Search alternatives:
significant chip » significant chi (Expand Search), significant gap (Expand Search), significant i (Expand Search)
mean decrease » a decrease (Expand Search)
non decrease » nn decrease (Expand Search), point decrease (Expand Search), note decreased (Expand Search)
chip based » china based (Expand Search)
significant chip » significant chi (Expand Search), significant gap (Expand Search), significant i (Expand Search)
mean decrease » a decrease (Expand Search)
non decrease » nn decrease (Expand Search), point decrease (Expand Search), note decreased (Expand Search)
chip based » china based (Expand Search)
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Decreased clonogenic capacity of U87MG and U251MG glioma cells dependent on SHG-44 concentration.
Published 2025“…Microscopic images of colonies were taken at ×40 magnification. The data represents mean values and standard deviation, n = 3. <b>Legends:</b> ns: non-significant, *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001.…”
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Data_Sheet_1_On-Chip TaOx-Based Non-volatile Resistive Memory for in vitro Neurointerfaces.pdf
Published 2020“…<p>The development of highly integrated electrophysiological devices working in direct contact with living neuron tissue opens new exciting prospects in the fields of neurophysiology and medicine, but imposes tight requirements on the power dissipated by electronics. On-chip preprocessing of neuronal signals can substantially decrease the power dissipated by external data interfaces, and the addition of embedded non-volatile memory would significantly improve the performance of a co-processor in real-time processing of the incoming information stream from the neuron tissue. …”
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SUI-sEVs decreased the migration ability of primary cultured fibroblasts.
Published 2021“…(B) The variation of scratching space between groups is shown in the line chart. SUI-sEVs significant decreased the migration ability of primary cultured fibroblasts at 48h when compared to the cells in control group and treated with the non SUI-sEVs. …”
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Traits at cellular, leaf, and whole-plant scales which were significantly different [increased (↑) or decreased (↓)] or non-significant between tolerant and sensitive cultivars in the N-deficient treatment.
Published 2023“…<p>Traits at cellular, leaf, and whole-plant scales which were significantly different [increased (↑) or decreased (↓)] or non-significant between tolerant and sensitive cultivars in the N-deficient treatment.…”
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