Search alternatives:
significant source » significant burden (Expand Search), significant cause (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
source increase » resources increase (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
significant source » significant burden (Expand Search), significant cause (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
source increase » resources increase (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
-
141
-
142
-
143
-
144
-
145
-
146
-
147
-
148
-
149
Data_Sheet_1_High-Resolution Image Analysis Reveals a Decrease in Lens Thickness and Cone Density in a Cohort of Young Myopic Patients.docx
Published 2021“…The thickness of the ORL and choroid decreased significantly (all P < 0.001), whereas the thickness of the GCC and INL decreased only in the outer ring (both P < 0.01). …”
-
150
-
151
-
152
-
153
-
154
-
155
-
156
Factors associated with taking a COVID-19 vaccine (female only n = 124,060,468).
Published 2024Subjects: -
157
Factors associated with taking a COVID-19 vaccine (all adults n = 241,645,704).
Published 2024Subjects: -
158
Factors associated with taking a COVID-19 vaccine (male only n = 117,585,236).
Published 2024Subjects: -
159
Dynorphin Neuropeptides Decrease Apparent Proton Affinity of ASIC1a by Occluding the Acidic Pocket
Published 2021“…Prolonged acidosis, as it occurs during ischemic stroke, induces neuronal death via acid-sensing ion channel 1a (ASIC1a). Concomitantly, it desensitizes ASIC1a, highlighting the pathophysiological significance of modulators of ASIC1a acid sensitivity. …”
-
160
Dynorphin Neuropeptides Decrease Apparent Proton Affinity of ASIC1a by Occluding the Acidic Pocket
Published 2021“…Prolonged acidosis, as it occurs during ischemic stroke, induces neuronal death via acid-sensing ion channel 1a (ASIC1a). Concomitantly, it desensitizes ASIC1a, highlighting the pathophysiological significance of modulators of ASIC1a acid sensitivity. …”