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To achieve the mass perturbation matrix, changes of mode shapes and natural frequencies (Eqs. 14 and 15) as well as the mass alteration (ΔM = Md − Mu) are substituted into Eq. (23) as: φ u + Δ φ T M u + Δ M φ u + Δ φ = I (24).
These specific characteristics in β-cell mass alteration need to be considered and differentiated when investigating each pathological condition.
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This equation entirely explains the adverse effect of mass alterations in the buildings.
We further assume that failure and, consequently, mass flow are highly localized and the momenta and energy balance equations can be written in the standard form without adding momenta and energy due to the mass alterations.
To investigate the β-cell mass alterations and the consequent compromise in β-cell function, we therefore must first determine whether only nβ, or both nβ and nc are affected.
Therefore, it is conceivable that, within the endodermal cell mass, alterations concerning adhesive properties are restricted to primordial germ cells.
Such results may suggest that, with the growth and development of a mass, alterations occur in breast tissue and result in changes of its physical properties, such as stiffness [ 15].
As such, additional experimentation will be required to determine whether these outcomes reflect nuances of specific genetic backgrounds, or an inability of delayed Mecp2 reactivation to rescue pre-existing body mass alterations.
Thus the shift observed in 1D and 2D electrophoresis gels between C57BL/6J and SEG/Pas seems not to result from molecular mass alterations, but rather reflects changes in protein conformation that may affect the constant SDS/protein ratio or the shape of the SDS-protein complex.
The role of GIP in modulation of bone turnover has been studied using knockout mice models, and the results showed less bone formation, smaller bone size, lower bone mass alterations in bone microarchitecture and biomechanical properties, in GIP receptor knockout mice [ 9].
This type of soliton is a result of various physical effects that betide in the propagation of strong laser pulse through plasma, including relativistic mass change of electrons, alteration of plasma density due to ponderomotive force and dispersion effects.
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