Search alternatives:
latest decrease » largest decrease (Expand Search), greatest decrease (Expand Search), largest decreases (Expand Search)
large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
laser decrease » larger decrease (Expand Search), linear decrease (Expand Search), water decreases (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
a latest » a latent (Expand Search), _ latest (Expand Search), _ latent (Expand Search)
a large » _ large (Expand Search)
latest decrease » largest decrease (Expand Search), greatest decrease (Expand Search), largest decreases (Expand Search)
large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
laser decrease » larger decrease (Expand Search), linear decrease (Expand Search), water decreases (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
a latest » a latent (Expand Search), _ latest (Expand Search), _ latent (Expand Search)
a large » _ large (Expand Search)
-
1
Laser-Enhanced Bubble Detachment Velocity and Heat Dissipation on Abrasive Surfaces
Published 2025“…It was discovered that the bubble detachment velocity initially increases and subsequently decreases with increasing laser power density, while a reduction in surface roughness can enhance the detachment velocity. …”
-
2
Laser-Enhanced Bubble Detachment Velocity and Heat Dissipation on Abrasive Surfaces
Published 2025“…It was discovered that the bubble detachment velocity initially increases and subsequently decreases with increasing laser power density, while a reduction in surface roughness can enhance the detachment velocity. …”
-
3
Laser-Enhanced Bubble Detachment Velocity and Heat Dissipation on Abrasive Surfaces
Published 2025“…It was discovered that the bubble detachment velocity initially increases and subsequently decreases with increasing laser power density, while a reduction in surface roughness can enhance the detachment velocity. …”
-
4
Laser-Enhanced Bubble Detachment Velocity and Heat Dissipation on Abrasive Surfaces
Published 2025“…It was discovered that the bubble detachment velocity initially increases and subsequently decreases with increasing laser power density, while a reduction in surface roughness can enhance the detachment velocity. …”
-
5
Laser-Enhanced Bubble Detachment Velocity and Heat Dissipation on Abrasive Surfaces
Published 2025“…It was discovered that the bubble detachment velocity initially increases and subsequently decreases with increasing laser power density, while a reduction in surface roughness can enhance the detachment velocity. …”
-
6
-
7
-
8
The effect of HA digestion and HA replenishment alone or with CS on barrier function measured by TEER.
Published 2025“…<p>(A) A steady increase in TEER is seen in differentiated porcine urothelial cells, corresponding with a tight epithelium and reaching the upper reliable limit of the equipment (3300 Ω cm<sup>2</sup>) around day 35. …”
-
9
-
10
-
11
BA attenuated the decrease in the integrity and increase in the permeability of the epithelial barrier injury induced by LPS in Caco2 cell monolayers.
Published 2024“…<p>(<b>A)</b> Changes in TEER with increasing culture time on days 1–22. …”
-
12
Image 1_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
13
Table 1_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.docx
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
14
Image 5_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
15
Image 4_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
16
Image 2_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
17
Image 3_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf
Published 2025“…</p>Results<p>Our research demonstrates that GDC decreases Caco-2/HT29-MTX Trans-Epithelial Electrical Resistance (TEER) and increases paracellular permeability, without inflammation or cytotoxicity. …”
-
18
-
19
Y-27632 collaborated with BA to attenuate the increase in the integrity and decrease in the permeability of epithelial barrier injury induced by LPS in Caco2 monolayers.
Published 2024“…<p>(<b>A)</b> Y-27632 collaborated with BA to attenuate the effect of LPS on TEER in Caco2 cells on days 1–22. …”
-
20