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Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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145
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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146
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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147
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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148
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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149
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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150
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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151
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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152
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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153
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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154
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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155
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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156
Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder
Published 2024“…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …”
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157
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158
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Supplementary Material for: High-sensitivity Troponin I Measurement in a Large Contemporary Cohort: Implications for Clinical Care
Published 2025“…Laboratory data, blood pressure, and anthropomorphic measures were extracted from the electronic medical record Results: Remeasurement of hsTnI did not change risk category in 92.7% of cases. Male sex, higher HDL-C, higher Hgb A1c, decreasing eGFR, and increasing systolic blood pressure were significant predictors of increased hsTnI. …”
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160
Increasing network size does not guarantee convergence to a balanced state.
Published 2023“…The spiking activity of the spiking LIF network (colored lines) is captured by the SSN model (black lines). As <i>N</i> increases we observe a broadening of the bistability window and a decreasing firing rate, see inset. …”