Jens Haueisen

Professor at Ilmenau University of Technology

Ilmenau University of Technology
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Germany

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Positions (1)

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Jens Haueisen

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Ilmenau University of Technology

Research Assistant / PhD Position in Biomedical Engineering (EU Researcher)

The Department of Computer Science and Automation at Ilmenau University of Technology, Germany, is offering a Research Assistant / PhD position within the Group of Biomedical Engineering (BMT). This opportunity is part of the BRAINET consortium, which aims to revolutionize deep brain stimulation through spatio-temporal Interference Stimulation (stIS). The project focuses on developing skull-implantable stimulation hubs that form a communication network for precise 3D targeting in the brain, enabling semantic information transfer and synchronization for self-adjusting therapeutic stIS. These hubs utilize novel magneto-electrical transducer stacks powered by external magnetic fields and feature nano-modified, compliant electrodes that only touch the brain surface, minimizing invasiveness. Network formation will be achieved using multiphysics approaches and ionic in-body communication, supported by dedicated microelectronic hardware. The project includes preclinical in-vitro and in-vivo testing to validate the devices and methods, contributing to the advancement of Brain-Computer Interface (BCI) technology. As a PhD researcher, you will be responsible for developing advanced current flow models (digital twins), performing comprehensive uncertainty analyses related to electrical conductivity and tissue geometry, and devising optimization strategies for the placement of new interference stimulation devices. Applicants should hold a Master's degree in Engineering, preferably in electrical or biomedical engineering, and possess skills in numerical field computation, finite and boundary element methods, transcranial electric stimulation, temporal interference stimulation, polynomial chaos analysis, and optimization techniques. Candidates of any nationality are welcome, provided they have not resided or worked in Germany for more than 12 months in the past 36 months and do not already hold a doctoral degree. The position is full-time and not suitable for part-time employment. The monthly gross salary is €4,768.12, which includes living and mobility allowances, with additional family and special needs allowances available for eligible candidates according to MSCA guidelines. The university offers 30 days of vacation per year, extra days off on 24 and 31 December, a family-friendly and flexible working model, individual training opportunities, and extensive health and sports programs. Ilmenau University of Technology is recognized for its commitment to gender equality and a respectful, interdisciplinary academic environment. Applications must be submitted online via the university's job portal by March 1, 2026. The selection process includes a pre-evaluation based on CV, experience, and skills, followed by interviews scheduled for calendar weeks 10 and 14 of 2026. For further information, contact Prof. Jens Haueisen at the university.

5 months ago

Articles (11)

Simultaneous Dry and Gel-Based High-Density Electroencephalography Recordings

Evaluations of new dry, high-density EEG caps have only been performed so far with serial measurements and not with simultaneous (parallel) measurements. For a first comparison of gel-based and dry electrode performance in simultaneous high-density EEG measurements, we developed a new EEG cap comprising 64 gel-based and 64 dry electrodes and performed simultaneous measurements on ten volunteers. We analyzed electrode–skin impedances, resting state EEG, triggered eye blinks, and visual evoked potentials (VEPs). To overcome the issue of different electrode positions in the comparison of simultaneous measurements, we performed spatial frequency analysis of the simultaneously measured EEGs using spatial harmonic analysis (SPHARA). The impedances were 516 ± 429 kOhm (mean ± std) for the dry electrodes and 14 ± 8 kOhm for the gel-based electrodes. For the dry EEG electrodes, we obtained a channel reliability of 77%. We observed no differences between dry and gel-based recordings for the alpha peak frequency and the alpha power amplitude, as well as for the VEP peak amplitudes and latencies. For the VEP, the RMSD and the correlation coefficient between the gel-based and dry recordings were 1.7 ± 0.7 μV and 0.97 ± 0.03, respectively. We observed no differences in the cumulative power distributions of the spatial frequency components for the N75 and P100 VEP peaks. The differences for the N145 VEP peak were attributed to the different noise characteristics of gel-based and dry recordings. In conclusion, we provide evidence for the equivalence of simultaneous dry and gel-based high-density EEG measurements.

Year:

2023

Collaborators (10)

Carlos Fonseca

Assistant Professor

Universidade do Porto Faculdade de Engenharia

PORTUGAL

Matti Hamalainen

Aalto University

FINLAND

Levin Kuhlmann

MONASH UNIVERSITY

AUSTRALIA

Bojana Petkovic

Ilmenau University of Technology

GERMANY

Patrique Fiedler

Juniorprofessor / Head of Department

Ilmenau University of Technology

GERMANY

Silvia COMANI

University of Chieti-Pescara

ITALY

Thomas Fröhlich

Ilmenau University of Technology

GERMANY

Paul Horn

-

GERMANY

Martin Haardt

Ilmenau University of Technology

GERMANY

Cláudia Lopes

University of Minho

PORTUGAL
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