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Charlton PH, Birrenkott DA, Bonnici T, Pimentel MA, Johnson AE, Alastruey J, Tarassenko L, Watkinson PJ, Beale R, Clifton DA:Breathing Rate Estimation From the Electrocardiogram and Photoplethysmogram: A Review. In: IEEE Reviews in Biomedical Engineering. 11. Jahrgang, 2018, S.2–20, doi:10.1109/RBME.2017.2763681, PMID 29990026, PMC7612521(freier Volltext), bibcode:2018IRBE...11....2C (englisch).
Davies HJ, Bachtiger P, Williams I, Molyneaux PL, Peters NS, Mandic DP:Wearable In-Ear PPG: Detailed Respiratory Variations Enable Classification of COPD. In: IEEE Transactions on Bio-Medical Engineering. 69. Jahrgang, Nr.7, Juli 2022, S.2390–2400, doi:10.1109/TBME.2022.3145688, PMID 35077352, bibcode:2022ITBE...69.2390D (englisch).
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Puyo L, Paques M, Fink M, Sahel JA, Atlan M:In vivo laser Doppler holography of the human retina. In: Biomedical Optics Express. 9. Jahrgang, Nr.9, September 2018, S.4113–4129, doi:10.1364/BOE.9.004113, PMID 30615709, PMC6157768(freier Volltext), arxiv:1804.10066 (englisch).
Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band2015, 2015, ISBN 978-1-4244-9271-8, Investigation of photoplethysmography and arterial blood oxygen saturation from the ear-canal and the finger under conditions of artificially induced hypothermia, S.7954–7957, doi:10.1109/EMBC.2015.7320237, PMID 26738137 (englisch, city.ac.uk[PDF]).
Allen J:Photoplethysmography and its application in clinical physiological measurement. In: Physiological Measurement. 28. Jahrgang, Nr.3, März 2007, S.R1–39, doi:10.1088/0967-3334/28/3/R01, PMID 17322588 (englisch).
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Reisner A, Shaltis PA, McCombie D, Asada HH:Utility of the photoplethysmogram in circulatory monitoring. In: Anesthesiology. 108. Jahrgang, Nr.5, Mai 2008, S.950–958, doi:10.1097/ALN.0b013e31816c89e1, PMID 18431132 (englisch).
Charlton PH, Kyriaco PA, Mant J, Marozas V, Chowienczyk P, Alastruey J:Wearable Photoplethysmography for Cardiovascular Monitoring. In: Proceedings of the IEEE. 110. Jahrgang, Nr.3, März 2022, S.355–381, doi:10.1109/JPROC.2022.3149785, PMID 35356509, PMC7612541(freier Volltext) – (englisch).
Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band2015, 2015, ISBN 978-1-4244-9271-8, Investigation of photoplethysmography and arterial blood oxygen saturation from the ear-canal and the finger under conditions of artificially induced hypothermia, S.7954–7957, doi:10.1109/EMBC.2015.7320237, PMID 26738137 (englisch, city.ac.uk[PDF]).
Allen J, Overbeck K, Nath AF, Murray A, Stansby G:A prospective comparison of bilateral photoplethysmography versus the ankle-brachial pressure index for detecting and quantifying lower limb peripheral arterial disease. In: Journal of Vascular Surgery. 47. Jahrgang, Nr.4, April 2008, S.794–802, doi:10.1016/j.jvs.2007.11.057, PMID 18381141 (englisch).
McKay ND, Griffiths B, Di Maria C, Hedley S, Murray A, Allen J:Novel photoplethysmography cardiovascular assessments in patients with Raynaud's phenomenon and systemic sclerosis: a pilot study. In: Rheumatology. 53. Jahrgang, Nr.10, Oktober 2014, S.1855–1863, doi:10.1093/rheumatology/keu196, PMID 24850874 (englisch).
Mizeva I, Di Maria C, Frick P, Podtaev S, Allen J:Quantifying the correlation between photoplethysmography and laser Doppler flowmetry microvascular low-frequency oscillations. In: Journal of Biomedical Optics. 20. Jahrgang, Nr.3, März 2015, S.037007, doi:10.1117/1.JBO.20.3.037007, PMID 25764202, bibcode:2015JBO....20c7007M (englisch).
Al-Jebrni AH, Chwyl B, Wang XY, Wong A, Saab BJ:AI-enabled remote and objective quantification of stress at scale. In: Biomedical Signal Processing and Control. 59. Jahrgang, 1.Mai 2020, ISSN1746-8094, S.101929, doi:10.1016/j.bspc.2020.101929 (englisch).
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Shelley KH:Photoplethysmography: beyond the calculation of arterial oxygen saturation and heart rate. In: Anesthesia and Analgesia. 105. Jahrgang, 6 Suppl, Dezember 2007, S.S31–S36, doi:10.1213/01.ane.0000269512.82836.c9, PMID 18048895 (englisch).
Shelley KH, Jablonka DH, Awad AA, Stout RG, Rezkanna H, Silverman DG:What is the best site for measuring the effect of ventilation on the pulse oximeter waveform? In: Anesthesia and Analgesia. 103. Jahrgang, Nr.2, August 2006, S.372–7,tableofcontents, doi:10.1213/01.ane.0000222477.67637.17, PMID 16861419 (englisch).
Charlton PH, Birrenkott DA, Bonnici T, Pimentel MA, Johnson AE, Alastruey J, Tarassenko L, Watkinson PJ, Beale R, Clifton DA:Breathing Rate Estimation From the Electrocardiogram and Photoplethysmogram: A Review. In: IEEE Reviews in Biomedical Engineering. 11. Jahrgang, 2018, S.2–20, doi:10.1109/RBME.2017.2763681, PMID 29990026, PMC7612521(freier Volltext), bibcode:2018IRBE...11....2C (englisch).
Davies HJ, Bachtiger P, Williams I, Molyneaux PL, Peters NS, Mandic DP:Wearable In-Ear PPG: Detailed Respiratory Variations Enable Classification of COPD. In: IEEE Transactions on Bio-Medical Engineering. 69. Jahrgang, Nr.7, Juli 2022, S.2390–2400, doi:10.1109/TBME.2022.3145688, PMID 35077352, bibcode:2022ITBE...69.2390D (englisch).
Shamir M, Eidelman LA, Floman Y, Kaplan L, Pizov R:Pulse oximetry plethysmographic waveform during changes in blood volume. In: British Journal of Anaesthesia. 82. Jahrgang, Nr.2, Februar 1999, S.178–81, doi:10.1093/bja/82.2.178, PMID 10364990 (englisch).
Kwang BokKim,Hyun JaeBaek:Photoplethysmography in Wearable Devices: A Comprehensive Review of Technological Advances, Current Challenges, and Future Directions. In: Electronics. 12. Jahrgang, Nr.13, 3.Juli 2023, ISSN2079-9292, S.2923, doi:10.3390/electronics12132923 (englisch).
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Puyo L, Paques M, Fink M, Sahel JA, Atlan M:In vivo laser Doppler holography of the human retina. In: Biomedical Optics Express. 9. Jahrgang, Nr.9, September 2018, S.4113–4129, doi:10.1364/BOE.9.004113, PMID 30615709, PMC6157768(freier Volltext), arxiv:1804.10066 (englisch).
Allen J:Photoplethysmography and its application in clinical physiological measurement. In: Physiological Measurement. 28. Jahrgang, Nr.3, März 2007, S.R1–39, doi:10.1088/0967-3334/28/3/R01, PMID 17322588 (englisch).
Pelaez EA, Villegas ER: 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. Band2007, 2007, ISBN 978-1-4244-0787-3, LED power reduction trade-offs for ambulatory pulse oximetry, S.2296–2299, doi:10.1109/IEMBS.2007.4352784, PMID 18002450 (englisch).
Reisner A, Shaltis PA, McCombie D, Asada HH:Utility of the photoplethysmogram in circulatory monitoring. In: Anesthesiology. 108. Jahrgang, Nr.5, Mai 2008, S.950–958, doi:10.1097/ALN.0b013e31816c89e1, PMID 18431132 (englisch).
Charlton PH, Kyriaco PA, Mant J, Marozas V, Chowienczyk P, Alastruey J:Wearable Photoplethysmography for Cardiovascular Monitoring. In: Proceedings of the IEEE. 110. Jahrgang, Nr.3, März 2022, S.355–381, doi:10.1109/JPROC.2022.3149785, PMID 35356509, PMC7612541(freier Volltext) – (englisch).
Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band2015, 2015, ISBN 978-1-4244-9271-8, Investigation of photoplethysmography and arterial blood oxygen saturation from the ear-canal and the finger under conditions of artificially induced hypothermia, S.7954–7957, doi:10.1109/EMBC.2015.7320237, PMID 26738137 (englisch, city.ac.uk[PDF]).
Allen J, Overbeck K, Nath AF, Murray A, Stansby G:A prospective comparison of bilateral photoplethysmography versus the ankle-brachial pressure index for detecting and quantifying lower limb peripheral arterial disease. In: Journal of Vascular Surgery. 47. Jahrgang, Nr.4, April 2008, S.794–802, doi:10.1016/j.jvs.2007.11.057, PMID 18381141 (englisch).
McKay ND, Griffiths B, Di Maria C, Hedley S, Murray A, Allen J:Novel photoplethysmography cardiovascular assessments in patients with Raynaud's phenomenon and systemic sclerosis: a pilot study. In: Rheumatology. 53. Jahrgang, Nr.10, Oktober 2014, S.1855–1863, doi:10.1093/rheumatology/keu196, PMID 24850874 (englisch).
Mizeva I, Di Maria C, Frick P, Podtaev S, Allen J:Quantifying the correlation between photoplethysmography and laser Doppler flowmetry microvascular low-frequency oscillations. In: Journal of Biomedical Optics. 20. Jahrgang, Nr.3, März 2015, S.037007, doi:10.1117/1.JBO.20.3.037007, PMID 25764202, bibcode:2015JBO....20c7007M (englisch).
Alian AA, Shelley KH:Photoplethysmography. In: Best Practice & Research. Clinical Anaesthesiology. 28. Jahrgang, Nr.4, Dezember 2014, S.395–406, doi:10.1016/j.bpa.2014.08.006, PMID 25480769 (englisch).
Shelley KH:Photoplethysmography: beyond the calculation of arterial oxygen saturation and heart rate. In: Anesthesia and Analgesia. 105. Jahrgang, 6 Suppl, Dezember 2007, S.S31–S36, doi:10.1213/01.ane.0000269512.82836.c9, PMID 18048895 (englisch).
Shelley KH, Jablonka DH, Awad AA, Stout RG, Rezkanna H, Silverman DG:What is the best site for measuring the effect of ventilation on the pulse oximeter waveform? In: Anesthesia and Analgesia. 103. Jahrgang, Nr.2, August 2006, S.372–7,tableofcontents, doi:10.1213/01.ane.0000222477.67637.17, PMID 16861419 (englisch).
Charlton PH, Birrenkott DA, Bonnici T, Pimentel MA, Johnson AE, Alastruey J, Tarassenko L, Watkinson PJ, Beale R, Clifton DA:Breathing Rate Estimation From the Electrocardiogram and Photoplethysmogram: A Review. In: IEEE Reviews in Biomedical Engineering. 11. Jahrgang, 2018, S.2–20, doi:10.1109/RBME.2017.2763681, PMID 29990026, PMC7612521(freier Volltext), bibcode:2018IRBE...11....2C (englisch).
Davies HJ, Bachtiger P, Williams I, Molyneaux PL, Peters NS, Mandic DP:Wearable In-Ear PPG: Detailed Respiratory Variations Enable Classification of COPD. In: IEEE Transactions on Bio-Medical Engineering. 69. Jahrgang, Nr.7, Juli 2022, S.2390–2400, doi:10.1109/TBME.2022.3145688, PMID 35077352, bibcode:2022ITBE...69.2390D (englisch).
Shamir M, Eidelman LA, Floman Y, Kaplan L, Pizov R:Pulse oximetry plethysmographic waveform during changes in blood volume. In: British Journal of Anaesthesia. 82. Jahrgang, Nr.2, Februar 1999, S.178–81, doi:10.1093/bja/82.2.178, PMID 10364990 (englisch).
Puyo L, Paques M, Fink M, Sahel JA, Atlan M:In vivo laser Doppler holography of the human retina. In: Biomedical Optics Express. 9. Jahrgang, Nr.9, September 2018, S.4113–4129, doi:10.1364/BOE.9.004113, PMID 30615709, PMC6157768(freier Volltext), arxiv:1804.10066 (englisch).
Al-Jebrni AH, Chwyl B, Wang XY, Wong A, Saab BJ:AI-enabled remote and objective quantification of stress at scale. In: Biomedical Signal Processing and Control. 59. Jahrgang, 1.Mai 2020, ISSN1746-8094, S.101929, doi:10.1016/j.bspc.2020.101929 (englisch).
Kwang BokKim,Hyun JaeBaek:Photoplethysmography in Wearable Devices: A Comprehensive Review of Technological Advances, Current Challenges, and Future Directions. In: Electronics. 12. Jahrgang, Nr.13, 3.Juli 2023, ISSN2079-9292, S.2923, doi:10.3390/electronics12132923 (englisch).