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linear decrease » linear increase (Expand Search)
latest decrease » largest decrease (Expand Search), greatest decrease (Expand Search), largest decreases (Expand Search)
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mean decrease » a decrease (Expand Search)
linear decrease » linear increase (Expand Search)
latest decrease » largest decrease (Expand Search), greatest decrease (Expand Search), largest decreases (Expand Search)
larger decrease » marked decrease (Expand Search)
mean decrease » a decrease (Expand Search)
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12021
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12022
The balance of Lyapunov exponent is disturbed in subjects with tinnitus.
Published 2024“…The schematic red lines demonstrate the concept of lyapunov exponent as the exponent of distance increase/decrease of nearby points on the attractor. (B) Topographic plots of mean lyapunov exponent in normal and patient groups. …”
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12023
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12024
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12025
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12026
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12027
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12028
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12029
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12030
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12031
Summary of trial characteristics<sup>b'*'</sup>.
Published 2023“…There was evidence of interaction/influence by food source: fruit and 100% fruit juice decreased and mixed sources (with sugar-sweetened beverages [SSBs]) increased BP in addition trials and the removal of SSBs (linear dose response gradient) and mixed sources (with SSBs) decreased BP in subtraction trials. …”
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12032
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12033
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12034
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12035
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12036
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12037
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12038
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12039
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
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12040