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Adam, Christian and Barth, Tobias and Schulz, Arndt-Peter and Bahr, Andreas
Automatic Length Measurements in Hexapod Fixators Using Optical Proximity Sensors
In Tagungsband "2024 31st IEEE International Conference on Electronics, Circuits and Systems (ICECS)", 2024, p. 1--4
Nancy, 18.11.2024
Abstract:
Hexapod fixators are a specialized type of external fixators, which are used in the treatment of complex bone fractures. A set of metallic rings, which are attached to the bone fragments using wires and which are connected to each other by six length-adjustable struts, so-called distractors, enables a flexible and precise repositioning of fractures in six degrees of freedom. The lengths of the distractors define the configuration of the hexapod fixator and typically have to be iteratively adjusted over a period of several weeks. However, since the distractors are hard to reach for the patients, the length control is error-prone, limits the patient’s autonomy and can even require prolonged hospitalization. To overcome these limitations, a new system for automatically measuring the distractor lengths is proposed, which utilizes optical proximity sensors and wirelessly transmits the results to a reader device. The system achieves a measurement accuracy of less than 1 mm over the full measurement range of 105 mm. It can be powered autonomously from a small button cell for several weeks. With dimensions of 24 mm x 10 mm, the electronics module adds only little volume and weight.
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Adam, Christian and Münch, Matthias and Kleinschnittger, Patrick and Barth, Tobias and Schulz, Arndt-Peter and Bahr, Andreas and Krautschneider, Wolfgang
Rapid prototyping of molds for the encapsulation of electronic implants using additive manufacturing
Artikel in "Transactions on Additive Manufacturing Meets Medicine", vol. 6, Nr. 1, p. 1--8, 2024
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Rieseler, Jonas David and Adam, Christian and Bahr, Andreas and Kuhl, Matthias
A Compressed Sensing Integrate-and-Fire Neuron Concept for Massively Parallel Recordings
In Tagungsband "2024 IEEE International Symposium on Circuits and Systems (ISCAS)", 2024, p. 1--5
ISSN: 2158-1525
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Yang, Cheng and Adam, Christian and Götschel, Sebastian
Complex Near-Field Measurement Using On-The-Fly Scan with In-phase and Quadrature Demodulation
In Tagungsband "2024 15th German Microwave Conference (GeMiC)", 2024, p. 181-184
Duisburg, Germany, 2024
Abstract:
Recently, a new near-field measurement technique based on on-the-fly (OTF) scanning and a Hilbert transform (HT) was proposed, allowing for rapid phase retrieval using a single probe. However, because of the required Nyquist rate sampling, this method encounters challenges related to costly data acquisition, storage, and processing demands, thereby restricting its use at MHz and GHz frequencies. In this paper a novel method is proposed, which addresses these issues by introducing in-phase and quadrature (IQ) demodulation in place of the HT. Its inherent frequency down conversion of the measured signal enables sampling at a significantly lower rate. To demonstrate the effectiveness of the proposed method, it is employed in a near-field scanner to measure the magnetic fields of two distinct devices under test: a wireless power transmitter and a microstrip line, operating at 125 kHz and 1 GHz, respectively. Measurement results, compared to conventional field measurement approaches, show a good correlation, affirming the suitability of this fast and cost-effective solution for antennas, and RF systems.