Physiologically relevant organs on chips.¶
Yum, K., Hong, S. G., Healy, K. E., & Lee, L. P. (2014). Physiologically relevant organs on chips. Biotechnology Journal, 9(1), 16-27.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Integrated Discrete Multiple Organ Co-Culture (IdMOC)
- Introducing directed perfusion, organ-volume scaling, residence-time control, or microfluidic circulation may produce a related multi-organ microphysiological system rather than merely another IdMOC configuration.
This sourceSection 4 contrasts IdMOC's static overlay with dynamic microfluidic multi-organ models.
- Introducing directed perfusion, organ-volume scaling, residence-time control, or microfluidic circulation may produce a related multi-organ microphysiological system rather than merely another IdMOC configuration.
Verification¶
This reference passed the adversarial substantiation pipeline: it was checked to exist and to support the claim it is attached to. See how references were verified.
Registry ID ref:f3a8e9d389fd · see in the full table