. Publications:
1.
"Microcomputador para análise de sinais de fluxo sangüíneo arterial
captados por ultra-som Doppler" ("Microcomputer
for Doppler ultrasound arterial blood flow signal analysis"),
Schlindwein, F.S, MSc. Thesis in
Biomedical Engineering - Programme of Biomedical Engineering of the
Coordination of Programmes of Post-Graduation in Engineering (COPPE) of the
Federal University of Rio de Janeiro, April 1982.
2. “Algoritmo para
detecção de QRS em microcomputadores”, Lima, C.E.G.; Gandra S.A.T.; Caprihan
A.; Nobre F.F. e Schlindwein, F.S. - Revista Brasileira de Engenharia, Caderno
de Engenharia Biomédica, ISBN: 0102-2644, vol.1, N.2, pp. 5-16, 1983.
3. “Sistema de
aquisição e exibição de sinais biológicos para microcomputador”, Schlindwein,
F.S.; Caprihan, A. e Gandra, S.A.T. - Revista Brasileira de Engenharia, Caderno
de Engenharia Biomédica, ISBN: 0102-2644, vol.1, N.2, pp. 45-56, 1983.
4. “Dopplerometria
Computadorizada”, Brum, O.F., Rocha, L., Arruda, S., Cordeiro, G.C.L.,
Schlindwein, F.S. e Panerai, R.B. A Folha Médica, vol. 89, N.1, pp.33-35, 1984.
5. “Dopplerometria
Computadorizada”, Schlindwein, F.S.; Panerai, R.B. e Brum, O.F. In:
"Doppler Ultra-som", Brum, O.F. (ed.), chapter 13, pp. 92-101, Livro Médico Editora Ltda., Rio de Janeiro, Brazil, 1986.
6. “Análise de
sinais Doppler de velocidade de fluxo arterial por microcomputador”,
Schlindwein, F.S.; Caprihan, A. e Gandra, S.A.T. - Revista Brasileira de
Engenharia, Caderno de Engenharia Biomédica, vol.3, N.2, pp. 29-49,
1986.
7. “Algoritmo para
detecção e delimitação de complexos QRS em tempo-real utilizando duas
derivações do eletrocardiograma”, Pereira, W.C.A., Schlindwein, F.S. e Lima,
C.E.G. - Revista Brasileira de Engenharia, Caderno de Engenharia Biomédica,
ISDN: 0102-2644, vol.4, N.2, pp. 5-23, 1987.
8. “Análise
espectral de sinais de ultra-som Doppler e geração de sonogramas em tempo-real
utilizando processador de sinais digitais e microcomputador”, Schlindwein, F.S.
and Evans, D.H. - Revista
Brasileira de Engenharia, Caderno de Engenharia Biomédica, ISDN: 0102-2644,
vol.4, N.2, pp. 25-47, 1987.
9. “Recursos úteis
ao desenvolvimento de microcomputadores para processamento de sinais em
tempo-real”, Nadal, J., Pereira, W.C.A. and
Schlindwein,
F.S. Revista Brasileira de Engenharia, Caderno de Engenharia Biomédica, ISDN:
0102-2644, vol.4, N.2, pp. 137-148, 1987.
10. “Real-time spectral analysis of Doppler signals
using a digital signal processor and a microcomputer”. Schlindwein, F.S. and
Evans, D.H, In: Physics in Medical Ultrasound II, chapter 15,
pp.112-118. The
11. “Spectral analysis of Doppler signals and
computation of the normalized first moment in real time using a digital signal
processor”, Schlindwein, F.S.; Smith, M.J. and Evans, D.H. - Medical &
Biological Engineering & Computing, vol.26, pp. 228-232, 1988, PDF.
12. “Real-time spectral analysis of Doppler signals
using a Digital Signal Processor and microcomputer”, Schlindwein, F.S. and
Evans, D.H. - chapter 15 in Physics in Medical Ultrasound II, ISBN: 0904181545,
The Institute of Physical Sciences in Medicine, report N.57, pp.112-118, 1988.
13. “A real-time autoregressive spectrum analyzer for
Doppler ultrasound signals”, Schlindwein,
F.S. and Evans, D.H. - Abstracts of Proceedings of Physical and Clinical
Applications of Doppler Ultrasound - Clinical Physics and Physiological
Measurements, vol.9/3, p.278, 1988.
14. The relationship between time averaged intensity
weighted mean velocity, and time averaged maximum velocity in neonatal cerebral
arteries, Evans, D.H., Schlindwein, F.S. and Levene, M.I. - Abstracts of
Proceedings of Physical and Clinical Applications of Doppler Ultrasound -
Clinical Physics and Physiological Measurements, vol.9/3, p.277, 1988.
15. “A real-time autoregressive spectrum analyzer for
Doppler ultrasound signals” Schlindwein,
F.S. and Evans, D.H. - Ultrasound in Medicine and Biology, vol.15, N.3,
pp.263-272, 1989.
16. “The relationship between time averaged intensity
weighted mean velocity, and time averaged maximum velocity in neonatal cerebral
arteries”, Evans, D.H., Schlindwein, F.S. and Levene, M.I. - Ultrasound in
Medicine and Biology, vol.15, N.5, pp.429-435, 1989.
17. “On-line intermittent cerebral blood flow velocity
and blood pressure measurement in neonates”, Fenton, A.C., Levene, M.I., Evans,
D.H., Schlindwein, F.S. and Cornhill, C. Proceedings of the 20th
Annual Scientific Meeting of the British Medical Ultrasound Society, in The
British Journal of Radiology, pg.646, 1989.
18. “An automatic system for capturing and processing
ultrasonic Doppler signals and blood pressure signals”, Evans, D.H.,
Schlindwein, F.S. and Levene, M.I - Clinical Physics and Physiological
Measurement, vol.10, N.3, pp. 241-251, 1989. abstract,
PDF.
19. “Short term real-time spectral analysis of Doppler
ultrasound signals with a digital signal processor and microcomputer”,
Schlindwein, F.S. and Evans, D.H. - in "Third Congress on Ultrasonic Signal
processing”, Allipi, A. (ed.) pp. 255-279, World Scientific Publishing Co.,
London, 1989.
20. “Selection of the order of autoregressive models
for spectral analysis of Doppler ultrasound signals”, Schlindwein, F.S. and
Evans, D.H. Ultrasound in Medicine and Biology, vol.16, N.1, pp. 81-91,
1990, PDF.
21. “Análise
espectral de sinais Doppler com o modelo autoregressivo: vantagens e
desvantagens”, Schlindwein, F.S. and Evans, D.H. -
Revista Brasileira de Engenharia, Caderno de Engenharia Biomédica, vol.7,
N.1, pp.1-7, 1990.
22. “Processadores
de sinais digitais - descrição de um laboratório de processamento digital de
sinais equipado com DSPs para aplicações em engenharia biomédica”, Schlindwein,
F.S. and Evans, D.H. - Revista
Brasileira de Engenharia, Caderno de Engenharia Biomédica, vol.7, N.1,
pp.79-85, 1990.
23. "Real-time digital processing of Doppler
ultrasound signals and its applications to blood flow measurement", PhD Thesis
in Biomedical Engineering - University of Leicester, Department of Surgery,
University of Leicester, UK, August 1990.
24. "Modelo
autoregressivo aplicado à análise espectral de sinais Doppler ultra-sônicos em
tempo-real", Schlindwein, F.S. and Evans, D.H. - Revista Brasileira de
Engenharia, Caderno de Engenharia Biomédica, ISSN: 0102-2644, vol.7, N.
2, pp. 5-31, 1991.
25. "Short-term autoregressive spectrum analysis
for Doppler ultrasound signals and the choice of the model order",
Fernando S. Schlindwein and David H. Evans, Medical & Biological Engineering & Computing, ISBN: 0140-0118,
vol.29, p. 548, Supplement, Part 1, 1991.
26. "Técnicas de
alisamento exponencial aplicadas à compressão de sinais
eletrocardiográficos", Appel, E., Schlindwein, F.S., and Nobre, F.F. -
Arquivo Brasileiro de Cardiologia, N. 57, suplemento C, p.71, 1991.
27. "Autoregressive spectral analysis as an
alternative to fast Fourier transform analysis of Doppler ultrasound
signals", Schlindwein, F.S. and Evans, D.H., chapter 8, pp. 74-84,
In: "Diagnostic Vascular Ultrasound", ISBN 0-340-55399-5, Edward
Arnold, 1992.
28. "Introducing undergraduate students to the
use of digital signal processors", Dahnoun, N. and Schlindwein, F.S.,
International Journal of Electrical Engineering Education, ISSN 0020-7209, vol.31,
N.1, pp.66-83, January 1994.
29. "Real-time digital processing of Doppler
ultrasound signals and analysis of the variability of flow parameters",
F.S. Schlindwein, M.H.B. Vieira, Vasconcelos, C.F.M., D.M. Simpson, Medical
Progress through Technology, ISSN 0047-6552, vol.20, N. 1/2, pp.81-89,
Kluwer Academic Publishers, August 1994.
30. "Digital signal processors and their use in
Biomedical Engineering", Schlindwein, F.S., Tutorial TT36-4, Physics in
Medicine and Biology, ISSN: 0031-9155, vol.39a, Part 2, p.903, Abstracts
of the World Congress on Medical Physics and Biomedical Engineering, ISSN
0031-9155, Rio de Janeiro, Brazil, August 21-26, 1994.
31. "Separation of foetal and maternal ECG via
diagonal factor analysis and inverse transfer function", Schlindwein,
F.S., Kazim, S., Loudon, G.H., and Jones, N.B., Physics in Medicine and
Biology, ISSN: 0031-9155, vol.39a, Part 2, p.931, Abstracts of the World
Congress on Medical Physics and Biomedical Engineering,
32. "Study of haemodynamic parameters calculated
from ultrasound Doppler spectra", Vasconcelos, C.F.M., Vieira, M.H.B.,
Simpson, D.M., Schlindwein, F.S., Physics in Medicine and Biology, ISSN:
0031-9155, vol.39a, Part 2, p.976, Abstracts of the World Congress on
Medical Physics and Biomedical Engineering, Rio de Janeiro, Brazil, August
21-26, 1994.
33. "A real-time ultrasonic image equipment
prototype based on personal computer", Pereira, F.R., Schlindwein, F.S.,
Machado, J.C., Physics in Medicine and Biology, vol.39a, Part 2, p.977,
Abstracts of the World Congress on Medical Physics and Biomedical Engineering,
Rio de Janeiro, Brazil, August 21-26, 1994.
34. “Digital signal processing of Doppler ultrasound
signals for the diagnosis of high grade stenoses in the carotid artery”,
Keeton, P.I.J., Schlindwein, F.S., Jones, N.B., University of Leicester, Dept.
Engineering Internal Research Report No. 95-13, March 1995.
35. “Automatic methods for classifying EEG signals”, Wang,
Y., Jones, N.B., Fothergill, J.C., Hanning, C.J., Schlindwein, F.S., University
of Leicester, Dept. Engineering Internal Research Report No. 95-17, May 1995.
36. “A simple modulator and mixer for directional
Doppler signals”, Schlindwein, F.S., Keeton, P.I.J., Dryden, D.J., Brazilian
Journal of Biomedical Engineering (ISSN: 0102-2644), vol.12, N.2,
pp.103-111, July/December 1996. BJBE.
37. "Application of wavelets in Doppler ultrasound",
Keeton, P.I.J. and Schlindwein, F.S., Sensor Review, (ISSN 0260-2288), MCB
University Press, vol. 17, No.1, pp.38-45, April 1997. PDF
38. "A study of the spectral broadening of
simulated Doppler signals using FFT and AR modelling", Keeton, P.I.J.
Schlindwein, F.S., and Evans, D.H., Ultrasound in Medicine and Biology (ISSN:
0301-5629), vol.23, No.7, pp.1033-1045, 1997. PDF
39. "Estudo de
índices hemodinâmicos obtidos por estimativa espectral, em tempo-real, de
sinais Doppler ultra-sônicos", Vasconcelos, C.F.M., Vieira, M.H.B.,
Schlindwein, F.S., and Simpson, D.M., Brazilian Journal of Biomedical Engineering (ISSN: 0102-2644),
vol.13, N.3, pp. 45-56, jul. 1997. BJBE.
40.
“Reproducibility of the signal averaged P wave: Time and frequency domain
analysis”,
41. “Signal averaged P wave compared to standard
electrocardiographic or echocardiographic variables for prediction of atrial
fibrillation after coronary bypass grafting”,
42. "Spectral broadening of clinical Doppler
signals using FFT and autoregressive modelling", Keeton, P.I.J.
Schlindwein, F.S., European Journal of Ultrasound (ISSN: 0929-8266), vol. 7,
No. 3, pp.209-218, August 1998. PDF
44 “Nonlinear dynamic systems modelling and
pattern recognition” Jianping Xiang, Jones N. B., Schlindwein F.S., In
Intelligent Engineering Systems through artificial neural networks, vol 11.
Proceedings of the Artificial Neural Networks in Engineering (ANNIE) 2001
Conference – Smart Engineering System Design: Neural networks, fuzzy logic,
evolutionary programming, data mining and complex systems, held in
45. “A
study on the optimum order of autoregressive models for heart rate
variability”, Anita Boardman, Fernando Soares Schlindwein, Ana Paula Rocha,
Argentina Leite, Physiological
Measurement, ISSN: 0967-3334, vol. 23, No.2, pp.325-336, May 2002, Article Number: PII S0967-3334(02)29245-X, abstract,
PDF
46.
“Detection of asphyxia using heart rate variability”,
Boardman, Anita; Schlindwein, Fernando S.; Thakor, Nitish V.; Kimura, Tetsu;
Geocadin, Romergryko G., Medical & Biological Engineering &
Computing, ISSN: 0140-0118, vol. 40, No.6, pp.618-624, November 2002.
PDF
47. “A new method
to discriminate between a valid IP response and EM coupling effects”, Xiang
J.; Jones N.B.; Cheng D.; Schlindwein F.S., Geophysical Prospecting, November 2002,
vol. 50, No. 6, pp. 565-576. PDF
48. " Improving the performance
of CMFD applications using multiple classifiers and a fusion framework", Parikh C.R.1; Pont
M.J.1; Jones
N.B.1; Schlindwein
F.S.1, Transactions of the
49.
“On the adequacy of identified Cole-Cole models”, Jianping Xiang, N.B. Jones,
Daizhan Cheng and F.S. Schlindwein, Computers & Geosciences, vol. 29,
No.5, pp. 647 – 654, June 2003. PDF
50. “Comparison of integrated micro-electrical-mechanical system and
piezoelectric accelerometers for machine condition monitoring”,
51. “Autoregressive Order Selection for Rotating Machinery”,
52.
MEDSIP-2006, F.S. Schlindwein, Scope,
53. “A Wavelet Cluster-based Band-pass Filtering and
Envelope Demodulation Approach with Application to Fault Diagnosis in a Dry
Vacuum Pump”, Jiang, W; Spurgeon, S K; Twiddle, J
A; Schlindwein, F S; Feng, Y; Thanagasundram, S, Proceedings of the Institution of Mechanical Engineers, Part C: Journal
of Mechanical Engineering Science, Volume 221, Chapter
11, pp. 1279-1286, 2007. PDF
54. “Heart rate variability analysis of IUGR and control
children at 10 years of age”, T.A. Biala, F.S. Schlindwein and M. Wailoo, Early
Human Development, Volume 83, Supplement 1, Pages S87-S88, September 2007.
55. “A fault detection tool using AR pole trajectory”,
56. “Normalized wavelet packets
quantifiers for condition monitoring”, Yanhui Feng, Schlindwein, Fernando Soares, Mechanical
Systems and Signal Processing, In Press, Corrected Proof, Available
online 24 July 2008, doi:10.1016/j.ymssp.2008.07.002, PDF
Journal Manuscripts under Review or in Preparation
“Localised
Bearing Defect Detection without A Priori Knowledge on Characteristic Defect
Frequencies”, Yanhui Feng,
Schlindwein, Fernando Soares, Mechanical Systems and Signal Processing, Under Reviewing.
“Undecimated Discrete Wavelet Transform for Bearing
Faults Detection and Diagnosis”, Yanhui Feng, Schlindwein, Fernando Soares, Mechanical
Systems and Signal Processing, Under Reviewing.
.
“Theoretical Analysis and modelling of Nonlinear IP Effects of Rocks and
Minerals”, Jishan He, F.S. Schlindwein, N. B. Jones, Jianping Xiang, submitted
to Geophysics, August 2003.
. “Finding the Required Sample Size for Vibrational
Analysis Using Autoregressive Modelling Techniques”, Thanagasundram and F.S.
Schlindwein, submitted
for publication, ASME Journal of Vibration and Acoustics March
2006.
.
“On automatic methods for classifying sleep EEG signals”, Y. Wang, F.S.
Schlindwein, N.B. Jones, J.C. Fothergill and C.D. Hanning, in preparation,
to be submitted to Physiological Measurement.
. “Is re-sampling with spline interpolation a ‘good’ approach to
deal with spectrum analysis of heart rate variability?” Rocha, A.P., Lago, P., Boardman,
A. and Schlindwein F.S., in preparation to be submitted to IEEE
Transactions on Biomedical Engineering.
.
“Optimum FIR filter for QRS detection”, Schlindwein, Fernando S.; Boardman, Anita; Yi, Aaron Cheng, Bien, Ivan C.H., and Tim Edwards, in
preparation, to be submitted to IEEE Transactions on Biomedical Engineering.
. Papers presented at scientific meetings:
1. 1st International Informatics Fair "Microcomputador
para análise de fluxo sangüíneo", São Paulo/SP, Brazil, Oct.1981.
2. Microcomputador para
análise de fluxo sangüíneo. VII Congresso Brasileiro de Engenharia Biomédica,
Petrópolis, RJ, Brazil, Nov. 1981.
3. Microcomputador para
análise de sinais de fluxo sangüíneo arterial obtidos por ultra-som Doppler.
16º Congresso do Capítulo Latino Americano de Angiologia - The International Society for Cardiovascular Surgery, Rio de Janeiro,
RJ, Brazil, Aug. 1982.
4. Estudo de parâmetros
extraídos de sinais de velocidade de fluxo arterial obtidos por ultra-som. 16º
Congresso do Capítulo Latino Americano de Angiologia - The International Society for Cardiovascular Surgery, Rio de Janeiro,
RJ, Brazil, Aug. 1982.
5. Microcomputador para
medições não invasivas de fluxo sangüíneo. I Congresso de Tecnologia / COPPE,
Rio de Janeiro, RJ, Brazil, Oct. 1983.
6. Aplicações de
microprocessadores em medicina. I Congresso de Tecnologia / COPPE, Rio de
Janeiro, RJ, Brazil, Oct. 1983.
7. Processamento digital de
medidas não-invasivas de fluxo sangüíneo. I Congresso de Tecnologia / COPPE,
Rio de Janeiro, RJ, Brazil, Oct. 1983.
8. Monitoração automática de
arritmias cardíacas. I Congresso de Tecnologia / COPPE, Rio de Janeiro, RJ, Brazil, Oct. 1983.
9. Implementação da técnica de
Schluter para detecção de complexos QRS em microcomputador para monitoração de
arritmias cardíacas. VIII Congresso Brasileiro de Engenharia Biomédica,
Florianópolis, SC, Brazil, Nov. 1983.
10. Microcomputador para
processamento de sinais de impedância biológica a beira de leito. VIII
Congresso Brasileiro de Engenharia Biomédica, Florianópolis, SC, Brazil, Nov. 1983.
11. Digitalizador
bidimensional utilizando registrador X-Y. Abstracts
of the
VIII Congresso Brasileiro de Engenharia Biomédica, Florianópolis, SC, Brazil, Nov. 1983.
12. Algoritmo para detecção de
QRS em microcomputador. VIII Congresso Brasileiro de Engenharia Biomédica,
Florianópolis, SC, Brazil, Nov. 1983.
13. Algoritmo para detecção e
delimitação de complexos QRS em microcomputador.
1er Encuentro Argentino Brasileño de Bioingenieria, Buenos Aires, Argentina, Nov.
1984.
14. Microcomputador para
análise de sinais Doppler de velocidade de fluxo arterial. 1er Encuentro Argentino Brasileño de
Bioingenieria, Buenos Aires, Argentina, Nov. 1984.
15. Processamento de sinais em
microcomputadores. 1º Seminário de Automação de Laboratório Analítico, Rio de
Janeiro, RJ, Brazil, Nov. 1984.
16. Monitoração automática de
arritmias cardíacas por microcomputador. I Simpósio de Informática Médica. São
Paulo, SP, Brazil, Dec. 1984
17. Algoritmo para detecção de
complexos QRS em microcomputador. I Simpósio de Informática Médica. São Paulo,
SP, Brazil, Dec. 1984
18. Detecção de complexos QRS
utilizando duas derivações de ECG. I Simpósio de Informática Médica. São Paulo,
SP, Brazil, Dec. 1984.
19. Detecção e classificação
de arritmias cardíacas. I Simpósio de Informática Médica. São Paulo, SP, Brazil, Dec. 1984.
20. Implementação em
microcomputador de algoritmo para evidenciar complexos QRS em tempo real. IX
Congresso Brasileiro de Engenharia Biomédica, Campinas, SP, Brazil, Nov. 1985.
21. SCHLINDWEIN, F. S.,
PEREIRA, W. C. A., LIMA, C. E. G., FLOSI, J. O. C. Detector e delimitador de
QRS em microcomputador utilizando duas derivações do ECG. In: Anais do IX
Congresso Brasileiro de Engenharia Biomédica, 1985. v.1. p.01 – 06, Nov. 1985.
22. Classificador para QRS. IX
Congresso Brasileiro de Engenharia Biomédica, Campinas, SP, Brazil, Nov. 1985.
23. NADAL, J., ALMEIDA, R. T.,
PEREIRA, W. C. A., SCHLINDWEIN, F. S. Avaliação do Tempo de Execução de
Algoritmos para Processamento em Tempo Real In: 1º Congresso Brasileiro de
Informática em Saúde, SP, Brazil, Nov. 1986.
24. NADAL, J., ALMEIDA, R. T.,
PEREIRA, W. C. A., SCHLINDWEIN, F. S. Avaliação do Tempo de Execução de
Algoritmo Para Processamento Em Tempo Real In: Resumos do I Congresso Brasileiro
de Informática Médica, Campinas. CAMPINAS/SP, Brazil, 1986.
25. PEREIRA, W. C. A., NADAL,
J., LIMA, C. E. G., SCHLINDWEIN, F. S. Algoritmo Para Detecção e Delimitação de
Complexos QRS Em Duas Derivações de ECG, In: 1o. Congresso Brasileiro de Informática
em Saúde, vol. 1, p.124. Campinas, SP, Brazil,
Nov.1986.
26. NADAL, J., PEREIRA, W. C.
A., LIMA, C. E. G., SCHLINDWEIN, F. S. Algoritmo para Detecção de Complexos QRS
Baseado em Duas Derivações de ECG In: Annals of the V Congresso Brasileiro
Argentino de Bioingeniería, Paraná, Entre Rios, Argentina, abstract, September 1986.
27. NADAL, J., STEPHAN, G. M., LOBIANCO JUNIOR, W., SCHLINDWEIN, F. S.
Sistema de aquisição e exibição de sinais biológicos para microcomputadores. In:
1º Congresso Brasileiro de Informática em Saúde, p.125,
28.
Spectral analysis of Doppler signals and computation of frequency envelope,
first moment and normalized first moment in real-time using a digital signal
processor and a microcomputer. Schlindwein, F.S. and Evans, D.H, Physics in
Medical Ultrasound,
29. Processamento em
tempo-real de sinais Doppler ultra-sônicos utilizando processador de sinais
digitais e microcomputador. X Congresso Brasileiro de Engenharia Biomédica, Rio
de Janeiro, RJ, Brazil, September 1987.
30. Algoritmo para computação
de transformadas rápidas de Fourier com processador de sinais digitais. X
Congresso Brasileiro de Engenharia Biomédica, Rio de Janeiro, RJ, Brazil, September 1987.
31. Unidade central de
processamento para aplicações gerais. X Congresso Brasileiro de Engenharia
Biomédica, Rio de Janeiro, RJ, Brazil,
September 1987.
32.
Useful Tools for the Development of Microcomputers Applied to Real-Time Signal
Processing In: X Congresso Brasileiro de
Engenharia Biomédica,
33.
The relationship between time averaged intensity weighted mean velocity and
time averaged maximum velocity in neonatal cerebral arteries. Physics and
Clinical Applications of Doppler ultrasound,
34.
A real-time autoregressive spectrum analyser. Physics and Clinical Applications
of Doppler ultrasound,
35.
An on-line system for intermittent capture of cerebral blood flow velocities
and systemic blood pressure. 3rd International Conference on Foetal
and Neonatal Physiological Measurements, Malmö/Ronneby
Brunn,
36.
Short term real-time spectral analysis of Doppler ultrasound signals with a
digital signal processor and a microcomputer. International School of Physical
Acoustics, 3rd course: Ultrasonic Signal Processing, Ettora Majorana Centre for Scientific Culture,
37.
On-line intermittent cerebral blood flow velocity and blood pressure
measurement in neonates. The British Medical Ultrasound Society, 20th
Annual Scientific Meeting,
38.
Real-time spectral analysis of ultrasonic Doppler signals - (FFTs, moving average
and autoregressive models). Seminar presented to the Leicester Bio-Engineering
Society,
39.
The implementation of a real-time spectrum analyser of ultrasonic Doppler
signals using a digital signal processor and a microcomputer. Seminar presented
to the members of the 'staff' of the Department of Medical Physics of The
Leicester Royal Infirmary,
40. Análise espectral de
sinais Doppler com o modelo autoregressivo: vantagens e desvantagens,
Schlindwein, F.S. and Evans, D.H. XII
Congresso Brasileiro de Engenharia Biomédica, Ribeirão Preto, SP, Brazil, Oct. 1990.
41. Processadores de sinais
digitais - descrição de um laboratório de processamento digital de sinais
equipado com DSPs para aplicações em engenharia biomédica, Schlindwein, F.S. and Evans, D.H. XII
Congresso Brasileiro de Engenharia Biomédica, Ribeirão Preto, SP, Brazil, Oct. 1990.
42.
"Short term autoregressive spectrum analysis for Doppler ultrasound
signals and the choice of the model order", Schlindwein, F.S. and Evans,
D.H. - World Congress on Medical Physics and Biomedical Engineering, Kyoto,
Japan, July, 7-12, 1991.
43.
"Development system for digital signal processing applications",
Esteves, V.P.P., Ribeiro, G.F; Schlindwein, F.S. – Proceedings of
the Annual International Conference of the IEEE, 13th Annual International Conference IEEE Engineering in
Medicine and Biology Society, Orlando, Florida, USA, October, 31 to Nov., 3, page(s):1246 –
1247, 1991. PDF
44. "Técnicas de
alisamento exponencial aplicadas a compressão de sinais
eletrocardiográficos", Appel, E., Schlindwein, F.S., and Nobre, F.F. - XLVII Congresso da Sociedade Brasileira
de Cardiologia, São Paulo, SP, Brazil,
September, 1991.
45. "Sistema baseado em
processador digital de sinais (DSP) para processamento, em tempo-real, de
sinais Doppler", Vieira, M.H.B. and Schlindwein, F.S. -
XIII Congresso Brasileiro de Engenharia Biomédica and I Fórum Nacional de Ciência e Tecnologia em Saúde, pp.
87-90, Caxambu, MG, Brazil, Oct. 1992.
46. "Sistema
estabilométrico para avaliação do equilíbrio postural", Oliveira, L.F.,
Schlindwein, F.S., D'Angelo, M.D. and Oliveira, C.G. -
XIII Congresso Brasileiro de Engenharia Biomédica and I Fórum Nacional de Ciência e Tecnologia em Saúde, pp.
107- 110, Caxambu, MG, Brazil, Oct. 1992.
47. "Sistema de aquisição
de sinais biológicos utilizando técnicas especiais de isolação", Lima,
M.A.D., Giannella-Neto, A., and Schlindwein, F.S.,
- XIII Congresso Brasileiro de Engenharia Biomédica and I Fórum Nacional de Ciência e Tecnologia em Saúde,
pp. 131- 133, Caxambu, MG, Brazil, Oct. 1992.
48. "Uso do alisamento
exponencial para modelagem e compressão de sinais eletrocardiográficos",
Appel, E., Schlindwein, F.S. and Nobre F.F. - XIII
Congresso Brasileiro de Engenharia Biomédica and I Fórum Nacional de Ciência e Tecnologia em Saúde, pp. 224- 227,
Caxambu, MG, Brazil, Oct. 1992.
49.
"Digital signal processors and their use in Biomedical Engineering",
Schlindwein, F.S., Tutorial TT36-4, World Congress on Medical Physics and
Biomedical Engineering, Rio de Janeiro, Brazil, 21-26 August, 1994.
50.
"Separation of foetal and maternal ECG via diagonal factor analysis and
inverse transfer function", Schlindwein, F.S., Kazim, S., Loudon, G.H.,
and Jones, N.B., World Congress on Medical Physics and Biomedical Engineering,
Rio de Janeiro, Brazil, 21-26 August, 1994.
51.
"Study of haemodynamic parameters calculated from ultrasound Doppler spectra",
Vasconcelos, C.F.M., Vieira, M.H.B., Simpson, D.M., Schlindwein, F.S., World
Congress on Medical Physics and Biomedical Engineering, Rio de Janeiro, Brazil
21-26 August, 1994.
52.
"A real-time ultrasonic image equipment prototype based on personal computer",
Pereira, F.R., Schlindwein, F.S., Machado, J.C., World Congress on Medical
Physics and Biomedical Engineering, Rio de Janeiro, Brazil, 21-26 August, 1994.
53. “Teaching real-time DSP using Digital Signal
Processors at the University of Leicester”, F.S. Schlindwein and N.B. Jones, IEE Colloquium on `The
Teaching of Digital Signal Processing (DSP) in Universities' (Digest
No.1995/035), pp. 5/1-5/8, 16 February
1995. Abstract
54.
“Model based dynamic analysis - an automatic method for classifying sleep EEG”,
Wang, Y., Hanning, C.D., Fothergill, J.C., Jones, N.B., and Schlindwein, F.S.,
13th Congress of the European Sleep Research Society, Brussels, Belgium, 16-21
June 1996. Journal of Sleep Research, Volume:
5, Issue: SUPPL. 1 Pages: 250, 1996
55. “Misturador heterodino
para detecção direcional de sinais Doppler ultra-sônicos”, Vasconcelos, C.F.M.,
Schlindwein, F.S., and Simpson, D.M., Annals of III Fórum Nacional de Ciência e Tecnologia em Saúde e XV Congresso Brasileiro de
Engenharia Biomédica, Campos do Jordão, SP, Brazil, vol.1, pp.347-348,
13-17 October 1996.
56.
“Wavelet analysis applied to Doppler signals - sonogram and maximum frequency
envelopes”, Keeton, P.I.J., Schlindwein, F.S., Jones, N.B., Medical &
Biological Engineering & Computing, vol. 35, Supplement Part I,
p.398, 1997, Abstracts of the World Congress on Medical Physics and Biomedical
Engineering, Nice, France, 14-19 September, 1997.
57.
“Optimal finite impulse response digital filter for QRS”, Schlindwein, F.S.,
Gibbons, J.G. and Jones, N.B., Medical & Biological Engineering &
Computing, vol. 35, Supplement Part I, p.441, 1997, Abstracts of the
World Congress on Medical Physics and Biomedical Engineering, Nice, France,
14-19 September, 1997.
58.
"Is there still a place for assembly?", Schlindwein, F.S., Keeton,
P.I.J., IEE
Colloquium on DSP Chips in Real Time Measurement and Control (Digest
No.1997/301), Page(s): 9/1 -
9/6, Leicester 25 September 1997. Abstract
59.
“Noise removal from Doppler ultrasound blood velocity signals using wavelets”,
Schlindwein, F.S., Reguig, B.F., and Keeton, P.I.J., Proceedings of IEE
Colloquium on Medical Applications of Signal Processing, (Ref. No.
1999/107), pp.5/1-5/6, IEE Colloquium
(Digest) (107), pp. 29-34.
60.
“Asphyxia and heart rate variability – experimental results”, Schlindwein,
Fernando S., Thakor, Nitish V., Ghodadra, Rutwik, Kimura Tetsu, Geocadin,
Romergryko G., Phway P.P. Thant, Proceedings of
the Eurasip EuroConference BIOSIGNAL 2000, Brno, Czech Republic, 21-23 June
2000.
61. “A new method to
discriminate between a valid IP response and EM coupling effects”, Jianping
Xiang, Jones, N.B., Daizhan Cheng and Schlindwein, F.S., American Association
of Petroleum Geologists-EAGEs International Research Conference on “Carbonate Reservoir
Characterization and Modeling for Enhanced Hydrocarbon Discovery and Recovery”,
El Paso, Texas, USA, 1-3 October 2000.
62. “The optimum order of autoregressive models for heart rate
variability”, Boardman, Anita and Schlindwein, F.S., 1st prize of
student paper competition, IEEE Engineering in Medicine & Biology Student
Society - UK & Republic of Ireland, Oxford Brookes University, Oxford, UK,
30 May 2001.
64.
“Theoretical analysis and experimental investigation of Induced Polarization
effect of rocks/minerals”, Jianping Xiang, Jones N. B., Schlindwein F.S., 2001
IEEE/CEIDP Conference on Electrical Insulation and Dielectric Phenomena,
Kitchener, Ontario, Canada, October 14-17, Annual Report pp. 58-62, 2001. PDF
65 “Nonlinear dynamic systems modelling and
pattern recognition” Jianping Xiang, Jones N. B., Schlindwein F.S., ANNIE
2001 – Smart Engineering System Design: Neural networks, fuzzy logic,
evolutionary programming, complex systems and data mining, St. Louis, Missouri,
USA, November 4-7, 2001.
66. “On Nonlinear Effect of Spectral IP”, Jishan
He, F.S. Schlindwein, N. B. Jones, Daizhan Cheng, Jianping Xiang. 2001
International Exposition and 71st Annual Meeting of the Society of
Exploration Geophysicists, San Antonio, Texas, USA, pp.2097-2100, 2001.
67.
“Optimum FIR filter for QRS detection”, Schlindwein F.S., Boardman A; Yi, Aaron Cheng; Edwards Timothy, and Ivan Bien C.H., in Analysis of Biomedical Signals and Images,
16th Biennial International Eurasip
Conference BIOSIGNAL 2002, Brno, Czech Republic, pp. 6-8, June 2002.
68.
“Detecting asphyxia at birth – can improvements be made?”, A. Boardman, F.S.
Schlindwein, N.V. Thakor, R. Ghodadra, T. Kimura, R. Geocadin, IEEE EMBS UK
& Republic of Ireland Postgraduate Conference on Biomedical Engineering and
Medical Physics: "Interfacing Engineering Expertise with Medical
Applications: Academic and Industrial Perspectives", p. 21, 2-3 July 2002,
Aston University, Birmingham, UK.
69. “Critical lengths of asphyxia for neurone damage - the animal
model”, Anita Boardman, F.S. Schlindwein, J.C. Clarke, N.V. Thakor, R. Ghodadra, T. Kimura, R.G.
Geocadin. 2nd European
Medical and Biological Engineering Conference,
70.
“Monitoring foetal and perinatal stress: the challenges and potential of using
heart rate variability derived from ultrasound", Anita Boardman, Fernando
S. Schlindwein, Jason Waugh, Assessment of the active cardiovascular system,
IPEM Meeting, York, 16 May 2003.
71. “A non-invasive quantitative measure of
beat-to-beat variability for fetal monitoring”, A. Boardman, F.S. Schlindwein,
A. Okenwa and J.J.S. Waugh, ISIS – 7th International Symposium on
Intrauterine Surveillance, Royal College of Obstetricians & Gynaecologists,
London, 9-11 June 2003.
72. “Análisis de
variabilidad en frecuencia cardiaca para detección de stress por asfixia en
neonatos”, ‘Conferencia Magistral’ given to the V
Congreso Internacional de Eléctrica y Electrónica Aplicada, CIEEA 2003, Durango, México, 7-10 Oct. 2003.
73. “Noninvasive determination of fetal heart rate and short term heart
rate variability using solely Doppler ultrasound with autocorrelation”, Fernando S.
Schlindwein, Anita Boardman, Sulaiman Vali, Nicholas Wright, Beth Jelfs, Stefan Mauger, Anjali
Das, Jason Waugh, Ronney B. Panerai and David H. Evans, MEDSIP2004 - The 2nd International Conference on
Medical Signal and Information Processing, ISBN: 0-86431-439-7, Sliema, Malta, 5th-8th September, 2004. http://www.engg.le.ac.uk/fss/MEDSIP2004-FSS_HRV_Malta.pdf
74. “A LabView based system for condition
monitoring of a dry vacuum pump using AR modelling techniques”,
76. “Exploring pole
positions for fault diagnostics from dry vacuum pumps”, Thanagasundram
S., Gurung K.R., Feng Yanhui and F.S. Schlindwein, 2nd
Festival of Postgraduate Research, Leicester, 13th
June 2006.
77. “Processing
Acoustic emission signals from dry vacuum pumps for fault diagnostics using
wavelets” Feng Yanhui and F.S. Schlindwein, 2nd
Festival of Postgraduate Research, Leicester, 13th
June 2006.
78. “AR pole trajectory in condition monitoring studies”, Thanagasundram
S., Gurung K.R., Feng Yanhui and F.S. Schlindwein, ICSV13 - Thirteenth International Congress on Sound and
Vibration (ICSV13), July 2-6, 2006, Vienna, Austria. http://www.engg.le.ac.uk/fss/Schlindwein_Thanagasundram_ICSV13.pdf
79.
“Discrete wavelet-based thresholding study on acoustic emission signals
to detect bearing defect on a rotating machine” Feng Yanhui and
Schlindwein, F.S., ICSV13 - Thirteenth International Congress on Sound and Vibration (ICSV13), July
2-6, 2006,
http://www.engg.le.ac.uk/fss/DWT THRESHOLDING STUDY ON AE TO DETECT BEARING DEFECT.pdf
80. “Optimal frequency and bandwidth for FIR bandpass filter for QRS
Detection”, F.S. Schlindwein, A.C. Yi, T. Edwards and I.C.H. Bien, MEDSIP 2006, The 3rd
International Conference on Medical Signal and Information Processing, Glasgow,
UK, 17-19 July, 2006.
http://www.engg.le.ac.uk/fss/MEDSIP2006_Schlindwein.pdf
81. “Autoregressive based diagnostics scheme for
detection of bearing faults”,
http://www.engg.le.ac.uk/fss/isma2006_0491.pdf
82. “Real-time signal
processing”, invited paper, F.S. Schlindwein, XX Brazilian Congress of
Biomedical Engineering, ISBN: 85-98739-02-2, São Pedro,
83. “Heart rate
variability, part 1 - history and physiology”, F.S. Schlindwein, invited short
course, XX Brazilian Congress of Biomedical Engineering, ISBN: 85-98739-02-2,
São Pedro, São Paulo, Brazil, 22-26 October 2006.
84. “Heart rate
variability, part 2 - hrv and asphyxia”, F.S. Schlindwein, invited short
course, XX Brazilian Congress of Biomedical Engineering, ISBN: 85-98739-02-2,
São Pedro, São Paulo, Brazil, 22-26 October 2006.
85. “Heart rate
variability, part 3 - hrv of IUGR infants”, F.S. Schlindwein, invited short
course, XX Brazilian Congress of Biomedical Engineering, ISBN: 85-98739-02-2,
São Pedro,
86. “A fault
detection tool using AR Pole Trajectory”, Suguna Thanagasundram and
Schlindwein, Fernando Soares, Second World Congress on Engineering Asset Management
and the Fourth International Conference on Condition Monitoring. ISBN:
978-1-901892-22-2,
87. “Improving
detectability on localized bearing defects using acoustic emission signals”, Yanhui
Feng, Schlindwein, Fernando S., Second World Congress on Engineering Asset
Management and the Fourth International Conference on Condition Monitoring.
ISBN: 978-1-901892-22-2,
88. “Improving
detectability on localised bearing defects using wavelet denoised acoustic
emission signals”, Yanhui Feng, Schlindwein, Fernando Soares, Second World
Congress on Engineering Asset Management and the Fourth International
Conference on Condition Monitoring. ISBN: 978-1-901892-22-2,
89. “Heart rate
variability analysis of IUGR and control children at 10 years of age”, T.A.
Biala, F.S. Schlindwein and M. Wailoo, 5th International
Congress on Developmental Origins of Health and Disease, Perth, Australia, 6-10
November 2007. http://www.congresswest.com.au/dohad/downloads/Scientific%20Program.pdf
90.
“Heart rate variability in 10 year olds – normal and intrauterine growth
restricted”
http://www.engg.le.ac.uk/fss/BIOSIGNAL_2008.pdf
91. “Heart rate variability
as a marker for asphyxia/hypoxia”, Cardona Rocha, F., Schlindwein, F.S.,19th
Biennial International Eurasip Conference
BIOSIGNAL 2008, Brno, Czech Republic, pp. 6-8, June 29 - July 1, 2008. http://www.engg.le.ac.uk/fss/Hrv
as a marker for asphyxia_2.pdf.
92. “Heart rate variability
in intrauterine growth retarded infants and normal infants with smoking and
non-smoking parents, using time and frequency domain methods”, Cripps, V. A.,
Biala, T., Schlindwein, F.S. and Wailoo, M., 13th International Conference on
Biomedical Engineering (ICBME2008), Singapore, 3rd to 6th December 2008. http://www.engg.le.ac.uk/fss/paperifmbeconference2008_rev3.pdf.
93.
“Analysis of the heart rate variability before and after asphyxia”, Cardona
Rocha, F., Schlindwein, F.S., Accepted, BIOSIGNALS 2009, Porto, Portugal, 14-17 January 2009.
http://www.engg.le.ac.uk/fss/BIOSIGNALS_2009_82_rev1.pdf