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Structured Review

Formlabs Inc form 3 3d printer
Form 3 3d Printer, supplied by Formlabs Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/3d+printer+form+3/3d+printer/pmc13196775-253-18-26
Average 86 stars, based on 1 article reviews
form 3 3d printer - by Bioz Stars, 2026-09
86/100 stars

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Related Articles

Amplification:

Article Title: Particle-armored liquid robots.
Article Snippet: The PDMS polymer mixture was poured onto the primary mold fabricated using a 3D printer (Form 2 and Form 3, Formlabs).

Article Title: Feed and Bleed Operating Mode for Electrochemical Flow Cells: Challenges, Solutions and Practical Insights
Article Snippet: The phase separator was manufactured by 3D printing (printer: Form 3, material: High Temp Resin V2, Formlabs).

Article Title: Nanoneedle‐Based Electroporation for Efficient Manufacturing of Human Primary Chimeric Antigen Receptor Regulatory T‐Cells
Article Snippet: Nanoneedle‐EP holders and electrodes were designed using Fusion 360 (Autodesk, USA) and printed using a 3D printer (Form 3+, Formlabs, USA) with medical‐grade BioMed Clear Resin (Formlabs, USA).

Article Title: Improved acoustic holograms using simulated annealing
Article Snippet: The hologram 3D files (.STL format) were printed using a 3D printer (Form 3+, Formlabs, Somerville, USA) with UV-sensitive resin [density of 1184 kg m −3 and sound speed of 2400 ms −1 (Ref. )] (UV Sensitive Resin Basic, Formlabs, Somerville, USA).

Article Title: Overcoming the adhesion paradox and switchability conflict on rough surfaces with shape-memory polymers
Article Snippet: First, a stiff mold with a cylinder in the center of a circular container was printed using a 3D printer (Form 3, FormLabs), as shown in Fig. S4A-i.

Article Title: Protocol for closed-loop optogenetic manipulation of cortical activity following hippocampal sharp-wave ripples in freely behaving rats.
Article Snippet: Both a commercial 3Dprinting service (Materialise, Leuven, Belgium) and an in-house Form 3 printer (Formlabs) have been used successfully to print the implant parts.

Article Title: PullExo: An orthosis-based mobile hand exoskeleton with on-device visual biofeedback.
Article Snippet: Background: Grasping function is severely compromised in individuals with spinal cord injury, significantly limiting their independence in activities of daily living.. While robotic hand exoskeletons offer promising solutions, current systems often separate control and motor units from the wearable body, resulting in additional components to be worn by the patient.. Furthermore, the integration of an immediately accessible user interface, capable of providing biofeedback, has not been fully explored.

Article Title: Orientation-independent bubble trap with internal partition for robust operation of microfluidic systems.
Article Snippet: Bubble traps with internal spherical radius of 15 mm were fabricated monolithically using stereolithography on a commercial 3D printer (Form 3, Formlabs, Boston, Massachusetts, USA) using standard Formlabs resins (e.g., Clear, High Temp).

Positron Emission Tomography:

Article Title: Particle-armored liquid robots.
Article Snippet: The PDMS polymer mixture was poured onto the primary mold fabricated using a 3D printer (Form 2 and Form 3, Formlabs).

Article Title: Feed and Bleed Operating Mode for Electrochemical Flow Cells: Challenges, Solutions and Practical Insights
Article Snippet: The phase separator was manufactured by 3D printing (printer: Form 3, material: High Temp Resin V2, Formlabs).

Article Title: Nanoneedle‐Based Electroporation for Efficient Manufacturing of Human Primary Chimeric Antigen Receptor Regulatory T‐Cells
Article Snippet: Nanoneedle‐EP holders and electrodes were designed using Fusion 360 (Autodesk, USA) and printed using a 3D printer (Form 3+, Formlabs, USA) with medical‐grade BioMed Clear Resin (Formlabs, USA).

Article Title: Improved acoustic holograms using simulated annealing
Article Snippet: The hologram 3D files (.STL format) were printed using a 3D printer (Form 3+, Formlabs, Somerville, USA) with UV-sensitive resin [density of 1184 kg m −3 and sound speed of 2400 ms −1 (Ref. )] (UV Sensitive Resin Basic, Formlabs, Somerville, USA).

Article Title: Overcoming the adhesion paradox and switchability conflict on rough surfaces with shape-memory polymers
Article Snippet: First, a stiff mold with a cylinder in the center of a circular container was printed using a 3D printer (Form 3, FormLabs), as shown in Fig. S4A-i.

Article Title: Protocol for closed-loop optogenetic manipulation of cortical activity following hippocampal sharp-wave ripples in freely behaving rats.
Article Snippet: Both a commercial 3Dprinting service (Materialise, Leuven, Belgium) and an in-house Form 3 printer (Formlabs) have been used successfully to print the implant parts.

Article Title: PullExo: An orthosis-based mobile hand exoskeleton with on-device visual biofeedback.
Article Snippet: Background: Grasping function is severely compromised in individuals with spinal cord injury, significantly limiting their independence in activities of daily living.. While robotic hand exoskeletons offer promising solutions, current systems often separate control and motor units from the wearable body, resulting in additional components to be worn by the patient.. Furthermore, the integration of an immediately accessible user interface, capable of providing biofeedback, has not been fully explored.

Article Title: Orientation-independent bubble trap with internal partition for robust operation of microfluidic systems.
Article Snippet: Bubble traps with internal spherical radius of 15 mm were fabricated monolithically using stereolithography on a commercial 3D printer (Form 3, Formlabs, Boston, Massachusetts, USA) using standard Formlabs resins (e.g., Clear, High Temp).

Suspension:

Article Title: Particle-armored liquid robots.
Article Snippet: The PDMS polymer mixture was poured onto the primary mold fabricated using a 3D printer (Form 2 and Form 3, Formlabs).

Article Title: Feed and Bleed Operating Mode for Electrochemical Flow Cells: Challenges, Solutions and Practical Insights
Article Snippet: The phase separator was manufactured by 3D printing (printer: Form 3, material: High Temp Resin V2, Formlabs).

Article Title: Nanoneedle‐Based Electroporation for Efficient Manufacturing of Human Primary Chimeric Antigen Receptor Regulatory T‐Cells
Article Snippet: Nanoneedle‐EP holders and electrodes were designed using Fusion 360 (Autodesk, USA) and printed using a 3D printer (Form 3+, Formlabs, USA) with medical‐grade BioMed Clear Resin (Formlabs, USA).

Article Title: Improved acoustic holograms using simulated annealing
Article Snippet: The hologram 3D files (.STL format) were printed using a 3D printer (Form 3+, Formlabs, Somerville, USA) with UV-sensitive resin [density of 1184 kg m −3 and sound speed of 2400 ms −1 (Ref. )] (UV Sensitive Resin Basic, Formlabs, Somerville, USA).

Article Title: Overcoming the adhesion paradox and switchability conflict on rough surfaces with shape-memory polymers
Article Snippet: First, a stiff mold with a cylinder in the center of a circular container was printed using a 3D printer (Form 3, FormLabs), as shown in Fig. S4A-i.

Article Title: Protocol for closed-loop optogenetic manipulation of cortical activity following hippocampal sharp-wave ripples in freely behaving rats.
Article Snippet: Both a commercial 3Dprinting service (Materialise, Leuven, Belgium) and an in-house Form 3 printer (Formlabs) have been used successfully to print the implant parts.

Article Title: PullExo: An orthosis-based mobile hand exoskeleton with on-device visual biofeedback.
Article Snippet: Background: Grasping function is severely compromised in individuals with spinal cord injury, significantly limiting their independence in activities of daily living.. While robotic hand exoskeletons offer promising solutions, current systems often separate control and motor units from the wearable body, resulting in additional components to be worn by the patient.. Furthermore, the integration of an immediately accessible user interface, capable of providing biofeedback, has not been fully explored.

Article Title: Orientation-independent bubble trap with internal partition for robust operation of microfluidic systems.
Article Snippet: Bubble traps with internal spherical radius of 15 mm were fabricated monolithically using stereolithography on a commercial 3D printer (Form 3, Formlabs, Boston, Massachusetts, USA) using standard Formlabs resins (e.g., Clear, High Temp).



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