Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism

S Li, ZH Sheng - Current opinion in neurobiology, 2023 - Elsevier
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …

[HTML][HTML] Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism

S Li, ZH Sheng - Current opinion in neurobiology, 2023 - ncbi.nlm.nih.gov
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …

Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism

S Li, ZH Sheng - Current opinion in neurobiology, 2023 - pubmed.ncbi.nlm.nih.gov
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …

Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism.

S Li, ZH Sheng - Current Opinion in Neurobiology, 2023 - psycnet.apa.org
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …

Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism.

S Li, ZH Sheng - Current Opinion in Neurobiology, 2023 - europepmc.org
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …

Oligodendrocyte-derived transcellular signaling regulates axonal energy metabolism.

S Li, ZH Sheng - Current Opinion in Neurobiology, 2023 - europepmc.org
The unique morphology and functionality of central nervous system (CNS) neurons
necessitate specialized mechanisms to maintain energy metabolism throughout long axons …