient safety and comfort.

Advancing breast imaging with precision

High-resolution scanning for early detection

Kaira played a key role in the development of the digital horizontal mammography scanner, focusing on enhancing imaging precision, patient safety, and diagnostic accuracy.

Through advanced firmware engineering, Kaira ensured seamless integration of high-resolution data acquisition, motor control, and radiation optimization, making the scanner a cutting-edge tool for early breast cancer detection.

Real-Time Control for Imaging Systems

Enhancing diagnostic accuracy with robust firmware

The digital horizontal mammography scanner is a state-of-the-art medical imaging device designed to perform high-resolution breast scans with exceptional clarity.

It enables early detection of abnormalities, improving diagnostic outcomes while prioritizing patient comfort and safety through optimized radiation exposure.

How does it work?

The technology

The scanner operates by utilizing high-resolution radiological sensors to capture detailed tissue images, while a precision-controlled motor system ensures micrometric adjustments for optimal positioning.

Advanced adaptive algorithms regulate radiation levels, balancing the need for image quality with the reduction of patient exposure, ultimately improving both safety and diagnostic reliability.

Our contribution

Safer imaging with minimal radiation

Kaira contributed to the project by developing the firmware that governs the device’s core functions.

This included implementing a data acquisition system capable of processing high-resolution imaging in real time, designing motor control solutions for precise scanner movement, and integrating radiation optimization algorithms that intelligently adjust exposure levels, ensuring patient safety without compromising diagnostic effectiveness.