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J. Kumar V. and K. A. Reddy
References
1. E.N. Bruce, Biomedical Signal Processing and Signal Modeling (John Wiley & Sons, NY,
2001)
2. R.M. Rangayyan, Biomedical Signal Analysis: A Case Study Approach, IEEE Press Series on
Biomedical Engineering (John Wiley & Sons, Singapore, 2002)
3. L.S. Sornmo, P. Laguna, Bioelectrical Signal Processing in Cardiac and Neurological
Applications (Elsevier academic press, USA, 2005)
4. W.F. Ganong, Review of Medical Physiology, 16th edn. (Appleton & Lange, Norwalk, CT,
1993)
5. D.L. Kasper, Harrison’s principles of internal medicine, 16th ed. (McGraw-Hill, NY, 2005)
6. K. John, J. Li, Dynamics of vascular system, Series on bioengineering & biomedical
engineering, vol 1 (World scientific publishing Co. Pte. Ltd, Singapore, 2004)
7. R.D. Miller, Miller’s anesthesia, 6th edn. (Elsevier Churchill Livingstone, Philadelphia, 2005)
8. J.W. Severinghaus, P.B. Astrup, History of blood gas analysis-VI. Oximetry. J Clin Monit 2(4),
270–288 (1986)
9. J.G. Webster, Design of Pulse Oximeters (Taylor & Francis Group, NY, 1999)
10. J.A. Dorsch, S.E. Dorsch, Understanding Anaesthesia Equipment (Williams & Wilkins,
Baltimore, 1999)
11. G.D. Baura, System Theory and Practical Applications of Biomedical Signals, IEEE Press
Series on Biomedical Engineering (John Wiley & Sons, NJ, 2002)
12. T. Ahrens, K. Rutherford, Essentials of Oxygenation (Jones & Barlett, Boston, 1993)
13. Y. Pole, Evolution of the pulse oximeter. Int Congress Series 1242, 137–142 (2002)
14. C. Secker, P. Spiers, Accuracy of pulse oximetry in patients with low systematic vascular
resistance. Anesthesia 52(2), 127–130 (1998)
15. A.J. Williams, ABC of oxygen: Assessing and interpreting arterial blood gases and acid-base
balance. BMJ 317, 1213–1216 (1998)
16. A.B. Hertzman, The blood supply of various skin areas as estimated by the photoelectric
plethysmograph. Am J Physiol 124, 328–340 (1938)
17. K. Nakajima, T. Tamura, H. Miike, Monitoring of heart and respiratory rates by Photoplethysmography using a digital filtering technique. Med Eng Phys 18(5), 365–372 (1966)
18. V. Blazek, U. Schultz-Ehrenburg, Quantitative Photoplethysmography: Basic Facts and
Examination Tests for Evaluating Peripheral Vascular Functions (VDI Verlag, Düsseldorf,
1996)
19. S. Sarin, D.A. Shields, J.H. Scurr, P.D. Smith, Photoplethysmography: a valuable noninvasive
tool in the assessment of venous dysfunction ? J Vasc Surg 16(2), 154–162 (1992)
20. K. Matthes, Untersuchungen über die Sauerstoffsättigung des menschlichen Arterienblutes—
Studies on the Oxygen Saturation of Arterial Human Blood. Naunyn-Schmiedeberg’s Archives
of Pharmacology (in German) 179(6), 698–711 (1935)
21. G.A. Millikan, The oximeter, an instrument for measuring continuously the arterial saturation
of arterial blood in man. Rev Sci Instrum 13, 434–444 (1942)
22. E.A.G. Goldie, Device for continuous indication of oxygen saturation of circulating blood in
man”, J Sci Instrum 19, 19–23 (1942)
23. E.H. Wood, J.E. Geraci, Photoelectric determination of arterial oxygen saturation in man. J
Lab Clin Med 34, 387–401 (1949)
24. R. Brinkman, W.G. Zijlstra, Determination and continuous registration of the percentage
oxygen saturation in clinical conditions. Arch Chir Neerl 1, 177–183 (1949)
25. P. Sekelj, A.L. Johnson, H.E. Hoff, P.M. Scherch, A photoelectric method for the determination
of arterial oxygen saturation in man. Amer Heart J 42, 826–848 (1951)
26. M.L. Polanyi, R.M. Hehir, New reflection oximeter. Rev Sci Instru 31(4), 401–403 (1960)
27. A. Cohen, N.A. Wardsworth, Light emitting diode skin reflectance oximeter. Med Biol Eng
10, 385–391 (1974)
J. Kumar V. and K. A. Reddy
References
1. E.N. Bruce, Biomedical Signal Processing and Signal Modeling (John Wiley & Sons, NY,
2001)
2. R.M. Rangayyan, Biomedical Signal Analysis: A Case Study Approach, IEEE Press Series on
Biomedical Engineering (John Wiley & Sons, Singapore, 2002)
3. L.S. Sornmo, P. Laguna, Bioelectrical Signal Processing in Cardiac and Neurological
Applications (Elsevier academic press, USA, 2005)
4. W.F. Ganong, Review of Medical Physiology, 16th edn. (Appleton & Lange, Norwalk, CT,
1993)
5. D.L. Kasper, Harrison’s principles of internal medicine, 16th ed. (McGraw-Hill, NY, 2005)
6. K. John, J. Li, Dynamics of vascular system, Series on bioengineering & biomedical
engineering, vol 1 (World scientific publishing Co. Pte. Ltd, Singapore, 2004)
7. R.D. Miller, Miller’s anesthesia, 6th edn. (Elsevier Churchill Livingstone, Philadelphia, 2005)
8. J.W. Severinghaus, P.B. Astrup, History of blood gas analysis-VI. Oximetry. J Clin Monit 2(4),
270–288 (1986)
9. J.G. Webster, Design of Pulse Oximeters (Taylor & Francis Group, NY, 1999)
10. J.A. Dorsch, S.E. Dorsch, Understanding Anaesthesia Equipment (Williams & Wilkins,
Baltimore, 1999)
11. G.D. Baura, System Theory and Practical Applications of Biomedical Signals, IEEE Press
Series on Biomedical Engineering (John Wiley & Sons, NJ, 2002)
12. T. Ahrens, K. Rutherford, Essentials of Oxygenation (Jones & Barlett, Boston, 1993)
13. Y. Pole, Evolution of the pulse oximeter. Int Congress Series 1242, 137–142 (2002)
14. C. Secker, P. Spiers, Accuracy of pulse oximetry in patients with low systematic vascular
resistance. Anesthesia 52(2), 127–130 (1998)
15. A.J. Williams, ABC of oxygen: Assessing and interpreting arterial blood gases and acid-base
balance. BMJ 317, 1213–1216 (1998)
16. A.B. Hertzman, The blood supply of various skin areas as estimated by the photoelectric
plethysmograph. Am J Physiol 124, 328–340 (1938)
17. K. Nakajima, T. Tamura, H. Miike, Monitoring of heart and respiratory rates by Photoplethysmography using a digital filtering technique. Med Eng Phys 18(5), 365–372 (1966)
18. V. Blazek, U. Schultz-Ehrenburg, Quantitative Photoplethysmography: Basic Facts and
Examination Tests for Evaluating Peripheral Vascular Functions (VDI Verlag, Düsseldorf,
1996)
19. S. Sarin, D.A. Shields, J.H. Scurr, P.D. Smith, Photoplethysmography: a valuable noninvasive
tool in the assessment of venous dysfunction ? J Vasc Surg 16(2), 154–162 (1992)
20. K. Matthes, Untersuchungen über die Sauerstoffsättigung des menschlichen Arterienblutes—
Studies on the Oxygen Saturation of Arterial Human Blood. Naunyn-Schmiedeberg’s Archives
of Pharmacology (in German) 179(6), 698–711 (1935)
21. G.A. Millikan, The oximeter, an instrument for measuring continuously the arterial saturation
of arterial blood in man. Rev Sci Instrum 13, 434–444 (1942)
22. E.A.G. Goldie, Device for continuous indication of oxygen saturation of circulating blood in
man”, J Sci Instrum 19, 19–23 (1942)
23. E.H. Wood, J.E. Geraci, Photoelectric determination of arterial oxygen saturation in man. J
Lab Clin Med 34, 387–401 (1949)
24. R. Brinkman, W.G. Zijlstra, Determination and continuous registration of the percentage
oxygen saturation in clinical conditions. Arch Chir Neerl 1, 177–183 (1949)
25. P. Sekelj, A.L. Johnson, H.E. Hoff, P.M. Scherch, A photoelectric method for the determination
of arterial oxygen saturation in man. Amer Heart J 42, 826–848 (1951)
26. M.L. Polanyi, R.M. Hehir, New reflection oximeter. Rev Sci Instru 31(4), 401–403 (1960)
27. A. Cohen, N.A. Wardsworth, Light emitting diode skin reflectance oximeter. Med Biol Eng
10, 385–391 (1974)
