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Also a general formulation for FLFs fractional derivatives and product operational matrices is driven.
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Homeostasis of extracellular matrix is driven mainly by enzymes secreted from these chondrocytes.
where the Λ matrix is driven through a Markov chain and is defined as Lambda left(n right) = left{ {begin{array}{cc} {left[ {begin{array}{cc} 1 & {je (n)} 1 & { - je (n)} end{array}} right]} & {pi (n) = 0} {left[ {begin{array}{cc} 1 & 0 0 & 1 end{array}} right]} & {pi left(n right) = 1} end{array}} right.
These and similar data derived from human gene/gene product expression, experimental animal and cell-based in vitro studies form the basis of proposed mechanism for matrix loss in the degenerate IVD in which matrix degradation is driven by IL-1 and mediated through MDPs.
Breakdown of the IVD extracellular matrix (ECM) is driven by a collection of proteolytic enzymes of which the matrix metalloproteinases (MMPs) and aggrecanases (members of the ADAMTS (A Disintegrin And Metalloproteinase with Thrombospondin Motifs) family) have been the most extensively studied [ 7- 10].
The design of highly processable metallic glass matrix composites (MGMCs) is driven by optimizing the mechanical properties such as strength and ductility.
The dominance of A. monosperma is thus related to its ability to utilise water from the open matrix, and its distribution is driven by source sink relations between the open matrix and A. monosperma dwarf shrubs, respectively.
Accordingly, viewed from the matrix side, ATP synthesis is driven by counterclockwise rotation and ATP hydrolysis by clockwise rotation of the FO rotor which is transmitted to F1. ATP dissipation through this mechanism features some diseases such as myocardial ischemia.
Specificity is defined by coulomb matrixes, suggesting that it is driven by electrostatic surfaces on the ligand.
Specificity may not be defined by any one specific atom or position and is influenced by coulomb matrixes, suggesting that it is driven by electrostatic forces.
We show that the formation of an amorphous matrix during the film growth is driven by the energy difference between the grain boundary energy and the crystallite/amorphous phase interfacial energy.
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