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Multigenerational plasticity of Daphnia magna under thermal stress across ten generations
Hyungjoon Im, Joorim Na,
Jinho Jung
Division of Environmental Science and Ecological Engineering
Research output
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Contribution to journal
›
Article
›
peer-review
5
Citations (Scopus)
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Dive into the research topics of 'Multigenerational plasticity of Daphnia magna under thermal stress across ten generations'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Control Groups
11%
Daphnia
100%
Epigenomics
18%
Global Warming
34%
Growth
32%
Heat-Shock Response
69%
Hot Temperature
16%
Life History Traits
33%
Oxidative Stress
31%
Reproduction
20%
Temperature
45%
Zooplankton
37%
Engineering & Materials Science
Global warming
23%
Hot Temperature
10%
Oxidative stress
73%
Plasticity
59%
Temperature
25%
Thermal stress
62%
Earth & Environmental Sciences
effect
9%
global warming
17%
growth response
26%
life history trait
25%
oxidative stress
49%
plasticity
60%
rate
6%
temperature
23%
zooplankton
19%
Chemical Compounds
Magnon
88%
Oxidative Stress
41%
Plastic Property
73%
Social Sciences
response behavior
12%