(A–D) Three-dimensional (3D) volumetric plots showing how the change in cell mass CV throughout the cell cycle responds to the means of γ′ and , represented by μα′ and , when applying variability (CV) to only 1 parameter of α′ (A), γ′ (B), (C), or equal variability to all 3 parameters (D). The slice planes are orthogonal to the CV axis at CV = 0.2. (E, F) Contour plots illustrating the change in cell mass CV during the G1 (E) and nonG1 phases (F) with the means of γ′ and when assuming a 30% CV in α′. (G, H) Contour plots illustrating the change in cell mass CV during the G1 (G) and nonG1 phases (H) with means of γ′ and when assuming a 40% CV in α′. Solid circles in (E–H) indicate the corresponding positions in the contour plots when adop...
<p>(A) Example time-series of cell growth rate for a cell with fast (green), slow (blue) and very sl...
<p><b>A</b>–<b>B</b> Maximum Likelihood estimator (<i>ℓ</i>) based on the percentage of clones lost ...
<p>Several groups have documented persistent MT growth (low catastrophe) in the cell interior. We si...
(A, C, F) Contour plots illustrating the rate of change in cell mass CV at the beginning of the cell...
(A–E) Correlations between cell mass and growth rate in the G1 (blue) and nonG1 (red) phases for RPE...
(A, B) The variability of the specific growth rate, defined as the growth rate divided by cell mass,...
For correlations fitted better by the linear model, , the normalized parameters α′ and β′ are listed...
The stochastic model is described in Section 4, Scenario IX in S1 Text. All parameter values used in...
(A–C) An abstract model of cell mass homeostasis at different G1 regulation strengths, represented...
The impact of minimal cell cycle length on cell mass homeostasis, indicated by the birth mass CV (A)...
(A) The correlation between cell mass and growth rate in HeLa cells when pooling all cells together....
<p>(<b>A</b>) Bifurcation diagram, showing the stable (solid black line) fixed points (FP) of the Na...
<p>The dotted curves show simulations where cell cycle progression requires the product of local glu...
<p><b>A</b>: Results of a typical run at the exponential growth phase and at equilibrium (type A cel...
(A) Plot of Hill-type growth rate function as function of the volumetric strain ϵV = ϵV(p), for n = ...
<p>(A) Example time-series of cell growth rate for a cell with fast (green), slow (blue) and very sl...
<p><b>A</b>–<b>B</b> Maximum Likelihood estimator (<i>ℓ</i>) based on the percentage of clones lost ...
<p>Several groups have documented persistent MT growth (low catastrophe) in the cell interior. We si...
(A, C, F) Contour plots illustrating the rate of change in cell mass CV at the beginning of the cell...
(A–E) Correlations between cell mass and growth rate in the G1 (blue) and nonG1 (red) phases for RPE...
(A, B) The variability of the specific growth rate, defined as the growth rate divided by cell mass,...
For correlations fitted better by the linear model, , the normalized parameters α′ and β′ are listed...
The stochastic model is described in Section 4, Scenario IX in S1 Text. All parameter values used in...
(A–C) An abstract model of cell mass homeostasis at different G1 regulation strengths, represented...
The impact of minimal cell cycle length on cell mass homeostasis, indicated by the birth mass CV (A)...
(A) The correlation between cell mass and growth rate in HeLa cells when pooling all cells together....
<p>(<b>A</b>) Bifurcation diagram, showing the stable (solid black line) fixed points (FP) of the Na...
<p>The dotted curves show simulations where cell cycle progression requires the product of local glu...
<p><b>A</b>: Results of a typical run at the exponential growth phase and at equilibrium (type A cel...
(A) Plot of Hill-type growth rate function as function of the volumetric strain ϵV = ϵV(p), for n = ...
<p>(A) Example time-series of cell growth rate for a cell with fast (green), slow (blue) and very sl...
<p><b>A</b>–<b>B</b> Maximum Likelihood estimator (<i>ℓ</i>) based on the percentage of clones lost ...
<p>Several groups have documented persistent MT growth (low catastrophe) in the cell interior. We si...