HomeElectronics NewsPortable ultrasound system could help detect breast cancer

Portable ultrasound system could help detect breast cancer

A portable ultrasound device could help find breast cancer earlier, allow more frequent breast checks, and help doctors monitor patients at home or in clinics.

An experimental validation setup shows the 3D ultrasound probe positioned on a tissue-mimicking breast phantom for the visualization of an embedded tumor model.
Credit: Courtesy of the researchers
An experimental validation setup shows the 3D ultrasound probe positioned on a tissue-mimicking breast phantom for the visualization of an embedded tumor model. Credit: Courtesy of the researchers

Researchers at the Massachusetts Institute of Technology (MIT) have developed a portable ultrasound system that could allow breast cancer screening to be performed more often, especially for people at high risk of developing the disease. The latest version produces clearer images and includes a guided interface that allows people without ultrasound training to perform scans.

The system is designed to detect tumors, cysts, and microcalcifications between annual mammograms. It can also be used to monitor patients after breast cancer treatment in a clinic or at home.

The research team improved image quality by adding a backing layer to the ultrasound transducer. The layer focuses sound waves, reduces acoustic and electrical noise, and supports a wider frequency range, resulting in clearer images.

The researchers also developed an adaptive beamforming algorithm that adjusts for differences in how sound waves travel through tissues such as skin and fat. This improves image reconstruction and increases image resolution by up to 10%.

To evaluate the system, 10 volunteers with no ultrasound experience were asked to locate embedded targets inside a breast tissue model. Participants identified the targets more often using the new system than with a conventional ultrasound probe.

The team also developed a computer interface that guides users to place the probe in the same position during each scan. This allows repeated scans from the same location, which is useful for monitoring treatment progress or tracking conditions such as fibroadenomas and microcalcifications.

In another trial involving seven participants, users were able to place the probe in the required position during repeated scans using the interface.

The system builds on an earlier prototype consisting of an ultrasound probe connected to a processing module about the size of a smartphone. It captures 3D images of the breast by scanning two or three locations.

The researchers plan to adapt the interface for smartphones and tablets, making the system easier to carry and use outside hospitals. They also believe it could increase access to ultrasound imaging in regions with limited availability of trained technicians.

Nidhi Agarwal
Nidhi Agarwal
Nidhi Agarwal is a Senior Technology Journalist at Electronics For You, specialising in embedded systems, development boards, and IoT cloud solutions. With a Master’s degree in Signal Processing, she combines strong technical knowledge with hands-on industry experience to deliver clear, insightful, and application-focused content. Nidhi began her career in engineering roles, working as a Product Engineer at Makerdemy, where she gained practical exposure to IoT systems, development platforms, and real-world implementation challenges. She has also worked as an IoT intern and robotics developer, building a solid foundation in hardware-software integration and emerging technologies. Before transitioning fully into technology journalism, she spent several years in academia as an Assistant Professor and Lecturer, teaching electronics and related subjects. This background reflects in her writing, which is structured, easy to understand, and highly educational for both students and professionals. At Electronics For You, Nidhi covers a wide range of topics including embedded development, cloud-connected devices, and next-generation electronics platforms. Her work focuses on simplifying complex technologies while maintaining technical accuracy, helping engineers, developers, and learners stay updated in a rapidly evolving ecosystem.

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