← Back to Examples  |  AiCitationChecker Home

Citation Verification Example: Cortical Brain Organoid Maturation

Date: 2026-08-28

Format: APA | Mode: Full check (database + LLM)

Results: 7 validated, 0 suggestions, 0 errors out of 7 total

# Code Similarity Reference
1 OK 100%
ORIGINAL:
Lancaster, M. A., Renner, M., Martin, C., Wenzel, D., Bicknell, L. S., Hurles, M. E., Homfray, T., Penninger, J. M., Jackson, A. P., & Knoblich, J. A. (2013). Cerebral organoids model human brain development and microcephaly. Nature, 501(7467), 373-379. https://doi.org/10.1038/nature12517
FORMATTED (APA):
Lancaster, M. A., Renner, M., Martin, C., Wenzel, D., Bicknell, L. S., Hurles, M. E., Homfray, T., Penninger, J. M., Jackson, A. P., & Knoblich, J. A. (2013). Cerebral organoids model human brain development and microcephaly. Nature, 501(7467), 373-379. https://doi.org/10.1038/nature12517
2 OK 100%
ORIGINAL:
Park, D. S., Kozaki, T., Tiwari, S. K., Moreira, M., Khalilnezhad, A., Torta, F., Olivié, N., Thiam, C. H., Liani, O., Silvin, A., Phoo, W. W., Gao, L., Triebl, A., Tham, W. K., Gonçalves, L., Kong, W. T., Raman, S., Zhang, X. M., Dunsmore, G., ... Ginhoux, F. (2023). iPS-cell-derived microglia promote brain organoid maturation via cholesterol transfer. Nature, 623(7986), 397-405. https://doi.org/10.1038/s41586-023-06713-1
FORMATTED (APA):
Park, D. S., Kozaki, T., Tiwari, S. K., Moreira, M., Khalilnezhad, A., Torta, F., Olivié, N., Thiam, C. H., Liani, O., Silvin, A., Phoo, W. W., Gao, L., Triebl, A., Tham, W. K., Gonçalves, L., Kong, W. T., Raman, S., Zhang, X. M., Dunsmore, G., ... Ginhoux, F. (2023). iPS-cell-derived microglia promote brain organoid maturation via cholesterol transfer. Nature, 623(7986), 397-405. https://doi.org/10.1038/s41586-023-06713-1
3 OK 100%
ORIGINAL:
Cho, A., Jin, Y., An, Y., Kim, J., Choi, Y. S., Lee, J. S., Kim, J., Choi, W., Koo, D., Yu, W., Chang, G., Kim, D., Jo, S., Kim, J., Kim, S., Kim, Y., Kim, J. Y., Choi, N., Cheong, E., ... Cho, S. (2021). Microfluidic device with brain extracellular matrix promotes structural and functional maturation of human brain organoids. Nature Communications, 12(1), 4730. https://doi.org/10.1038/s41467-021-24775-5
FORMATTED (APA):
Cho, A., Jin, Y., An, Y., Kim, J., Choi, Y. S., Lee, J. S., Kim, J., Choi, W., Koo, D., Yu, W., Chang, G., Kim, D., Jo, S., Kim, J., Kim, S., Kim, Y., Kim, J. Y., Choi, N., Cheong, E., ... Cho, S. (2021). Microfluidic device with brain extracellular matrix promotes structural and functional maturation of human brain organoids. Nature Communications, 12(1), 4730. https://doi.org/10.1038/s41467-021-24775-5
4 OK 100%
ORIGINAL:
Mansour, A. A., Gonçalves, J. T., Bloyd, C. W., Li, H., Fernandes, S., Quang, D., Johnston, S., Parylak, S. L., Jin, X., & Gage, F. H. (2018). An in vivo model of functional and vascularized human brain organoids. Nature Biotechnology, 36(5), 432-441. https://doi.org/10.1038/nbt.4127
FORMATTED (APA):
Mansour, A. A., Gonçalves, J. T., Bloyd, C. W., Li, H., Fernandes, S., Quang, D., Johnston, S., Parylak, S. L., Jin, X., & Gage, F. H. (2018). An in vivo model of functional and vascularized human brain organoids. Nature Biotechnology, 36(5), 432-441. https://doi.org/10.1038/nbt.4127
5 OK 100%
ORIGINAL:
Lancaster, M. A., & Knoblich, J. A. (2014). Generation of cerebral organoids from human pluripotent stem cells. Nature Protocols, 9(10), 2329-2340. https://doi.org/10.1038/nprot.2014.158
FORMATTED (APA):
Lancaster, M. A., & Knoblich, J. A. (2014). Generation of cerebral organoids from human pluripotent stem cells. Nature Protocols, 9(10), 2329-2340. https://doi.org/10.1038/nprot.2014.158
6 OK 100%
ORIGINAL:
Cakir, B., Xiang, Y., Tanaka, Y., Kural, M. H., Parent, M., Kang, Y., Chapeton, K., Patterson, B., Yuan, Y., He, C., Raredon, M. S. B., Dengelegi, J., Kim, K., Sun, P., Zhong, M., Lee, S., Patra, P., Hyder, F., Niklason, L. E., ... Park, I. (2019). Engineering of human brain organoids with a functional vascular-like system. Nature Methods, 16(11), 1169-1175. https://doi.org/10.1038/s41592-019-0586-5
FORMATTED (APA):
Cakir, B., Xiang, Y., Tanaka, Y., Kural, M. H., Parent, M., Kang, Y., Chapeton, K., Patterson, B., Yuan, Y., He, C., Raredon, M. S. B., Dengelegi, J., Kim, K., Sun, P., Zhong, M., Lee, S., Patra, P., Hyder, F., Niklason, L. E., ... Park, I. (2019). Engineering of human brain organoids with a functional vascular-like system. Nature Methods, 16(11), 1169-1175. https://doi.org/10.1038/s41592-019-0586-5
7 OK 100%
ORIGINAL:
Trujillo, C. A., Gao, R., Negraes, P. D., Gu, J., Buchanan, J., Preissl, S., Wang, A., Wu, W., Haddad, G. G., Chaim, I. A., Domissy, A., Vandenberghe, M., Devor, A., Yeo, G. W., Voytek, B., & Muotri, A. R. (2019). Complex Oscillatory Waves Emerging from Cortical Organoids Model Early Human Brain Network Development. Cell Stem Cell, 25(4), 558-569.e7. https://doi.org/10.1016/j.stem.2019.08.002
FORMATTED (APA):
Trujillo, C. A., Gao, R., Negraes, P. D., Gu, J., Buchanan, J., Preissl, S., Wang, A., Wu, W., Haddad, G. G., Chaim, I. A., Domissy, A., Vandenberghe, M., Devor, A., Yeo, G. W., Voytek, B., & Muotri, A. R. (2019). Complex Oscillatory Waves Emerging from Cortical Organoids Model Early Human Brain Network Development. Cell Stem Cell, 25(4), 558-569.e7. https://doi.org/10.1016/j.stem.2019.08.002

Want to verify your own citations?

Try Citation Verification Tool