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Martin Wolf 0006
Person information
- affiliation: University of Zurich, Biomedical Optics Research Laboratory, Zurich, Switzerland
- affiliation: University Hospital of Zurich, Switzerland
Other persons with the same name
- Martin Wolf — disambiguation page
- Martin Wolf 0001 — Polytechnic University of Catalonia, Spain
- Martin Wolf 0002 — TU Ilmenau, Germany
- Martin Wolf 0003 — Goethe University Frankfurt, Germany
- Martin R. Wolf
(aka: Martin Wolf 0004) — FH Aachen - Aachen University of Applied Sciences, Institute for Digitalization, Aachen, Germany - Martin Wolf 0005
— Fritz Haber Institute of the Max Planck Society, Department of Physical Chemistry, Berlin, Germany - Martin Wolf 0007
— Technical University of Munich, Department of Physics, Germany (and 1 more)
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2020 – today
- 2024
[j18]Robert Zboray
, Wolf Schweitzer
, Lars Ebert
, Martin Wolf, Sabino Guglielmini
, Stefan Haemmerle, Stephan Weiss, Bruno Koller:
Development of A Micro-CT Scanner with Dual-Energy Option and Endovascular Contrast Agent Administration Protocol for Fetal and Neonatal Virtual Autopsy. J. Imaging 10(3): 60 (2024)- 2020
[j17]Wuwei Ren
, Helene Isler
, Martin Wolf, Jorge Ripoll
, Markus Rudin
:
Smart Toolkit for Fluorescence Tomography: Simulation, Reconstruction, and Validation. IEEE Trans. Biomed. Eng. 67(1): 16-26 (2020)
2010 – 2019
- 2019
[j16]Chao Zhang
, Scott Lindner
, Ivan Michel Antolovic
, Juan Mata Pavia, Martin Wolf, Edoardo Charbon
:
A 30-frames/s, $252\times144$ SPAD Flash LiDAR With 1728 Dual-Clock 48.8-ps TDCs, and Pixel-Wise Integrated Histogramming. IEEE J. Solid State Circuits 54(4): 1137-1151 (2019)- 2018
[j15]Chao Zhang
, Scott Lindner, Ivan Michel Antolovic
, Martin Wolf
, Edoardo Charbon:
A CMOS SPAD Imager with Collision Detection and 128 Dynamically Reallocating TDCs for Single-Photon Counting and 3D Time-of-Flight Imaging. Sensors 18(11): 4016 (2018)
[c4]Martin Proença
, Olivier Grossenbacher, Stephan Dasen, Virginie Moser, Daniel Ostojic, Alia Lemkaddem, Damien Ferrario, Mathieu Lemay
, Martin Wolf, Jean-Claude Fauchere, Tanja Karen:
Performance Assessment of a Dedicated Reflectance Pulse Oximeter in a Neonatal Intensive Care Unit. EMBC 2018: 1502-1505
[c3]Scott Lindner
, Chao Zhang, Ivan Michel Antolovic, Martin Wolf, Edoardo Charbon:
A 252 × 144 SPAD Pixel Flash Lidar with 1728 Dual-Clock 48.8 PS TDCs, Integrated Histogramming and 14.9-to-1 Compression in 180NM CMOS Technology. VLSI Circuits 2018: 69-70- 2016
[j14]Matthew Caldwell
, Felix Scholkmann
, Ursula Wolf, Martin Wolf
, Clare E. Elwell
, Ilias Tachtsidis
:
Modelling confounding effects from extracerebral contamination and systemic factors on functional near-infrared spectroscopy. NeuroImage 143: 91-105 (2016)- 2015
[j13]Andreas Jaakko Metz, Martin Wolf, Peter Achermann
, Felix Scholkmann
:
A New Approach for Automatic Removal of Movement Artifacts in Near-Infrared Spectroscopy Time Series by Means of Acceleration Data. Algorithms 8(4): 1052-1075 (2015)
[j12]Juan Mata Pavia, Mario Scandini, Scott Lindner, Martin Wolf, Edoardo Charbon:
A 1 × 400 Backside-Illuminated SPAD Sensor With 49.7 ps Resolution, 30 pJ/Sample TDCs Fabricated in 3D CMOS Technology for Near-Infrared Optical Tomography. IEEE J. Solid State Circuits 50(10): 2406-2418 (2015)- 2014
[j11]Lisa Holper
, Martin Wolf
, Philippe N. Tobler
:
Comparison of functional near-infrared spectroscopy and electrodermal activity in assessing objective versus subjective risk during risky financial decisions. NeuroImage 84: 833-842 (2014)
[j10]Felix Scholkmann
, Stefan Kleiser, Andreas Jaakko Metz, Raphael Zimmermann, Juan Mata Pavia, Ursula Wolf
, Martin Wolf
:
A review on continuous wave functional near-infrared spectroscopy and imaging instrumentation and methodology. NeuroImage 85: 6-27 (2014)- 2013
[j9]Lisa Holper
, Natalie Jäger, Felix Scholkmann
, Martin Wolf
:
Error detection and error memory in spatial navigation as reflected by electrodermal activity. Cogn. Process. 14(4): 377-389 (2013)
[j8]Felix Scholkmann
, U. Gerber, Martin Wolf
, Ursula Wolf:
End-tidal CO2: An important parameter for a correct interpretation in functional brain studies using speech tasks. NeuroImage 66: 71-79 (2013)- 2012
[j7]Felix Scholkmann
, Jens Boss, Martin Wolf:
An Efficient Algorithm for Automatic Peak Detection in Noisy Periodic and Quasi-Periodic Signals. Algorithms 5(4): 588-603 (2012)
[j6]Lisa Holper
, Felix Scholkmann
, Martin Wolf
:
Between-brain connectivity during imitation measured by fNIRS. NeuroImage 63(1): 212-222 (2012)- 2011
[j5]Thomas Muehlemann, Nadine Reefmann, Beat Wechsler
, Martin Wolf
, Lorenz Gygax
:
In vivo functional near-infrared spectroscopy measures mood-modulated cerebral responses to a positive emotional stimulus in sheep. NeuroImage 54(2): 1625-1633 (2011)
[c2]Raphael Zimmermann, Laura Marchal-Crespo
, Olivier Lambercy, Marie-Christine Fluet, Robert Riener
, Martin Wolf
, Roger Gassert
:
Towards a BCI for sensorimotor training: Initial results from simultaneous fNIRS and biosignal recordings. EMBC 2011: 6339-6343- 2010
[j4]Lisa Holper
, Martin Wolf
:
Motor imagery in response to fake feedback measured by functional near-infrared spectroscopy. NeuroImage 50(1): 190-197 (2010)
2000 – 2009
- 2009
[j3]Lisa Holper
, Martin Biallas
, Martin Wolf
:
Task complexity relates to activation of cortical motor areas during uni- and bimanual performance: A functional NIRS study. NeuroImage 46(4): 1105-1113 (2009)
[c1]Ivo Trajkovic, Christoph Reller, Martin Wolf, Hans-Andrea Loeliger:
Modelling and filtering almost periodic signals by time-varying Fourier series with application to near-infrared spectroscopy. EUSIPCO 2009: 632-636- 2002
[j2]Martin Wolf
, Ursula Wolf, Vlad Toronov, Antonios Michalos, L. Adelina Paunescu, Jee Hyun Choi
, Enrico Gratton:
Different Time Evolution of Oxyhemoglobin and Deoxyhemoglobin Concentration Changes in the Visual and Motor Cortices during Functional Stimulation: A Near-Infrared Spectroscopy Study. NeuroImage 16(3): 704-712 (2002)
[j1]Martin Wolf
, Ursula Wolf, Jee Hyun Choi
, Rajarsi Gupta, Larisa P. Safonova, L. Adelina Paunescu, Antonios Michalos, Enrico Gratton:
Functional Frequency-Domain Near-Infrared Spectroscopy Detects Fast Neuronal Signal in the Motor Cortex. NeuroImage 17(4): 1868-1875 (2002)
Coauthor Index

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last updated on 2026-03-31 23:44 CEST by the dblp team
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