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Biomedical Engineering

Our team investigates fundamental mechanisms and translates findings from bench to bedside, combining preclinical models with clinical insight.

Researcher at ICRC with focus on translational medicine. Combines preclinical insights with clinical practice across cardiology, neurology, and oncology programs.

Currently leads / contributes to interdisciplinary projects bridging molecular biology, imaging, and patient care at St. Anne's University Hospital Brno.

Research Group

Team size
Team size: 18 Researchers
Place
Place: Building B1, 4th Floor
Collaborates with
Collaborates with Mayo Clinic, USA

Head of Research Group

Ing. Pavel Leinveber, Ph.D.
Ing. Pavel Leinveber, Ph.D.
Ing. Pavel Leinveber, Ph.D.

Members

Ing. Pavel Macháč

Ing. Pavel Macháč

Data Manager, Senior IT Specialist

Ing. Zuzana Formánková

Ing. Zuzana Formánková

Ph.D. Student

Ing. Barbora Matoušková

Ph.D. Student

Ing. Martina Kolajová

Ph.D. Student

Ing. Valentina Hrtoňová

Ph.D. Student

doc. MUDr. Martin Pail, Ph.D.

Senior Researcher, Senior Research Specialist

prof. MUDr. Jan Chrastina, Ph.D.

Senior Researcher

Dr. Erik Daniel Fagerholm

Dr. Erik Daniel Fagerholm

Senior Researcher

Ing. Petr Klimeš, Ph.D.

Ing. Petr Klimeš, Ph.D.

Postdoctoral Researcher

Ing. et Ing. Vojtěch Trávníček, Ph.D.

Ing. et Ing. Vojtěch Trávníček, Ph.D.

Postdoctoral Researcher, Research Specialist

Ing. Ladislav Soukup, Ph.D.

Ing. Ladislav Soukup, Ph.D.

Postdoctoral Researcher, Senior IT Specialist

Ing. Ivo Viščor, Ph.D.

Ing. Ivo Viščor, Ph.D.

Postdoctoral Researcher

Vladimíra Macíková

Vladimíra Macíková

Research Nurse

Ing. Mgr. Jan Cimbálník, Ph.D.

Ing. Mgr. Jan Cimbálník, Ph.D.

Principal Investigator, Senior Postdoctoral Researcher, Head Researcher

Ing. Pavel Jurák, CSc.

Senior Postdoctoral Researcher

Mgr. Andrea Dřímalková

Research Coordinator

Ing. Pavel Leinveber, Ph.D.

Ing. Pavel Leinveber, Ph.D.

Head Researcher, Senior Research Team Leader

MUDr. Andrej Nagy

Research Specialist

Team Assistant

Main Objectives

  1. To research various frequency components in the ECG signal and their contribution in clinical practice – spatial and temporal distribution properties in QRS complex on different frequencies using new ultra-high frequency ECG (UHF-ECG) methods and technology.
  2. To analyze EEG high-frequency oscillations (HFOs) and their meaning in physiology and pathophysiology of the epileptic brain.
  3. To research the EEG signal propagation – the brain connectivity in physiology and pathophysiology in epilepsy and Parkinson’s disease.

Research focus

Focuse on the development and testing of new methods and technologies for improved diagnostics for better stratification of heart and brain diseases.

Progressive analyses of weak electrical signals emitted by the body organs through an advanced acquisition of these signals.

We offer high-quality technical engineering services for researchers in terms of biological signals measurement and analyses, as well as the research data management and mining.

Development of new diagnostic technologies and tools in neurology and cardiology.

Technological equipment

  • HiSeM Laboratories – special labs for highly sensitive biological signals measurement, equipped with Faraday cages and special acquisition systems designed for rooms with a highly clean environment (in terms of electromagnetic interference).
  • Flexible Labs – full-range laboratories equipped for cardio and neuro diagnostic methods and measurement of biological signals.

Selected Results

  • Ultra-High-Frequency ECG for the diagnostics of electrical conduction disturbances of the heart ventricles – the new methodology of processing ECG signal. Technology and methodology are covered by US patent and by EU and Czech patent applications.
  • Machine learning models for localization of epileptogenic tissue – new methodology utilizing various intracranial EEG features in support vector machine models or convolutional neural networks to localize seizure generating tissue. Filed US patent.
  • Jurak P., Curila K., Leinveber P., Prinzen FW., Viscor I., Plesinger F., Smisek R., Prochazkova R., Osmancik P., Halamek J., Matejkova M., Lipoldova J., Novak M., Panovsky R., Andrla P., Vondra V., Stros P., Vesela J., Herman D.: Novel ultra-high-frequency electrocardiogram tool for the description of the ventricular depolarization pattern before and during cardiac resynchronization. Journal of Cardiovascular Electrophysiology. 2020, 31(1), 300-307.
  • Halámek J., Leinveber P., Viscor I., Smisek R., Plesinger F., Vondra V., Lipoldova J., Matejkova M., Jurak P.: The relationship between ECG predictors of cardiac resynchronization therapy benefit. 2019, PLoS One, 14(5).
  • Cimbalnik J., Klimes P., Sladky V., Nejedly P., Jurak P., Pail M., Roman R., Daniel P., Guragain H., Brinkmann B., Brazdil M., and Worrell GA.: Multi-feature localization of epileptic foci from interictal, intracranial EEG. Clin. Neurophysiol., 2019, 130(10), 1945–1953.
  • Klimes P., Cimbalnik J., Brazdil M., Hall J., Dubeau F., Gotman J., and Frauscher B.: NREM sleep is the state of vigilance that best identifies the epileptogenic zone in the interictal electroencephalogram, Epilepsia, 2019, 60(12), 2404-2415.
  • Brázdil M., Pail M., Halámek J., Plešinger F., Cimbalnik J., Roman R., Klimeš P., Daniel P., Chrastina J., Brichtova E., Rektor I., Worrell GA., and Jurák P.: Very high frequency oscillations: Novel biomarkers of the epileptogenic zone. Ann. Neurol., 2017, 82(2), 299-310.
  • Jan Cimbalnik, Jaromir Dolezal, Çağdaş Topçu, Michal Lech, Victoria S Marks, Boney Joseph, Martin Dobias, Jamie Van Gompel, Gregory Worrell, Michal Kucewicz: Intracranial electrophysiological recordings from the human brain during memory tasks with pupillometry. Sci Data. 2022 Jan 13;9(1):6.doi: 10.1038/s41597-021-01099-z