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Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing

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Authors
Dželetović, Bojan
Stratimirović, Đorđe
Stojić, Dragica
Đukić, Ljiljana
Article (Published version)
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Abstract
Aim To investigate the effect of ageing on control mechanisms of pulpal microcirculation using wavelet analysis and to calculate linear and nonlinear parameters of blood flow oscillations, in a healthy general population. Methodology Pulpal blood flow (PBF) oscillations were recorded on right maxillary central incisors using laser Doppler Flowmeter (PeriFlux PF 5001, Perimed, Jarfalla, Sweden) on a group of 10 young participants (20-25 years) and a group of 10 older adults (60-70 years). In total, 20 recordings were obtained for at least 20 min (one recording on one tooth per subject). Using wavelet spectral analysis, the amplitude and power were calculated as a linear and Hurst exponent as a nonlinear parameter of PBF oscillations. Differences between the two groups were assessed with the independent Student t-test. Results Mean PBF levels were significantly lower (P = 0.024) in older adults than in young participants. Relative amplitudes and powers corresponding to the myogenic (P = ...0.046, P lt 0.001, respectively) and neurogenic activity (P = 0.04, P = 0.01, respectively) were significantly higher, whereas values corresponding to the endothelial function (P = 0.04, P = 0.01, respectively) were significantly lower in older adults than in young participants. Hurst exponents of the total spectrum, myogenic and endothelial component (P lt 0.001, P = 0.02, P lt 0.001, respectively) of PBF oscillations were significantly lower in older adults in comparison to young participants. Conclusions At the level of pulpal microcirculation, ageing was associated with altered blood flow levels, the contribution of different control mechanisms to blood flow oscillations as well as the interaction of vascular smooth muscle and endothelium. Described changes of pulpal haemodynamics contribute to a better understanding of physiological behaviour and decreased adaptability of aged dental pulp to pathological stimuli.

Keywords:
ageing / dental blood flow / wavelet analysis
Source:
International Endodontic Journal, 2020
Publisher:
  • Wiley, Hoboken
Funding / projects:
  • Pain Control and Molecular Mechanisms as Factors for Tissue Regeneration in Dentistry in Healthy and Diabetic Patients (RS-175021)

DOI: 10.1111/iej.13306

ISSN: 0143-2885

PubMed: 32281658

WoS: 000531844100001

Scopus: 2-s2.0-85084481000
[ Google Scholar ]
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1
URI
https://smile.stomf.bg.ac.rs/handle/123456789/1049
Collections
  • Radovi istraživača
Institution/Community
Stomatološki fakultet
TY  - JOUR
AU  - Dželetović, Bojan
AU  - Stratimirović, Đorđe
AU  - Stojić, Dragica
AU  - Đukić, Ljiljana
PY  - 2020
UR  - https://smile.stomf.bg.ac.rs/handle/123456789/1049
AB  - Aim To investigate the effect of ageing on control mechanisms of pulpal microcirculation using wavelet analysis and to calculate linear and nonlinear parameters of blood flow oscillations, in a healthy general population. Methodology Pulpal blood flow (PBF) oscillations were recorded on right maxillary central incisors using laser Doppler Flowmeter (PeriFlux PF 5001, Perimed, Jarfalla, Sweden) on a group of 10 young participants (20-25 years) and a group of 10 older adults (60-70 years). In total, 20 recordings were obtained for at least 20 min (one recording on one tooth per subject). Using wavelet spectral analysis, the amplitude and power were calculated as a linear and Hurst exponent as a nonlinear parameter of PBF oscillations. Differences between the two groups were assessed with the independent Student t-test. Results Mean PBF levels were significantly lower (P = 0.024) in older adults than in young participants. Relative amplitudes and powers corresponding to the myogenic (P = 0.046, P  lt  0.001, respectively) and neurogenic activity (P = 0.04, P = 0.01, respectively) were significantly higher, whereas values corresponding to the endothelial function (P = 0.04, P = 0.01, respectively) were significantly lower in older adults than in young participants. Hurst exponents of the total spectrum, myogenic and endothelial component (P  lt  0.001, P = 0.02, P  lt  0.001, respectively) of PBF oscillations were significantly lower in older adults in comparison to young participants. Conclusions At the level of pulpal microcirculation, ageing was associated with altered blood flow levels, the contribution of different control mechanisms to blood flow oscillations as well as the interaction of vascular smooth muscle and endothelium. Described changes of pulpal haemodynamics contribute to a better understanding of physiological behaviour and decreased adaptability of aged dental pulp to pathological stimuli.
PB  - Wiley, Hoboken
T2  - International Endodontic Journal
T1  - Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing
DO  - 10.1111/iej.13306
ER  - 
@article{
author = "Dželetović, Bojan and Stratimirović, Đorđe and Stojić, Dragica and Đukić, Ljiljana",
year = "2020",
abstract = "Aim To investigate the effect of ageing on control mechanisms of pulpal microcirculation using wavelet analysis and to calculate linear and nonlinear parameters of blood flow oscillations, in a healthy general population. Methodology Pulpal blood flow (PBF) oscillations were recorded on right maxillary central incisors using laser Doppler Flowmeter (PeriFlux PF 5001, Perimed, Jarfalla, Sweden) on a group of 10 young participants (20-25 years) and a group of 10 older adults (60-70 years). In total, 20 recordings were obtained for at least 20 min (one recording on one tooth per subject). Using wavelet spectral analysis, the amplitude and power were calculated as a linear and Hurst exponent as a nonlinear parameter of PBF oscillations. Differences between the two groups were assessed with the independent Student t-test. Results Mean PBF levels were significantly lower (P = 0.024) in older adults than in young participants. Relative amplitudes and powers corresponding to the myogenic (P = 0.046, P  lt  0.001, respectively) and neurogenic activity (P = 0.04, P = 0.01, respectively) were significantly higher, whereas values corresponding to the endothelial function (P = 0.04, P = 0.01, respectively) were significantly lower in older adults than in young participants. Hurst exponents of the total spectrum, myogenic and endothelial component (P  lt  0.001, P = 0.02, P  lt  0.001, respectively) of PBF oscillations were significantly lower in older adults in comparison to young participants. Conclusions At the level of pulpal microcirculation, ageing was associated with altered blood flow levels, the contribution of different control mechanisms to blood flow oscillations as well as the interaction of vascular smooth muscle and endothelium. Described changes of pulpal haemodynamics contribute to a better understanding of physiological behaviour and decreased adaptability of aged dental pulp to pathological stimuli.",
publisher = "Wiley, Hoboken",
journal = "International Endodontic Journal",
title = "Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing",
doi = "10.1111/iej.13306"
}
Dželetović, B., Stratimirović, Đ., Stojić, D.,& Đukić, L.. (2020). Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing. in International Endodontic Journal
Wiley, Hoboken..
https://doi.org/10.1111/iej.13306
Dželetović B, Stratimirović Đ, Stojić D, Đukić L. Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing. in International Endodontic Journal. 2020;.
doi:10.1111/iej.13306 .
Dželetović, Bojan, Stratimirović, Đorđe, Stojić, Dragica, Đukić, Ljiljana, "Linear and nonlinear analysis of dental pulp blood flow oscillations in ageing" in International Endodontic Journal (2020),
https://doi.org/10.1111/iej.13306 . .

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