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  1. Medical and Biological Engineering and Computing
  2. Medical and Biological Engineering and Computing : Volume 40
  3. Medical and Biological Engineering and Computing : Volume 40, Issue 4, July 2002
  4. Instrumented rod rotator system for spinal surgery
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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 40, Issue 6, November 2002
Medical and Biological Engineering and Computing : Volume 40, Issue 5, September 2002
Medical and Biological Engineering and Computing : Volume 40, Issue 4, July 2002
Hip stress reduction after Chiari osteotomy
Instrumented rod rotator system for spinal surgery
Impedance spectroscopy: An accurate method of differentiating between viable and ischaemic or infarcted muscle tissue
Neonatal lungs-can absolute lung resistivity be determined non-invasively?
Modelling the response of scalp sensory receptors to transcranial electrical stimulation
Systematic comparison of different algorithms for apnoea detection based on electrocardiogram recordings
Comparison of heart rate variability analysis methods in patients with Parkinson's disease
Development andin vitro validation of a device for measuring non-shunt cardiac output by nitrous oxide throughflow
Circulatory effects of internal jugular vein compression: A computer simulation study
Statistical processing for gastric slow-wave identification
Use of abdominal percussion for pneumoperitoneum detection
Linear and non-linear methods for automatic seizure detection in scalp electro-encephalogram recordings
Statistical test for peri-stimulus time histograms in assessing motor neuron activity
Piezoelectric film transducer for recording of oculography in electro-encephalogram-polygraphy
Identification of appropriate primitive polynomials to avoid cross-contamination in multifocal electroretinogram responses
Inter-chromosome texture as a feature for automatic identification of metaphase spreads
Human platelet supernatant promotes proliferation but not differentiation of articular chondrocytes
Capsule-substrate contact deformation: Determination of adhesion energy
Medical and Biological Engineering and Computing : Volume 40, Issue 3, May 2002
Medical and Biological Engineering and Computing : Volume 40, Issue 2, March 2002
Medical and Biological Engineering and Computing : Volume 40, Issue 1, January 2002
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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Instrumented rod rotator system for spinal surgery

Content Provider Springer Nature Link
Author Lou, E. Hill, D. L. Raso, J. V. Moreau, M. J. Mahood, J. K.
Copyright Year 2002
Abstract An electronically instrumented rod rotator has been developed to monitor forces and moments applied by surgeons during the derotation manoeuver to correct spinal curvature. This instrumented rod rotator consisted of an inclinometer and two pairs of strain gauges, with all the support circuitry. The strain gauge and the inclinometer data were sampled with a data-acquisition system, and the results were displayed in real time. The device was calibrated in the laboratory and used on seven subjects. The precision of the load measurement of this device was ±5 N in the range of 5–65 N. The distance between the middle of the rod rotator handle to the rod position was 0.21 m. The maximum loads applied by the surgeon during seven surgeries were from 22 to 57 N, with a torque (force x distance) from 4.6 to 12 Nm.
Starting Page 376
Ending Page 379
Page Count 4
File Format PDF
ISSN 01400118
Journal Medical and Biological Engineering and Computing
Volume Number 40
Issue Number 4
e-ISSN 17410444
Language English
Publisher Springer-Verlag
Publisher Date 2002-01-01
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Scoliosis Load measurements Surgery Human Physiology Neurosciences Imaging Radiology Computer Applications Biomedical Engineering
Content Type Text
Resource Type Article
Subject Biomedical Engineering Computer Science Applications
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