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  1. Medical and Biological Engineering and Computing
  2. Medical and Biological Engineering and Computing : Volume 45
  3. Medical and Biological Engineering and Computing : Volume 45, Issue 3, March 2007
  4. A new intelligent distension system for hollow organs
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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 45, Issue 12, December 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 11, November 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 10, October 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 9, September 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 8, August 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 7, July 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 6, June 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 5, May 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 4, April 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 3, March 2007
Unsupervised classification of ventricular extrasystoles using bounded clustering algorithms and morphology matching
Algorithm for the classification of multi-modulating signals on the electrocardiogram
A matching pursuit-based signal complexity measure for the analysis of newborn EEG
Segmentation of retinal blood vessels using a novel clustering algorithm (RACAL) with a partial supervision strategy
A new intelligent distension system for hollow organs
Bone age estimation based on phalanx information with fuzzy constrain of carpals
New methodology for multi-dimensional spinal joint testing with a parallel robot
Mathematical models of passive motion at the human ankle joint by equivalent spatial parallel mechanisms
3D inverse dynamics in non-orthonormal segment coordinate system
Adaptive potential of human biceps femoris muscle demonstrated by histochemical, immunohistochemical and mechanomygraphical methods
3D femoral neck anteversion measurements based on the posterior femoral plane in ORTHODOC$^{®}$ system
Medical and Biological Engineering and Computing : Volume 45, Issue 2, February 2007
Medical and Biological Engineering and Computing : Volume 45, Issue 1, January 2007
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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A new intelligent distension system for hollow organs

Content Provider SpringerLink
Author Karpefors, M. Akkermans, L. M. A. Bayati, A.
Copyright Year 2007
Abstract Controlled distension of hollow organs is an accepted technique for generating reproducible visceral stimuli. We have constructed a new, flexible and intelligent distension system in which discomfort, pain and autonomic responses are recorded online. These responses can be fed back into the system in a regulatory loop and be used to shape the distension paradigm. Consequently, it is possible to take all subjects to a state of equal, although subjective, level of discomfort or pain, even though pressure, tension and volume might be totally different. By using a variable airflow, this new distension system can be effectively used in all kinds of paradigms, e.g. phasic, tonic, or ramp distensions or customized combinations of them. The system can be used to control pressure, volume or tension. A refinement of the system is that it is possible to automatically change the controlled entity during a distension, e.g. from an isobaric ramp directly into an isovolumetric tonic phase. Furthermore, the distension device allows double distensions with independent distension paradigms.
Starting Page 275
Ending Page 281
Page Count 7
File Format PDF
ISSN 01400118
Journal Medical and Biological Engineering and Computing
Volume Number 45
Issue Number 3
e-ISSN 17410444
Language English
Publisher Springer-Verlag
Publisher Date 2007-01-13
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Barostat Visceral distension Distension paradigm Visceral perception Visceral sensation Neurosciences Computer Applications Imaging Radiology Human Physiology Biomedical Engineering
Content Type Text
Resource Type Article
Subject Biomedical Engineering Computer Science Applications
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