[HTML][HTML] Epidermal growth factor signaling promotes sleep through a combined series and parallel neural circuit

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current biology, 2020 - cell.com
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …

[HTML][HTML] Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current Biology, 2020 - Elsevier
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …

[引用][C] Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current Biology, 2020 - cir.nii.ac.jp
Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel
Neural Circuit | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ …

Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit.

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current biology …, 2020 - sonar.ch
English Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-
active neurons are under the control of homeostatic mechanisms that determine sleep need …

Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter… - Current …, 2020 - pubmed.ncbi.nlm.nih.gov
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …

Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit.

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current biology …, 2020 - folia.unifr.ch
English Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-
active neurons are under the control of homeostatic mechanisms that determine sleep need …

Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current Biology, 2020 - zora.uzh.ch
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …

[引用][C] Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter… - Current …, 2020 - research-collection.ethz.ch
Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel
Neural Circuit - Research Collection Header Upper Right Menu Log in de jump to …

Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit.

J Konietzka, M Fritz, S Spiri, R McWhirter… - Current Biology …, 2019 - europepmc.org
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …

[HTML][HTML] Epidermal Growth Factor Signaling Promotes Sleep through a Combined Series and Parallel Neural Circuit

J Konietzka, M Fritz, S Spiri, R McWhirter, A Leha… - Current Biology, 2020 - cell.com
Sleep requires sleep-active neurons that depolarize to inhibit wake circuits. Sleep-active
neurons are under the control of homeostatic mechanisms that determine sleep need …