A recent revolution in additive manufacturing technologies and access to 3D Computer Assisted Design (CAD) software has spurred an explosive growth of new technologies in biomedical engineering. This includes biomodels for diagnosis, surgical training, hard and soft tissue replacement, biodevices and tissue engineering. Moreover, recent developments in high-definition additive manufacturing systems such as Multi-Jet Modelling (MJM) and Stereolithography (SLA), capable of reproducing feature sizes close to 100 μm, promise brand new capabilities in fabrication of optical-grade biomicrofluidic Lab-on-a-Chip and MEMS devices. Compared with other rapid prototyping technologies such as soft lithography and infrared laser micromachining in PMMA, S...
Increased demand for inexpensive and rapid prototyping methods for micro- and millifluidic lab-on-a-...
In the last few years, 3D printing has emerged as a promising alternative for the fabrication of mic...
Polymer engineering, such as in three-dimensional (3D) printing, is rapidly gaining popularity, not ...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Additive manufacturing was adopted in multiple fields of life sciences. It is also becoming a popula...
This work describes a preliminary investigation of commercially available 3D printing technologies f...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Additive manufacturing (AM) is ideal for building adaptable, structurally complex, three-dimensional...
3D printing is a rapid and accessible fabrication technology that engenders creative custom design s...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Additive manufacturing of polymers is gaining momentum in health care industries by providing rapid ...
In this experimental report, the biocompatibility of elastomeric scaffold structures made via stereo...
Advances in microfabrication technologies and manufacturing over last decade, allowed for inexpensiv...
Increased demand for inexpensive and rapid prototyping methods for micro- and millifluidic lab-on-a-...
Polymer engineering, such as in three-dimensional (3D) printing, is rapidly gaining popularity, not ...
Increased demand for inexpensive and rapid prototyping methods for micro- and millifluidic lab-on-a-...
In the last few years, 3D printing has emerged as a promising alternative for the fabrication of mic...
Polymer engineering, such as in three-dimensional (3D) printing, is rapidly gaining popularity, not ...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Additive manufacturing was adopted in multiple fields of life sciences. It is also becoming a popula...
This work describes a preliminary investigation of commercially available 3D printing technologies f...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Additive manufacturing (AM) is ideal for building adaptable, structurally complex, three-dimensional...
3D printing is a rapid and accessible fabrication technology that engenders creative custom design s...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Additive manufacturing of polymers is gaining momentum in health care industries by providing rapid ...
In this experimental report, the biocompatibility of elastomeric scaffold structures made via stereo...
Advances in microfabrication technologies and manufacturing over last decade, allowed for inexpensiv...
Increased demand for inexpensive and rapid prototyping methods for micro- and millifluidic lab-on-a-...
Polymer engineering, such as in three-dimensional (3D) printing, is rapidly gaining popularity, not ...
Increased demand for inexpensive and rapid prototyping methods for micro- and millifluidic lab-on-a-...
In the last few years, 3D printing has emerged as a promising alternative for the fabrication of mic...
Polymer engineering, such as in three-dimensional (3D) printing, is rapidly gaining popularity, not ...