Photoplethysmogramm (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Photoplethysmogramm" in German language version.

Last modified:

Ref.Un. Ref.Website
Global rank German rank
2nd place
3rd place
5th place
7th place
14th place
133rd place
107th place
5th place
49th place
152nd place
low place
low place
64th place
4,211th place
29th place
2nd place

adsabs.harvard.edu (Global: 14th place; German: 133rd place)

ui.adsabs.harvard.edu

arxiv.org (Global: 49th place; German: 152nd place)

city.ac.uk (Global: low place; German: low place)

openaccess.city.ac.uk

  • Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band 2015, 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]).

doi.org (Global: 2nd place; German: 3rd place)

  • 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. Band 2007, 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).
  • Peter H Charlton, John Allen, Raquel Bailón, Stephanie Baker, Joachim A Behar, Fei Chen, Gari D Clifford, David A Clifton, Harry J Davies, Cheng Ding, Xiaorong Ding, Jessilyn Dunn, Mohamed Elgendi, Munia Ferdoushi, Daniel Franklin: The 2023 wearable photoplethysmography roadmap. In: Physiological Measurement. 44. Jahrgang, Nr. 11, 1. November 2023, ISSN 0967-3334, S. 111001, doi:10.1088/1361-6579/acead2, PMID 37494945, PMC 10686289 (freier Volltext) (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, PMC 7612541 (freier Volltext) (englisch).
  • Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band 2015, 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, ISSN 1746-8094, S. 101929, doi:10.1016/j.bspc.2020.101929 (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, table of contents, 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, PMC 7612521 (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 Bok Kim, Hyun Jae Baek: Photoplethysmography in Wearable Devices: A Comprehensive Review of Technological Advances, Current Challenges, and Future Directions. In: Electronics. 12. Jahrgang, Nr. 13, 3. Juli 2023, ISSN 2079-9292, S. 2923, doi:10.3390/electronics12132923 (englisch).
  • George S Stergiou et al.: European Society of Hypertension recommendations for the validation of cuffless blood pressure measuring devices: European Society of Hypertension Working Group on Blood Pressure Monitoring and Cardiovascular Variability. In: Journal of Hypertension. 2022, doi:10.1097/HJH.0000000000003483.
  • Corey K. Bradley et al.: Cuffless Blood Pressure Devices. In: American Journal of Hypertension. Band 35, Nr. 5, 2022, doi:10.1093/ajh/hpac017.
  • Verkruysse W, Svaasand LO, Nelson JS: Remote plethysmographic imaging using ambient light. In: Optics Express. 16. Jahrgang, Nr. 26, Dezember 2008, S. 21434–21445, doi:10.1364/OE.16.021434, PMID 19104573, PMC 2717852 (freier Volltext), bibcode:2008OExpr..1621434V (englisch).
  • Rouast PV, Adam MT, Chiong R, Cornforth D, Lux E: Remote heart rate measurement using low-cost RGB face video: A technical literature review. In: Frontiers of Computer Science. 12. Jahrgang, Nr. 5, 2018, S. 858–872, doi:10.1007/s11704-016-6243-6 (englisch).
  • Bencteux J, Pagnoux P, Kostas T, Bayat S, Atlan M: Holographic laser Doppler imaging of pulsatile blood flow. In: Journal of Biomedical Optics. 20. Jahrgang, Nr. 6, Juni 2015, S. 066006, doi:10.1117/1.JBO.20.6.066006, PMID 26085180, arxiv:1501.05776, bibcode:2015JBO....20f6006B (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, PMC 6157768 (freier Volltext), arxiv:1804.10066 (englisch).

ghostarchive.org (Global: 64th place; German: 4,211th place)

nih.gov (Global: 5th place; German: 7th place)

ncbi.nlm.nih.gov

  • 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. Band 2007, 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).
  • Peter H Charlton, John Allen, Raquel Bailón, Stephanie Baker, Joachim A Behar, Fei Chen, Gari D Clifford, David A Clifton, Harry J Davies, Cheng Ding, Xiaorong Ding, Jessilyn Dunn, Mohamed Elgendi, Munia Ferdoushi, Daniel Franklin: The 2023 wearable photoplethysmography roadmap. In: Physiological Measurement. 44. Jahrgang, Nr. 11, 1. November 2023, ISSN 0967-3334, S. 111001, doi:10.1088/1361-6579/acead2, PMID 37494945, PMC 10686289 (freier Volltext) (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, PMC 7612541 (freier Volltext) (englisch).
  • Budidha K, Kyriacou PA: 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). Band 2015, 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, table of contents, 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, PMC 7612521 (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).
  • Verkruysse W, Svaasand LO, Nelson JS: Remote plethysmographic imaging using ambient light. In: Optics Express. 16. Jahrgang, Nr. 26, Dezember 2008, S. 21434–21445, doi:10.1364/OE.16.021434, PMID 19104573, PMC 2717852 (freier Volltext), bibcode:2008OExpr..1621434V (englisch).
  • Bencteux J, Pagnoux P, Kostas T, Bayat S, Atlan M: Holographic laser Doppler imaging of pulsatile blood flow. In: Journal of Biomedical Optics. 20. Jahrgang, Nr. 6, Juni 2015, S. 066006, doi:10.1117/1.JBO.20.6.066006, PMID 26085180, arxiv:1501.05776, bibcode:2015JBO....20f6006B (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, PMC 6157768 (freier Volltext), arxiv:1804.10066 (englisch).

redirecter.toolforge.org (Global: 29th place; German: 2nd place)

zdb-katalog.de (Global: 107th place; German: 5th place)

  • Peter H Charlton, John Allen, Raquel Bailón, Stephanie Baker, Joachim A Behar, Fei Chen, Gari D Clifford, David A Clifton, Harry J Davies, Cheng Ding, Xiaorong Ding, Jessilyn Dunn, Mohamed Elgendi, Munia Ferdoushi, Daniel Franklin: The 2023 wearable photoplethysmography roadmap. In: Physiological Measurement. 44. Jahrgang, Nr. 11, 1. November 2023, ISSN 0967-3334, S. 111001, doi:10.1088/1361-6579/acead2, PMID 37494945, PMC 10686289 (freier Volltext) (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, ISSN 1746-8094, S. 101929, doi:10.1016/j.bspc.2020.101929 (englisch).
  • Kwang Bok Kim, Hyun Jae Baek: Photoplethysmography in Wearable Devices: A Comprehensive Review of Technological Advances, Current Challenges, and Future Directions. In: Electronics. 12. Jahrgang, Nr. 13, 3. Juli 2023, ISSN 2079-9292, S. 2923, doi:10.3390/electronics12132923 (englisch).