Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control

Zong Ping Luo, Kai Nan An, Russell T. Turner

Research output: Chapter in Book/Report/Conference proceedingChapter

1 Citation (Scopus)

Abstract

A theoretical model has been developed based on fuzzy logic control to predict bony response to mechanical load and estrogen. The results show good agreement with the experimental findings, which suggests that bone may be regulated by simple remodeling rules, similar to those used in the fuzzy logic control.

Original languageEnglish (US)
Title of host publicationAmerican Society of Mechanical Engineers, Bioengineering Division (Publication) BED
Pages345-346
Number of pages2
Volume39
StatePublished - 1998

Fingerprint

Fuzzy logic
Bone
Estrogens

ASJC Scopus subject areas

  • Engineering(all)

Cite this

Luo, Z. P., An, K. N., & Turner, R. T. (1998). Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control. In American Society of Mechanical Engineers, Bioengineering Division (Publication) BED (Vol. 39, pp. 345-346)

Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control. / Luo, Zong Ping; An, Kai Nan; Turner, Russell T.

American Society of Mechanical Engineers, Bioengineering Division (Publication) BED. Vol. 39 1998. p. 345-346.

Research output: Chapter in Book/Report/Conference proceedingChapter

Luo, ZP, An, KN & Turner, RT 1998, Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control. in American Society of Mechanical Engineers, Bioengineering Division (Publication) BED. vol. 39, pp. 345-346.
Luo ZP, An KN, Turner RT. Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control. In American Society of Mechanical Engineers, Bioengineering Division (Publication) BED. Vol. 39. 1998. p. 345-346
Luo, Zong Ping ; An, Kai Nan ; Turner, Russell T. / Prediction of effects of mechanical stress and estrogen on bony structure using fuzzy logic control. American Society of Mechanical Engineers, Bioengineering Division (Publication) BED. Vol. 39 1998. pp. 345-346
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