SEAM is a spatial single nuclear metabolomics method for dissecting tissue microenvironment

Z Yuan, Q Zhou, L Cai, L Pan, W Sun, S Qumu, S Yu… - Nature …, 2021 - nature.com
Spatial metabolomics can reveal intercellular heterogeneity and tissue organization. Here
we report on the spatial single nuclear metabolomics (SEAM) method, a flexible platform …

SEAM: a Spatial single nuclEar metAboloMics method for dissecting tissue microenvironment

M Zhang, Z Yuan, Q Zhou, L Cai, L Pan, W Sun… - 2020 - researchsquare.com
Spatial metabolomics can reveal intercellular heterogeneity and tissue organization. To
achieve highest spatial resolution, we reported a novel Spatial single nuclEar metAboloMics …

SEAM is a spatial single nuclear metabolomics method for dissecting tissue microenvironment.

Z Yuan, Q Zhou, L Cai, L Pan, W Sun, S Qumu… - Nature …, 2021 - europepmc.org
Spatial metabolomics can reveal intercellular heterogeneity and tissue organization. Here
we report on the spatial single nuclear metabolomics (SEAM) method, a flexible platform …

SEAM is a spatial single nuclear metabolomics method for dissecting tissue microenvironment

Z Yuan, Q Zhou, L Cai, L Pan, W Sun… - Nature …, 2021 - pubmed.ncbi.nlm.nih.gov
Spatial metabolomics can reveal intercellular heterogeneity and tissue organization. Here
we report on the spatial single nuclear metabolomics (SEAM) method, a flexible platform …

SEAM: a Spatial single nuclEar metAboloMics method for dissecting tissue microenvironment

M Zhang, Z Yuan, Q Zhou, L Cai, L Pan, W Sun… - 2020 - europepmc.org
Spatial metabolomics can reveal intercellular heterogeneity and tissue organization. To
achieve highest spatial resolution, we reported a novel Spatial single nuclEar metAboloMics …