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pro vyhledávání: '"L. Moss-Salentijn"'
Akademický článek
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Publikováno v:
Medical hypotheses. 64(3)
It is hypothesized that human coronal secondary dentin (SD) is a final classical mechanical (CM) response to a chain of prior quantum mechanical (QM) transductions of the information of initial CM occlusal loadings of enamel. Such CM energy is transd
Kniha
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Publikováno v:
Journal of craniofacial genetics and developmental biology. 12(1)
In order to avoid the arbitrary division of biological structures, rational polynomial interpolants are utilized to study growth. The major advantage of this method is the elimination of artificial internal element boundaries through anatomical struc
Publikováno v:
Journal of biomechanical engineering. 113(2)
Some potential mechanisms by which bone cells sense mechanical loads are described and hypotheses concerning the functioning of these mechanisms are explored. It is well known that bone tissue adapts its structure to its mechanical load environment.
Publikováno v:
Journal of anatomy. 175
The growth behaviour of chondrocytic clones in the cell columns of the proximal tibial growth plates of young rabbits was modelled in computer simulations. Simulations were performed, modelling either clones in large groups of columns or clones in on
Publikováno v:
Proceedings of the Finnish Dental Society. Suomen Hammaslaakariseuran toimituksia. 77(1-3)
Autor:
M L, Moss, H M, Pucciarelli, L, Moss-Salentijn, R, Skalak, A, Bose, C, Goodall, K, Sen, B, Morgan, M, Winick
Publikováno v:
Gegenbaurs morphologisches Jahrbuch. 133(6)
Conventional Roentgenographic Cephalometric Methods (RCM) have certain conceptual and geometric constraints that ensure that their descriptions of cephalic growth and comparisons of cephalic form are reference-frame-dependent; and it is impossible to
Autor:
L, Moss-Salentijn
Publikováno v:
Proceedings of the Finnish Dental Society. Suomen Hammaslaakariseuran toimituksia. 77(1-3)
Publikováno v:
Gegenbaurs morphologisches Jahrbuch. 128(1)
The data above, and the literature reviewed, demonstrate that in 4 significant morphological characteristics the neuro-skeletal topology of the human basicranial regions is unique, and does not resemble that of any extant non-human primate at any fet