A team of Polish physicists and engineers is developing a portable device that could detect worsening heart failure at home before fluid buildup in the lungs leads to severe breathlessness and emergency hospitalisation.
Heart failure occurs when the heart cannot pump blood efficiently enough to meet the body’s needs. Patients may experience fatigue, shortness of breath and fluid accumulation in their tissues. Around 64 million people worldwide live with the condition, including approximately 1.2 million in Poland.
As populations age, the problem is becoming increasingly serious. A patient’s condition can deteriorate suddenly between medical check-ups, and one of the early signs of worsening heart failure can be increasing fluid retention in the lungs. Initially, this may be difficult to recognise, but when severe breathing problems appear, the patient often requires urgent hospital care.
Current diagnostic methods, including imaging and laboratory tests, are not suitable for continuous monitoring at home. X-rays and CT scans require specialised equipment and involve ionising radiation, ultrasound depends on the experience of the examiner, and blood biomarkers do not always clearly indicate worsening heart failure. There is currently no simple, portable method for quantitatively monitoring changes taking place in the chest.
To address this gap, researchers from five laboratories at the Warsaw University of Technology and the University of Łódź are combining two technologies in a single device: low-power microwave sensing and bioimpedance measurements.
The first method uses very low-power microwaves. Because excess fluid changes the way tissues interact with electromagnetic signals, analysing microwave measurements could reveal changes linked to fluid accumulation in the lungs.
The second method — bioimpedance — measures how the body conducts a weak electrical current, providing additional information about hydration, heart rate and breathing.
The researchers say that combining the two approaches should make the system more reliable. If one measurement is affected by patient movement, electrode placement or environmental interference, the second signal could help distinguish a genuine physiological change from an error.
A special graphene flake screen, being developed at the Warsaw University of Technology, will separate the two measurement channels. Software will then analyse the results and present clear indicators for both patients and doctors.
The Foundation for Polish Science has awarded more than PLN 8.28 million for the three-year project under the TEAM NET FENG programme. The researchers will develop several versions of the prototype, tissue models that mimic the properties of the human body, software and documentation needed for further testing and certification.
The project combines expertise from physicists, electronics specialists, mechatronics engineers and biomedical researchers. The team will draw on microwave technology and helical antennas developed and patented by the University of Łódź, as well as the Warsaw University of Technology’s experience in bioimpedance measurements, medical signal analysis, microwave technology and graphene shielding.
The device will not yet be a finished medical product. The researchers must complete further testing, clinical validation and the regulatory approval process before it could be used in routine healthcare.
However, if the technology meets its goals, it could allow doctors to identify worsening heart failure earlier and adjust treatment before symptoms become severe enough to require emergency hospitalisation.
The researchers’ goal is to move heart failure monitoring from occasional check-ups to continuous observation in patients’ own homes, allowing doctors to intervene before the disease spirals out of control. (PAP)
PAP – Science in Poland
kmp/ agt/
tr. RL
Before adding a comment, please read the Terms and Conditions of the Science in Poland forum.
View the discussion thread.
Poland is joining the race to develop spacecraft that can repair, refuel and protect satellites in orbit, with the country preparing to build its first unmanned servicing vehicle.
Dear Reader,
In line with the resolution of the European Parliament and of the Council of April 27, 2016 on the protection of natural persons with regard to the processing of personal data and on the free movement of such data, and repealing Directive 95/46/EC (General Data Protection Regulation), we are informing you that we are processing your data.
The administrator of the data is Foundation of the PAP, headquartered in Warsaw, 6/8 Bracka St., 00-502 Warsaw.
The data in question are the data which are collected while You are using our services, including websites and other functionalities provided by Foundation of the PAP, mainly recorded in cookie files and other internet identifiers, which are installed on our webpages by us and the trusted partners of PAP SA.
The collected data are used exclusively for the following purposes:
• providing services electronically
• uncovering abuse of services
• statistical measurements and improvement of
The legal basis for processing the data is the provision and improvement of the service, as well as ensuring security, which constitutes the administrator’s legally justified interest. The data can be provided, at the request of the administrator of the data, to entities belonging to the entities which are entitled to obtain the data on the basis of current legal regulations. The person whom the data concern has a right to access the data, correct and remove them, as well as limit their processing. The person can also withdraw their consent to the processing of personal data.
All notifications concerning protection of personal data should please be directed to: fundacja@pap.pl or in writing to: Foundation of the PAP, 6/8 Bracka St., 00-502 Warsaw, with a note: ‘protection of personal data’.
More information about the principles of processing personal data and the User’s rights can be found in Privacy Policy. Learn More I agree