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Lab on a Chip|May 14, 2016
3D-printed fluidic networks as vasculature for engineered tissueIan S Kinstlinger, Jordan S MillerNature Protocols|May 25, 2021
Perfusion and endothelialization of engineered tissues with patterned vascular networksIan S Kinstlinger, Gisele A Calderon, Madison K Royse, et al.Frontiers in Cardiovascular Medicine|June 24, 2021
Blood Flow Within Bioengineered 3D Printed Vascular Constructs Using the Porcine ModelNhu Thao N Galván, Samantha J Paulsen, Ian S Kinstlinger, et al.Plos One|February 4, 2016
Open-Source Selective Laser Sintering (OpenSLS) of Nylon and Biocompatible PolycaprolactoneIan S Kinstlinger, Andreas Bastian, Samantha J Paulsen, et al.Science Advances|May 9, 2025
Multiplexing light-inducible recombinases to control cell fate, Boolean logic, and cell patterning in mammalian cellsCristina Tous, Ian S Kinstlinger, Maya E L Rice, et al.Plos Biology|June 18, 2014
The billion cell construct: will three-dimensional printing get us there?Jordan S MillerDisease Models & Mechanisms|January 10, 2017
3D bioprinting: improving in vitro models of metastasis with heterogeneous tumor microenvironmentsJacob L Albritton, Jordan S MillerNature Biomedical Engineering|July 1, 2020
Generation of model tissues with dendritic vascular networks via sacrificial laser-sintered carbohydrate templatesIan S Kinstlinger, Sarah H Saxton, Gisele A Calderon, et al.Social Cognitive and Affective Neuroscience|September 22, 2012
Imaging depletion: fMRI provides new insights into the processes underlying ego depletion*Elliot T Berkman, Jordan S Miller-ZieglerBiomaterials|September 10, 2015
A modular, plasmin-sensitive, clickable poly(ethylene glycol)-heparin-laminin microsphere system for establishing growth factor gradients in nerve guidance conduitsJacob L Roam, Ying Yan, Peter K Nguyen, et al.Pageof 4