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Bone as a Renewable Electric Energy Source for Healthy and Active Longevity. / Павлычев, Андрей Алексеевич.
Proceedings of the 14th International Conference on Advanced Materials and Engineering Materials. ICAMEM 2025.. ed. / L. Zhang. Singapoor : Springer Nature, 2026. p. 445-453 (Springer Proceedings in Physics; Vol. 354).Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › Research › peer-review
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TY - GEN
T1 - Bone as a Renewable Electric Energy Source for Healthy and Active Longevity.
AU - Павлычев, Андрей Алексеевич
PY - 2026/7/2
Y1 - 2026/7/2
N2 - Focus is on changes in the atomic-molecular architecture of cortical bone in newborn, adult and mature rats. Their analysis indicates that both its growth and aging are controlled not only by cellular effects, but also by the amount of electrostatic energy built-in the mineral matrix at the initial stage of biomineralization and by the subsequent negative charge transferring from the mineral and organic subsystems into the interstitial environment. An assessment of the embedded electric fields and electrical capacitance of nanocrystals in bone is proposed depending on its age. It is shown that bone is involved not only in mass transfer but also in intense charge transfer closely related to age-induced changes in the bone's atomic and molecular architecture. Taking them into account an electrophysical strategy for counteracting aging phenomena is proposed. The built-in electrostatic energy is regarded as a renewable source for healthy and active longevity. This strategy is based on the address and non-destructive accumulation of negatively charged particles in bone to slow down and restore its architecture and structure-functional properties.
AB - Focus is on changes in the atomic-molecular architecture of cortical bone in newborn, adult and mature rats. Their analysis indicates that both its growth and aging are controlled not only by cellular effects, but also by the amount of electrostatic energy built-in the mineral matrix at the initial stage of biomineralization and by the subsequent negative charge transferring from the mineral and organic subsystems into the interstitial environment. An assessment of the embedded electric fields and electrical capacitance of nanocrystals in bone is proposed depending on its age. It is shown that bone is involved not only in mass transfer but also in intense charge transfer closely related to age-induced changes in the bone's atomic and molecular architecture. Taking them into account an electrophysical strategy for counteracting aging phenomena is proposed. The built-in electrostatic energy is regarded as a renewable source for healthy and active longevity. This strategy is based on the address and non-destructive accumulation of negatively charged particles in bone to slow down and restore its architecture and structure-functional properties.
KW - Advanced energy materials
KW - Aging phenomena
KW - Anti-age strategy
KW - Bone-battery concept
KW - Built-in energy
KW - Charge nanostructure
KW - Electrostatic fields
KW - Native bone
UR - https://www.mendeley.com/catalogue/26c44b6d-7582-3f9c-90df-7b0cd18b941d/
U2 - 10.1007/978-981-95-9035-3_43
DO - 10.1007/978-981-95-9035-3_43
M3 - Conference contribution
SN - 978-981-95-9034-6
T3 - Springer Proceedings in Physics
SP - 445
EP - 453
BT - Proceedings of the 14th International Conference on Advanced Materials and Engineering Materials. ICAMEM 2025.
A2 - Zhang, L.
PB - Springer Nature
CY - Singapoor
T2 - 14th International Conference on Advanced Materials and Engineering Materials
Y2 - 17 December 2025 through 19 December 2025
ER -
ID: 157311592