Search alternatives:
significantly impacter » significantly impacts (Expand Search), significantly impacting (Expand Search), significantly impaired (Expand Search)
significantly impact » significant impact (Expand Search), significantly improve (Expand Search), significantly improved (Expand Search)
impacter decrease » greater decrease (Expand Search)
significantly impacter » significantly impacts (Expand Search), significantly impacting (Expand Search), significantly impaired (Expand Search)
significantly impact » significant impact (Expand Search), significantly improve (Expand Search), significantly improved (Expand Search)
impacter decrease » greater decrease (Expand Search)
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Percent viability and cytotoxicity of NHBE cells are significantly altered by PAA exposure.
Published 2025“…Percent viability significantly decreased with PAA concentration and between recovery times compared to controls. …”
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283
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284
Spontaneous physical activity and respiratory quotient (RQ) in WT and NMIIC KO mice.
Published 2025Subjects: -
285
Fiber types and muscle force in the soleus of 18-20-week-old WT and NMIIC KO mice.
Published 2025Subjects: -
286
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287
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288
Evaluation of mitochondrial protein expression and morphology in NMIIC KO mice.
Published 2025Subjects: -
289
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290
Proliferation and differentiation of myoblasts derived from satellite cells in WT and NMIIC KO mice.
Published 2025Subjects: -
291
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292
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293
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294
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295
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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296
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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297
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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298
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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299
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
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300
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
Published 2024“…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”