The distribution of periodic patterns of materials with radial or bilateral symmetry is a universal natural design principle. Among the many biological forms, tubular shapes are a common motif in many organisms, and they are also important for bioimplants and soft robots. However, the simple design principle of strategic placement of 3D printed segments of swelling and nonswelling materials to achieve widely different functionalities is yet to be demonstrated. Here, we report the design, fabrication, and characterization of segmented 3D printed gel tubes composed of an active thermally responsive swelling gel (poly N-isopropylacrylamide) and a passive thermally nonresponsive gel (polyacrylamide). Using finite element simulations and experim...
Fueled by research that cells respond strongly to physical queues as well as to molecular signals, w...
Tissue engineering often encounters with invasive issue between biomedical devices and host system w...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Advances in the design of adaptive matter capable of programmable, environmentally-responsive change...
Biological structures in nature are made out of components which respond to external cues present in...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Tubular structures are fundamental constituents of plant, animal and human tissues. Synthetically pr...
Biofabrication is the process of transforming materials into systems that reproduce biological struc...
Large scale 3D ordering of anisotropic gel objects, such as gel microrods, both rigid and soft, is i...
Major challenges in biofabrication revolve around capturing the complex, hierarchical composition of...
Responsive materials with functions of forming three-dimensional (3D) origami and/or kirigami struct...
There is a growing interest in the concept of four-dimensional (4D) printing that combines a three-d...
Fueled by research that cells respond strongly to physical queues as well as to molecular signals, w...
Tissue engineering often encounters with invasive issue between biomedical devices and host system w...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Advances in the design of adaptive matter capable of programmable, environmentally-responsive change...
Biological structures in nature are made out of components which respond to external cues present in...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Tubular structures are fundamental constituents of plant, animal and human tissues. Synthetically pr...
Biofabrication is the process of transforming materials into systems that reproduce biological struc...
Large scale 3D ordering of anisotropic gel objects, such as gel microrods, both rigid and soft, is i...
Major challenges in biofabrication revolve around capturing the complex, hierarchical composition of...
Responsive materials with functions of forming three-dimensional (3D) origami and/or kirigami struct...
There is a growing interest in the concept of four-dimensional (4D) printing that combines a three-d...
Fueled by research that cells respond strongly to physical queues as well as to molecular signals, w...
Tissue engineering often encounters with invasive issue between biomedical devices and host system w...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...