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Adaptation of ENDS Device Measurements into Puffing Topography Variables and Clinical Implications Cover

Adaptation of ENDS Device Measurements into Puffing Topography Variables and Clinical Implications

Open Access
|May 2025

References

  1. Wadkin, R., C. Allen, and I.M. Fearon: E-Cigarette Puffing Topography: The Importance of Assessing User Behaviour to Inform Emissions Testing; Drug Test. Anal. 15 (2023) 1222–1232. DOI: 10.1002/dta.3322
  2. Soule, E., M. Bansal-Travers, R. Grana, S. McIntosh, S. Price, J.B. Unger, and K. Walton: Electronic Cigarette Use Intensity Measurement Challenges and Regulatory Implications; Tob. Control 32 (2023) 124–129. DOI: 10.1136/tobaccocontrol-2021-056483
  3. Gao, X., M. Fewx, J. Sprock, H. Jian, Y. Gao, and Y. Liu: A Novel Puff Recording Electronic Nicotine Delivery System for Assessing Naturalistic Puff Topography and Nicotine Consumption During Ad Libitum Use: Ancillary Study; JMIR Form. Res. 7 (2023) e42544. DOI: 10.2196/43544
  4. Gao, X., L. Humberstone, and Y. Liu: Actual Use Behavior Assessment of a Novel Puff Recording Electronic Nicotine Delivery System: Observation Study; JMIR Form. Res. 7 (2023) e43175. DOI: 10.2196/43175
  5. Oldham, M.J., S.E. Plunkett, M.T. Fisher, K.H. Shafer, and M.J. Morton: Laboratory Evaluation of the CReSS-micro™ Portable Topography Device: Implications for Clinical Research; Contrib. Tob. Nicotine Res. 26 (2014) 19–25. DOI: 10.2478/cttr-2014-0004
  6. Belsare, P., V.Y. Senyurek, M.H. Imtiaz, J. Betts, C.A. Motschman, A.N. Dowd, S.T. Tiffany, and E. Sazonov: Analyzing Impact of Mouthpiece-Based Puff Topography Devices on Smoking Behavior Using Wearable Sensors; Proc. 44th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC), July 11–15, 2022, pp. 1787–1791. DOI: 10.1109/EMBC48229.2022.9871589
  7. Pickens, R.W., S.W. Gust, P.M. Catchings, and D.S. Svikis: Measurement of Some Topographical Aspects of Smoking in the Natural Environment; in: Measurement in the Analysis and Treatment of Smoking Behavior, NIDA Research Monograph, Vol. 48, NIDA, Rockville, ML, USA, ISBN: 1046–9516, 1983, pp. 62–73.
  8. Cox, S., L. Kosmider, H. McRobbie, M. Goniewicz, C. Kimber, M. Doig, and L. Dawkins: E-Cigarette Puffing Patterns Associated with High and Low Nicotine E-Liquid Strength: Effects on Toxicant and Carcinogen Exposure; BMC Public Health 16 (2016) 999. DOI: 10.1186/s12889-016-3653-1
  9. Dawkins, L., C. Kimber, M. Doig, C. Feyerabend, and O. Corcoran: Self-Titration by Experienced E-Cigarette Users: Blood Nicotine Delivery and Subjective Effects; Psychopharmacology 233 (2016) 2933–2941. DOI: 10.1007/s00213-016-4338-2
  10. 10. Farsalinos, K., K. Poulas, and V. Voudris: Changes in Puffing Topography and Nicotine Consumption Depending on the Power Setting of Electronic Cigarettes; Nicotine Tob. Res. 20 (2018) 993–997. DOI: 10.1093/ntr/ntx219 .
    FarsalinosK. PoulasK. VoudrisV. Changes in Puffing Topography and Nicotine Consumption Depending on the Power Setting of Electronic Cigarettes Nicotine Tob. Res. 20 2018 993 997 10.1093/ntr/ntx219.
  11. Underly, R., G.M. Dull, E. Nudi, T. Pionk, K. Prevette, and J. Smith: Using a Novel Connected Device for the Collection of Puffing Topography Data for the Vuse Solo Electronic Nicotine Delivery System in a Real-World Setting: Prospective Ambulatory Clinical Study; JMIR Form. Res. 7 (2023) e49876. DOI: 10.2196/49876
  12. Kolaczyk, K. and H. Jiang: Photometric Monitoring of Electronic Cigarette Puff Topography; Sensors 23 (2023) 8220. DOI: 10.3390/s23198220
  13. Blank, M.D., S. Disharoon, and T. Eissenberg: Comparison of Methods for Measurement of Smoking Behavior: Mouthpiece-Based Computerized Devices Versus Direct Observation; Nicotine Tob. Res. 11 (2009) 896–903. DOI: 10.1093/ntr/ntp083
  14. International Organization for Standardization (ISO): ISO 20768:2018 - Vapour Products — Routine Analytical Vaping Machine — Definitions and Standard Conditions; ISO, Geneva, Switzerland, 2018.
  15. Mikheev, V.B., S.S. Buehler, M.C. Brinkman, C.A. Granville, T.E. Lane, A. Ivanov, K.M. Cross, and P.I. Clark: The Application of Commercially Available Mobile Cigarette Topography Devices for E-Cigarette Vaping Behavior Measurements; Nicotine Tob. Res. 22 (2020) 681–688. DOI: 10.1093/ntr/nty190
  16. Brown, A.P., K.C. Avery, M.J. Morton, J.H. Miller, J.W. Flora, and K.A. Wagner: Effect of Laboratory Conditions on E-Cigarette Aerosol Collection; presented at the CORESTA Meeting, Smoke Science/Product Technology, Jeju Island, South Korea, October 4–8, 2015, Paper STPOST07.
  17. St. Charles, K.: The Relationship between Water Content and Relative Humidity for E-Liquids; presented at the 72nd Tobacco Science Research Conference (TSRC), Memphis, TN, USA, September 16–19, 2018, Paper 88.
  18. Liang, Q., L. Rimmer, J. Chen, S. Shiffman, D. Oliveri, N. Goldenson, and R. Black: Analyzing the Relationships Between Topography, E-liquid Usage, and Pharmacokinetics in JUUL Devices; presented at the 76th Tobacco Science Research Conference (TSRC), Norfolk, VA, USA, September 25–27, 2023, Paper 39.
  19. Robinson, R.J., S. Jayasekera, G. DiFrancesco, and E.C. Hensel: Characterization and Validation of the Second generation wPUM Topography Monitors; Nicotine Tob. Res. 23 (2020) 390–396. DOI: 10.1093/ntr/ntaa153
  20. 20. Talih, S., N. Karaoghlanian, R. Salman, S. Fallah, A. Helal, R. El-Hage, N. Saliba, A. Breland, T. Eissenberg, and A. Sjihadeh: Comparison of Design Characteristics and Toxicant Emissions From Vuse Solo and Alto Electronic Nicotine Delivery Systems; Tob. Control 33 (2023) 676–679. DOI: 10.1136/tc-2022-057711
    TalihS. KaraoghlanianN. SalmanR. FallahS. HelalA. El-HageR. SalibaN. BrelandA. EissenbergT. SjihadehA. Comparison of Design Characteristics and Toxicant Emissions From Vuse Solo and Alto Electronic Nicotine Delivery Systems Tob. Control 33 2023 676 679 10.1136/tc-2022-057711
  21. Hiler, M., N. Karaoghlanian, S. Talih, S. Maloney, A. Breland, A. Shihadeh, and T. Eissenberg: Effects of Electronic Cigarette Heating Coil Resistance and Liquid Nicotine Concentration on User Nicotine Delivery, Heart Rate, Subjective Effects, Puff Topography and Liquid Consumption; Exp. Clin. Psychopharmacol. 5 (2020) 527–539. DOI: 10.1037/pha0000337
  22. Robinson, R.J., E.C. Hensel, P.N. Morabito, and K.A. Roundtree: Electronic Cigarette Topography in the Natural Environment; PLoS One 10 (2015) e0129296. DOI: 10.1371/journal.pone.0129296
  23. Prasad, K., A. Gray, and L. Edward: Actual Use Puffing Topography and Mouth Level Exposure to Aerosol and Nicotine for an Evolving Series of Electronic Nicotine Delivery Systems; Int. J. Sci. Rep. 12 (2022) 366–376. DOI: 10.18203/issn.2454-2156.IntJSciRep20223033
Language: English
Page range: 40 - 50
Submitted on: Oct 1, 2024
Accepted on: Mar 12, 2025
Published on: May 16, 2025
Published by: Institut für Tabakforschung GmbH
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Michael J. Oldham, David K. Cook, Qiwei Liang, Norman Fraley, Buddy Singletary, Samuel Anderson, Abhiraj Vinnakota, I. Gene Gillman, published by Institut für Tabakforschung GmbH
This work is licensed under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License.