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Physiological Measurement|December 11, 1999
A method for foetal heart rate monitoring during magnetic resonance imaging using Doppler ultrasoundS A Shakespeare, R J Moore, J A Crowe, et al.
Physiological Measurement|July 16, 2004
Detrended fluctuation analysis: a suitable method for studying fetal heart rate variability?J C Echeverría, B R Hayes-Gill, J A Crowe, et al.
Medical Progress Through Technology|January 1, 1993
The application of finite impulse response filters to the detection of fetal electrocardiogram signalsR G Phoenix, J A Crowe, N M Gibson, et al.
Medical & Biological Engineering & Computing|February 24, 2001
Compact long-term recorder for the transabdominal foetal and maternal electrocardiogramJ F Piéri, J A Crowe, B R Hayes-Gill, et al.
Chaos (Woodbury, N.Y.)|June 5, 2003
Interpretation of heart rate variability via detrended fluctuation analysis and alphabeta filterJ C Echeverría, M S Woolfson, J A Crowe, et al.
Physiological Measurement|December 8, 2015
An automated quasi-continuous capillary refill timing deviceL L Blaxter, D E Morris, J A Crowe, et al.
Physiological Measurement|February 1, 1995
Sequential recording of the abdominal fetal electrocardiogram and magnetocardiogramJ A Crowe, J M Herbert, X B Huang, et al.
Physiological Measurement|April 19, 2014
Forehead reflectance photoplethysmography to monitor heart rate: preliminary results from neonatal patientsM R Grubb, J Carpenter, J A Crowe, et al.
Optics Letters|August 4, 2012
64×64 pixel smart sensor array for laser Doppler blood flow imagingD He, H C Nguyen, B R Hayes-Gill, et al.
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