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Etymotic Research Inc insert er-1 earphones
Insert Er 1 Earphones, supplied by Etymotic Research Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
insert er-1 earphones - by Bioz Stars, 2026-10
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Article Title: Auditory discomfort and visual sensitivity.
Article Snippet: All stimuli were created and presented in MATLAB and presented over Etymotic ER2 insert earphones.

Article Title: Effect of digital noise reduction processing on subcortical speech encoding and relationship to behavioral outcomes.
Article Snippet: The speech syllable was presented at 90 dB SPL monoaurally to the better ear, chosen based on pure-tone air conduction threshold averaged across 0.5, 1, 2, and 4 kHz, through insert ER-2 earphones (Etymotic Research, Elk Grove, IL).

Article Title: Intracochlear Drug Delivery Using a Catheter and Dexamethasone-Eluting Electrode Preserves Residual Hearing Post-Cochlear Implantation.
Article Snippet: Objectives.. This study aims to assess the feasibility and safety of a cochlear catheter (cannula) for inner ear drug delivery during cochlear implantation.. We evaluated the otoprotective effect of L-N-acetylcysteine (L-NAC) administered via a cannula in combination with a dexamethasone-eluting cochlear implant (CI).

Article Title: Linear modeling of brain activity during selective attention to continuous speech: the critical role of the N1 effect in event-related potentials to acoustic edges
Article Snippet: Speech stimuli were presented via insert earphones (ER-2, Etymotic Research, Inc., USA) at an intensity level of 65dB SPL and normalized to have the same root-mean-square amplitude in all dual-speaker scenarios.

Article Title: Neuromodulation for Depression in Autism Spectrum Disorder
Article Snippet: For assessment of ASSRs, subjects will sit in an acoustically shielded booth in front of a computer monitor with eyes open, while passively listening to click trains presented through Etymotic insert ER-1 earphones (Etymotic Research, Elk Grove Village, IL).

Article Title: Robust inference of causality in high-dimensional dynamical processes from the Information
Article Snippet: The comparison248 stimulus could be displayed for 0.3, 0.4, 0.5, 0.6, 0.7, 0.8 or 0.9 seconds in each trial and it was followed (after an interval249 uniformly distributed between 0.5 and 1 second) by an auditory stimulus of 0.6 seconds (burst of white noise delivered through250 Etymotic Research ER1 Insert Earphones).

Article Title: Vibrotactile speech cues are associated with enhanced auditory processing in middle and superior temporal gyri.
Article Snippet: Auditory stimuli were presented diotically via Etymotic ER-2 insert earphones (Etymotic Research, Illinois, USA).

Article Title: Neural responses underlying ITD discrimination as a function of sensory reliability in the barn owl
Article Snippet: Sounds were presented through earphones (Etymotic ER-2) placed in the ear canal, which were separately attenuated (TDT PA-5).



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Etymotic Research Inc insert er-1 earphones
Insert Er 1 Earphones, supplied by Etymotic Research Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) <t>Transwell</t> assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).
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Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) Transwell assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).

Journal: Bioactive Materials

Article Title: Reconstructing the ischemic osteogenic microenvironment through hierarchical scaffolds orchestrating Mg 2+ signaling and neuropilin-1–mediated angiogenesis

doi: 10.1016/j.bioactmat.2026.02.031

Figure Lengend Snippet: Evaluation of angiogenic potential induced by Mg 2+ and NRP-1. ( A ) Scratch assay in three different microenvironments. ( B ) Transwell assay in three different microenvironments. ( C ) Quantitative analysis of wound healing area. ( D ) Quantitative analysis of number of migration cells. ( E ) Immunofluorescence staining of VEGFA and FGF2, with DAPI for nuclear staining and F-actin for cytoskeleton labeling. ( F ) Tube formation evaluation in four different microenvironments. ( G ) Quantitative analysis of number of junction. ( H ) Quantitative analysis of Flu intensity. ( I ) Western-blot analysis of VEGFA, FGF2, and Nr4a1. ( J-L ) Quantitative analysis of relative protein expression of VEGFA, FGF2, and Nr4a1. Data are presented as mean values ± s.d. (n = 3). ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001 (one-way ANOVA).

Article Snippet: For the Transwell assay, BMSCs were seeded in the upper chambers of Transwell inserts (8.0 μm pore size; Servicebio, China), while different culture conditions were applied in the lower chambers according to the experimental groups.

Techniques: Wound Healing Assay, Transwell Assay, Migration, Immunofluorescence, Staining, Labeling, Western Blot, Expressing