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Items: 1 to 20 of 213

1.

Ecotoxicogenomics: interlaboratory comparability of microarray data

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platforms:
GPL18188 GPL19554
176 Samples
Download data: TXT
Series
Accession:
GSE64213
ID:
200064213
2.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabF_WB]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64212
ID:
200064212
3.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabF_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64211
ID:
200064211
4.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabE_WB]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
14 Samples
Download data: TXT
Series
Accession:
GSE64210
ID:
200064210
5.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabE_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
18 Samples
Download data: TXT
Series
Accession:
GSE64209
ID:
200064209
6.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabD_WB]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64208
ID:
200064208
7.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabD_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64207
ID:
200064207
8.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabC_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL18188
16 Samples
Download data: TXT
Series
Accession:
GSE64206
ID:
200064206
9.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabB_WB]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64205
ID:
200064205
10.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabB_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64204
ID:
200064204
11.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabA_WB]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64203
ID:
200064203
12.

Ecotoxicogenomics: interlaboratory comparability of microarray data [LabA_Ex]

(Submitter supplied) Additional toxicity testing and regulation are needed as the number of compounds chronically released into aquatic coastal environments increases. Decision makers require comprehensive and efficient screening tools to detect adverse biological effects and to identify their cause. Transcriptomic analysis can complement traditional ecotoxicology data by providing mechanistic insight, identifying sub-lethal organismal responses and identifying contaminant classes underlying observed toxicity. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL19554
16 Samples
Download data: TXT
Series
Accession:
GSE64202
ID:
200064202
13.

Toxicogenomics of Eohaustorius estuarius following pyrethroid and ammonia exposure

(Submitter supplied) A variety of contaminants find their way to the marine sediments from different sources, and these contaminants can pose serious risks to the natural marine flora and fauna. For example, pyrethroids, which are a potent pesticide family, are often used in agriculture fields worldwide, and these find their way into the marine environment through run off. Further, pyrethroids are used in farmed Atlantic salmon cages in Chile, Great Britain and Norway. more...
Organism:
Eohaustorius estuarius
Type:
Expression profiling by array
Platform:
GPL18188
21 Samples
Download data: TXT
Series
Accession:
GSE54214
ID:
200054214
14.

Agilent-042708 Eohaustorius estuarius EE_Microarray_DV (Probe Name version)

(Submitter supplied) AMPHIPODS Protocol: See manufacturer's web site at http://www.agilent.com/.
Organism:
Eohaustorius estuarius
11 Series
1 Related Platform
160 Samples
Download data
Platform
Accession:
GPL19554
ID:
100019554
15.

Agilent-042708 Eohaustorius estuarius EE_Microarray_DV (Feature Number version)

(Submitter supplied) AMPHIPODS Arrays of this design have barcodes that begin with 16042708 or 2542708. Orientation: Features are numbered numbered Left-to-Right, Top-to-Bottom as scanned by an Agilent scanner (barcode on the left, DNA on the back surface, scanned through the glass), matching the FeatureNum output from Agilent's Feature Extraction software. The ID column represents the Agilent Feature Extraction feature number. more...
Organism:
Eohaustorius estuarius
1 Related Platform
Download data
Platform
Accession:
GPL19553
ID:
100019553
16.

Agilent-029660 eohaus_mod_44k_v3 array (Probe name version)

(Submitter supplied) Arrays of this design have barcodes that begin with 16029660 or 2529660. Orientation: Features are numbered numbered Left-to-Right, Top-to-Bottom as scanned by an Agilent scanner (barcode on the left, DNA on the back surface, scanned through the glass), matching the FeatureNum output from Agilent's Feature Extraction software. The ID column represents the Agilent Probe Names. Rows and columns are numbered as scanned by an Axon Scanner (barcode on the bottom, DNA on the front surface). more...
Organism:
Eohaustorius estuarius
3 Series
37 Samples
Download data: TXT
Platform
Accession:
GPL18188
ID:
100018188
17.

Ex_10d_cyfluthrin_labE_rep9

Organism:
Eohaustorius estuarius
Source name:
RNA extract, 10d, LabE, cyfluthrin
Platform:
GPL19554
Series:
GSE64209 GSE64213
Download data: TXT
Sample
Accession:
GSM1566869
ID:
301566869
18.

Ex_10d_cyfluthrin_labE_rep8

Organism:
Eohaustorius estuarius
Source name:
RNA extract, 10d, LabE, cyfluthrin
Platform:
GPL19554
Series:
GSE64209 GSE64213
Download data: TXT
Sample
Accession:
GSM1566868
ID:
301566868
19.

Ex_10d_cyfluthrin_labE_rep7

Organism:
Eohaustorius estuarius
Source name:
RNA extract, 10d, LabE, cyfluthrin
Platform:
GPL19554
Series:
GSE64209 GSE64213
Download data: TXT
Sample
Accession:
GSM1566867
ID:
301566867
20.

Ex_10d_cyfluthrin_labE_rep6

Organism:
Eohaustorius estuarius
Source name:
RNA extract, 10d, LabE, cyfluthrin
Platform:
GPL19554
Series:
GSE64209 GSE64213
Download data: TXT
Sample
Accession:
GSM1566866
ID:
301566866
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