Shimizu, K.; Kassai, H.; Kamei, Y.; Yamamoto, K.; Nagashima, T.; Maekawa, T.; Akiyama, H.; Honda, H.
Alignment of Skeletal Muscle Cells Facilitates Acetylcholine Receptor Clustering and Neuromuscular Junction Formation with Co-Cultured Human iPSC-Derived Motor Neurons. Cells 2022, 11, 3760.
https://doi.org/10.3390/cells11233760
AMA Style
Shimizu K, Kassai H, Kamei Y, Yamamoto K, Nagashima T, Maekawa T, Akiyama H, Honda H.
Alignment of Skeletal Muscle Cells Facilitates Acetylcholine Receptor Clustering and Neuromuscular Junction Formation with Co-Cultured Human iPSC-Derived Motor Neurons. Cells. 2022; 11(23):3760.
https://doi.org/10.3390/cells11233760
Chicago/Turabian Style
Shimizu, Kazunori, Haruo Kassai, Yuhei Kamei, Kazuki Yamamoto, Takunori Nagashima, Tadayoshi Maekawa, Hirokazu Akiyama, and Hiroyuki Honda.
2022. "Alignment of Skeletal Muscle Cells Facilitates Acetylcholine Receptor Clustering and Neuromuscular Junction Formation with Co-Cultured Human iPSC-Derived Motor Neurons" Cells 11, no. 23: 3760.
https://doi.org/10.3390/cells11233760
APA Style
Shimizu, K., Kassai, H., Kamei, Y., Yamamoto, K., Nagashima, T., Maekawa, T., Akiyama, H., & Honda, H.
(2022). Alignment of Skeletal Muscle Cells Facilitates Acetylcholine Receptor Clustering and Neuromuscular Junction Formation with Co-Cultured Human iPSC-Derived Motor Neurons. Cells, 11(23), 3760.
https://doi.org/10.3390/cells11233760