Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology
10.1186/s13287-019-1141-0
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sg-nus-scholar.10635-1780492023-10-31T21:25:37Z Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology Yuan, C Chakraborty, S Chitta, K.K Subramanian, S Lim, T.E Han, W Bhanu Prakash, K.N Sugii, S MECHANOBIOLOGY INSTITUTE DUKE-NUS MEDICAL SCHOOL cell nucleus receptor 3T3-L1 cell line accuracy adipocyte adipogenesis adipose derived mesenchymal stem cell adipose tissue cell algorithm animal cell Article cell density cell differentiation controlled study embryoid body fast adipogenesis tracking system human human cell induced pluripotent stem cell ligand binding mesenchymal stem cell mouse nonhuman priority journal quantitative analysis 10.1186/s13287-019-1141-0 Stem Cell Research and Therapy 10 1 38 2020-10-20T04:56:15Z 2020-10-20T04:56:15Z 2019 Article Yuan, C, Chakraborty, S, Chitta, K.K, Subramanian, S, Lim, T.E, Han, W, Bhanu Prakash, K.N, Sugii, S (2019). Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology. Stem Cell Research and Therapy 10 (1) : 38. ScholarBank@NUS Repository. https://doi.org/10.1186/s13287-019-1141-0 17576512 https://scholarbank.nus.edu.sg/handle/10635/178049 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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cell nucleus receptor 3T3-L1 cell line accuracy adipocyte adipogenesis adipose derived mesenchymal stem cell adipose tissue cell algorithm animal cell Article cell density cell differentiation controlled study embryoid body fast adipogenesis tracking system human human cell induced pluripotent stem cell ligand binding mesenchymal stem cell mouse nonhuman priority journal quantitative analysis |
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cell nucleus receptor 3T3-L1 cell line accuracy adipocyte adipogenesis adipose derived mesenchymal stem cell adipose tissue cell algorithm animal cell Article cell density cell differentiation controlled study embryoid body fast adipogenesis tracking system human human cell induced pluripotent stem cell ligand binding mesenchymal stem cell mouse nonhuman priority journal quantitative analysis Yuan, C Chakraborty, S Chitta, K.K Subramanian, S Lim, T.E Han, W Bhanu Prakash, K.N Sugii, S Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
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10.1186/s13287-019-1141-0 |
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MECHANOBIOLOGY INSTITUTE |
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MECHANOBIOLOGY INSTITUTE Yuan, C Chakraborty, S Chitta, K.K Subramanian, S Lim, T.E Han, W Bhanu Prakash, K.N Sugii, S |
format |
Article |
author |
Yuan, C Chakraborty, S Chitta, K.K Subramanian, S Lim, T.E Han, W Bhanu Prakash, K.N Sugii, S |
author_sort |
Yuan, C |
title |
Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
title_short |
Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
title_full |
Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
title_fullStr |
Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
title_full_unstemmed |
Fast Adipogenesis Tracking System (FATS) - A robust, high-throughput, automation-ready adipogenesis quantification technique 10 Technology 1004 Medical Biotechnology |
title_sort |
fast adipogenesis tracking system (fats) - a robust, high-throughput, automation-ready adipogenesis quantification technique 10 technology 1004 medical biotechnology |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/178049 |
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1781792268532842496 |