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  1. Medical and Biological Engineering and Computing
  2. Medical and Biological Engineering and Computing : Volume 47
  3. Medical and Biological Engineering and Computing : Volume 47, Issue 6, June 2009
  4. Phantom haptic device upgrade for use in fMRI
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Medical and Biological Engineering and Computing : Volume 55
Medical and Biological Engineering and Computing : Volume 54
Medical and Biological Engineering and Computing : Volume 53
Medical and Biological Engineering and Computing : Volume 52
Medical and Biological Engineering and Computing : Volume 51
Medical and Biological Engineering and Computing : Volume 50
Medical and Biological Engineering and Computing : Volume 49
Medical and Biological Engineering and Computing : Volume 48
Medical and Biological Engineering and Computing : Volume 47
Medical and Biological Engineering and Computing : Volume 47, Issue 12, December 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 11, November 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 10, October 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 9, September 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 8, August 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 7, July 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 6, June 2009
Ultrasonically-induced Lorentz force tomography
3D-patient-specific geometry of the muscles involved in knee motion from selected MRI images
The effect of elbow joint centre displacement on force generation and neural excitation
A validated finite element analysis of nerve root stress in degenerative lumbar scoliosis
Three-dimensional fibril-reinforced finite element model of articular cartilage
Quantification of friction force reduction induced by obstetric gels
A method for paraplegic upper-body posture estimation during standing: a pilot study for rehabilitation purposes
Optimization of ultrasound array designs for high intensity focused treatment of prostate cancer and benign prostatic hyperplasia
Model-based assessment of dynamic arterial blood volume flow from ultrasound measurements ( Medical and Biological Engineering and Computing , Volume 47 , Issue 6 )
Ultra wideband for wireless real-time monitoring of neural signals
Extracting sources from noisy abdominal phonograms: a single-channel blind source separation method
Mathematical modeling of electrical activity of uterine muscle cells
Phantom haptic device upgrade for use in fMRI
Model-based assessment of dynamic arterial blood volume flow from ultrasound measurements ( Medical and Biological Engineering and Computing , Volume 47 , Issue 6 )
Medical and Biological Engineering and Computing : Volume 47, Issue 5, May 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 4, April 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 3, March 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 2, February 2009
Medical and Biological Engineering and Computing : Volume 47, Issue 1, January 2009
Medical and Biological Engineering and Computing : Volume 46
Medical and Biological Engineering and Computing : Volume 45
Medical and Biological Engineering and Computing : Volume 44
Medical and Biological Engineering and Computing : Volume 43
Medical and Biological Engineering and Computing : Volume 42
Medical and Biological Engineering and Computing : Volume 41
Medical and Biological Engineering and Computing : Volume 40
Medical and Biological Engineering and Computing : Volume 39
Medical and Biological Engineering and Computing : Volume 38
Medical and Biological Engineering and Computing : Volume 37
Medical and Biological Engineering and Computing : Volume 36
Medical and Biological Engineering and Computing : Volume 35

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Phantom haptic device upgrade for use in fMRI

Content Provider SpringerLink
Author Hribar, Ales Koritnik, Blaz Munih, Marko
Copyright Year 2009
Abstract This paper presents an upgrade of a Phantom Premium 1.5 haptic device for use within a functional magnetic resonance imaging (fMRI) environment. A special mechanical extension that allows the haptic device to operate at a safe distance from the high-density magnetic field of an fMRI scanner has been developed. Extended haptic system was subjected to a series of tests to confirm electromagnetic compatibility with the fMRI scanner, for which key results are presented. With this fMRI compatible haptic platform a human brain activation during controlled upper limb movements can be studied. A simple virtual environment reaching task was programmed to study brain motor control functions. At the end preliminary results of an ongoing neurophysiological study are presented.
Starting Page 677
Ending Page 684
Page Count 8
File Format PDF
ISSN 01400118
Journal Medical and Biological Engineering and Computing
Volume Number 47
Issue Number 6
e-ISSN 17410444
Language English
Publisher Springer-Verlag
Publisher Date 2009-03-05
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Phantom haptic device fMRI Mechanical extension Electromagnetic compatibility Brain imaging Reaching Human motor control Computer Applications Imaging Radiology Human Physiology Biomedical Engineering
Content Type Text
Resource Type Article
Subject Biomedical Engineering Computer Science Applications
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