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  1. Medical and Biological Engineering and Computing
  2. Medical and Biological Engineering and Computing : Volume 38
  3. Medical and Biological Engineering and Computing : Volume 38, Issue 6, November 2000
  4. Three-dimensional mapping of brainstem functional lesions
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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 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 38, Issue 6, November 2000
Iterative optimal design of PET experiments for estimating β-adrenergic receptor concentration
Measurement of femoral neck anteversion in 3D. Part 1: 3D imaging method
Measurement of femoral neck anteversion in 3D. Part 2:3D modelling method
Analysis of postural sway using entropy measures of signal complexity
A method for turbulent noise estimation in voiced signals
Analysis and decomposition of signals obtained by thigh-fixed uni-axial accelerometry during normal walking
Three-dimensional mapping of brainstem functional lesions
Adaptive wavelet filtering for analysis of event-related potentials from the electro-encephalogram
Isopower mapping of electrogastrograms in short-bowel syndrome
Identification of post-myocardial infarction patients with ventricular tachycardia by time-domain intra-QRS analysis of signal-averaged electrocardiogram and magnetocardiogram
Risk evaluation of ventricular tachycardia using wavelet transform irregularity of the high-resolution electrocardiogram
Increase in pulse transit time to the foot after epidural anaesthesia treatment
Evaluation of renormalised entropy for risk stratification using heart rate variability data
Preparation of a pure autologous biodegradable fibrin matrix for tissue engineering
New model to characterise cell-substrate adhesion in the presence of osmosis
Medical and Biological Engineering and Computing : Volume 38, Issue 5, September 2000
Medical and Biological Engineering and Computing : Volume 38, Issue 4, July 2000
Medical and Biological Engineering and Computing : Volume 38, Issue 3, May 2000
Medical and Biological Engineering and Computing : Volume 38, Issue 2, March 2000
Medical and Biological Engineering and Computing : Volume 38, Issue 1, January 2000
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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Three-dimensional mapping of brainstem functional lesions

Content Provider SpringerLink
Author Capozza, M. Iannetti, G. D. Mostarda, M. Cruccu, G.
Copyright Year 2000
Abstract The human brainstem is a highly complex structure where even small lesions can give rise to a variety of symptoms and outward sings. Localising the area of dysfunction within the brainstem is often a difficult task. To make localisation easier, a neural net system has been developed which uses 72 clinical and neurophysiological data inputs to provide a display (using 5268 voxels) on a three-dimensional model of the human brainstem. The net was trained by means of a back-propagation algorithm, over a pool of 580 example cases. Assessed on 200 test cases, the net correctly localised 83.6% of the target voxels; furthermore the net correctly localised the lesions in 31 out of 37 patients. Because this computer-assisted method provides reliable and quantitative localisation of brainstem areas of dysfunction and can be used as a 3D interactive functional atlas, it is expected to prove useful as a diagnostic tool for assessing focal brainstem lesions.
Starting Page 639
Ending Page 644
Page Count 6
File Format PDF
ISSN 01400118
Journal Medical and Biological Engineering and Computing
Volume Number 38
Issue Number 6
e-ISSN 17410444
Language English
Publisher Springer-Verlag
Publisher Date 2000-01-01
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Brainstem Neural network 3D mapping Neuroimaging Neurophysiological tests Human Physiology Computer Applications Neurosciences Imaging Radiology Biomedical Engineering
Content Type Text
Resource Type Article
Subject Biomedical Engineering Computer Science Applications
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