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Brain imaging analysis from the jet lag study identifies regions showing altered activity or connectivity following transmeridian travel. The neuroimaging approach captures the neural correlates of wake-sleep cycle disruption.
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![Figure 2: Brain imaging analysis from the jet lag study identifies regions showing altered activity or connectivity following transmeridian travel. The neuroimaging approach captures the neural correlates of wake-sleep cycle disruption.]() > Source: Feifei Zhang et al. "The effect of jet lag on the human brain: A neuroimaging study.." *Human brain mapping*, 2020. PMID: [32125068](https://pubmed.ncbi.nlm.nih.gov/32125068/)
<figure> <img src="" alt="Brain imaging analysis from the jet lag study identifies regions showing altered activity or connectivity following transmeridian travel. The neuroimaging approach captures the neural correlates of wake-sleep cycle disruption." /> <figcaption>Figure 2. Brain imaging analysis from the jet lag study identifies regions showing altered activity or connectivity following transmeridian travel. The neuroimaging approach captures the neural correlates of wake-sleep cycle disruption.<br> Source: Feifei Zhang et al. "The effect of jet lag on the human brain: A neuroimaging study.." <em>Human brain mapping</em>, 2020. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/32125068/">32125068</a></figcaption> </figure>