Search alternatives:
significant co » significant _ (Expand Search), significant i (Expand Search), significant gap (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
co increased » cd increased (Expand Search), co increases (Expand Search), cci increased (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
significant co » significant _ (Expand Search), significant i (Expand Search), significant gap (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
co increased » cd increased (Expand Search), co increases (Expand Search), cci increased (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
-
21
Image_4_Salinity significantly affects methane oxidation and methanotrophic community in Inner Mongolia lake sediments.JPEG
Published 2023“…Moreover, high salinity decreased cooperative association among methanotrophs and number of key methanotrophic species (Methylosinus and Methylococcus, e.g). …”
-
22
Image_3_Salinity significantly affects methane oxidation and methanotrophic community in Inner Mongolia lake sediments.JPEG
Published 2023“…Moreover, high salinity decreased cooperative association among methanotrophs and number of key methanotrophic species (Methylosinus and Methylococcus, e.g). …”
-
23
Image_5_Salinity significantly affects methane oxidation and methanotrophic community in Inner Mongolia lake sediments.JPEG
Published 2023“…Moreover, high salinity decreased cooperative association among methanotrophs and number of key methanotrophic species (Methylosinus and Methylococcus, e.g). …”
-
24
Image_6_Salinity significantly affects methane oxidation and methanotrophic community in Inner Mongolia lake sediments.JPEG
Published 2023“…Moreover, high salinity decreased cooperative association among methanotrophs and number of key methanotrophic species (Methylosinus and Methylococcus, e.g). …”
-
25
-
26
-
27
-
28
-
29
-
30
Table1_Aristolochic acid I exposure decreases oocyte quality.DOCX
Published 2022“…We showed that AAI exposure significantly decreased oocyte quality, including elevated aneuploidy, accompanied by aberrant chiasma patterns and spindle organization, and decreased first polar body extrusion and fertilization capability. …”
-
31
-
32
-
33
IFA, GST pull-down and Co-IP assay of specific binding between rTsSPc and CK8.
Published 2025Subjects: -
34
Different steps of the fabrication process.
Published 2025“…<div><p>In this research, the doping effects of ZrO<sub>2</sub> and MnO<sub>2</sub> on La<sub>1-<i>x</i></sub>Zr<sub><i>x</i></sub>Co<sub>1−y</sub>Mn<sub>y</sub>O<sub>3</sub> cathode were investigated in terms of physical, mechanical and electrical properties. …”
-
35
SURF6 co-localizes with ITS2 part of pre-rRNA in the nucleoli of HeLa cells.
Published 2023Subjects: -
36
-
37
DataSheet2_Aristolochic acid I exposure decreases oocyte quality.xlsx
Published 2022“…We showed that AAI exposure significantly decreased oocyte quality, including elevated aneuploidy, accompanied by aberrant chiasma patterns and spindle organization, and decreased first polar body extrusion and fertilization capability. …”
-
38
DataSheet1_Aristolochic acid I exposure decreases oocyte quality.xlsx
Published 2022“…We showed that AAI exposure significantly decreased oocyte quality, including elevated aneuploidy, accompanied by aberrant chiasma patterns and spindle organization, and decreased first polar body extrusion and fertilization capability. …”
-
39
DataSheet4_Aristolochic acid I exposure decreases oocyte quality.pdf
Published 2022“…We showed that AAI exposure significantly decreased oocyte quality, including elevated aneuploidy, accompanied by aberrant chiasma patterns and spindle organization, and decreased first polar body extrusion and fertilization capability. …”
-
40
DataSheet3_Aristolochic acid I exposure decreases oocyte quality.pdf
Published 2022“…We showed that AAI exposure significantly decreased oocyte quality, including elevated aneuploidy, accompanied by aberrant chiasma patterns and spindle organization, and decreased first polar body extrusion and fertilization capability. …”