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3d laser lithography system photonic professional gtm  (Nanoscribe GmbH)

 
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    Nanoscribe GmbH 3d laser lithography system photonic professional gtm
    3d Laser Lithography System Photonic Professional Gtm, supplied by Nanoscribe GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/3d+laser+lithography+system/two+photon+lithography+system+photonic+professional+gt/us12311600-179-19-23
    Average 90 stars, based on 1 article reviews
    3d laser lithography system photonic professional gtm - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Formulation:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Functional Assay:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Single Photon Emission Computed Tomography:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Transfection:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Transduction:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Infection:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Mutagenesis:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Expressing:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Plasmid Preparation:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Virus:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Ex Vivo:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Genetically Modified:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Transplantation Assay:

    Article Title: Crack engineering as a new route for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Two‐Photon Direct Laser Writing of Inverse‐Designed Free‐Form Near‐Infrared Polarization Beamsplitter
    Article Snippet: In this work, we fabricated the devices using a commercial 3D laser lithography system (Photonic Professional GT, Nanoscribe GmbH, Germany) based on a femtosecond laser at 780 nm wavelength with approximately 80 MHz repetition frequency.

    Article Title: Spermatozoa as Functional Components of Robotic Microswimmers.
    Article Snippet: DOI: 10.1002/adma.201606301 functional components of hybrid swimmers yield additional fascinating potential applications.. Not only can the motile mammalian germ cells serve as a power source for microstructures, but the remotely controlled delivery as cargo is also an intriguing aspect in the development of new reproduction technologies.. The first demonstration of the guidance of single spermatozoa was achieved by capturing them in 50 μm-long rolled-up ferromagnetic microtubes and using an external field to remotely control their direction (Figure 1A).

    Article Title: Magnetically actuated microrobots as a platform for stem cell transplantation.
    Article Snippet: Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, South Korea.. DGIST-ETH Microrobotics Research Center, DGIST, Daegu 42988, South Korea.. Institute of Robotic and Intelligent System (IRIS), ETH, Zurich 8092, Switzerland.

    Article Title: Core-shell microneedle platform for transdermal and pulsatile drug/vaccine delivery and method of manufacturing the same
    Article Snippet: The master structures for the microneedles are fabricated using a 3D laser lithography system (Nanoscribe GmbH).

    Article Title: Crack engineering for the construction of arbitrary hierarchical architectures
    Article Snippet: These structures (Fig. S3D-G) were fabricated by two-photon absorption (TPA) using a 3D laser lithography system (Nanoscribe GmbH).



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    Heidelberg Instruments Inc 3d laser lithography system mpo 100
    Summary of therapeutic use of NGF and Techniques for biodelivery to the brain.
    3d Laser Lithography System Mpo 100, supplied by Heidelberg Instruments Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/3d+laser+lithography+system/3d+laser+lithography+system+mpo+100/10__1002_slash_phvs__202300004-40-15-6
    Average 90 stars, based on 1 article reviews
    3d laser lithography system mpo 100 - by Bioz Stars, 2026-10
    90/100 stars
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    90
    Nanoscribe GmbH 3d direct laser lithography
    <t>3D</t> printing (two-photon polymerization) process <t>of</t> <t>PNAGA</t> microstructures.
    3d Direct Laser Lithography, supplied by Nanoscribe GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/3d+laser+lithography+system/3d+laser+lithography+system/pmc10236329-49-7-11
    Average 90 stars, based on 1 article reviews
    3d direct laser lithography - by Bioz Stars, 2026-10
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    Summary of therapeutic use of NGF and Techniques for biodelivery to the brain.

    Journal: Biology

    Article Title: Multifaceted Roles of Nerve Growth Factor: A Comprehensive Review with a Special Insight into Pediatric Perspectives

    doi: 10.3390/biology13070546

    Figure Lengend Snippet: Summary of therapeutic use of NGF and Techniques for biodelivery to the brain.

    Article Snippet: 3D printing technologies , Review , Not applicable , Not applicable , To propose the Biocage, a customizable implantable local drug delivery platform was used; it was fabricated using the Nanoscribe Photonic Professional GT 3D laser lithography system, a two-photon polymerization (2PP) 3D printer , Not applicable , [ ] .

    Techniques: Formulation, Functional Assay, Single Photon Emission Computed Tomography, Transfection, Transduction, Infection, Mutagenesis, Expressing, Plasmid Preparation, Virus, Ex Vivo, Genetically Modified, Transplantation Assay

    3D printing (two-photon polymerization) process of PNAGA microstructures.

    Journal: International Journal of Bioprinting

    Article Title: 3D-printed PNAGA thermosensitive hydrogelbased microrobots: An effective cancer therapy by temperature-triggered drug release

    doi: 10.18063/ijb.709

    Figure Lengend Snippet: 3D printing (two-photon polymerization) process of PNAGA microstructures.

    Article Snippet: PNAGA-100 thermosensitive microstructures were fabricated using a 3D Direct Laser lithography (Nanoscribe GmbH) according to the method described in section 2.3.

    Techniques:

    (a) 3D printing window of PNAGA-100 under different parameters. (b) Optical image of PNAGA-100 responding to the printing parameters in panel (a). (c) The three states of PNAGA-100 with different printing conditions.

    Journal: International Journal of Bioprinting

    Article Title: 3D-printed PNAGA thermosensitive hydrogelbased microrobots: An effective cancer therapy by temperature-triggered drug release

    doi: 10.18063/ijb.709

    Figure Lengend Snippet: (a) 3D printing window of PNAGA-100 under different parameters. (b) Optical image of PNAGA-100 responding to the printing parameters in panel (a). (c) The three states of PNAGA-100 with different printing conditions.

    Article Snippet: PNAGA-100 thermosensitive microstructures were fabricated using a 3D Direct Laser lithography (Nanoscribe GmbH) according to the method described in section 2.3.

    Techniques:

    Thermosensitive properties of 3D-printed PNAGA-based microrobots under 25°C and 45°C.

    Journal: International Journal of Bioprinting

    Article Title: 3D-printed PNAGA thermosensitive hydrogelbased microrobots: An effective cancer therapy by temperature-triggered drug release

    doi: 10.18063/ijb.709

    Figure Lengend Snippet: Thermosensitive properties of 3D-printed PNAGA-based microrobots under 25°C and 45°C.

    Article Snippet: PNAGA-100 thermosensitive microstructures were fabricated using a 3D Direct Laser lithography (Nanoscribe GmbH) according to the method described in section 2.3.

    Techniques:

    (a) 3D printing window of PNAGA-100-encapsuled DOX. (b) 3D structures of PNAGA-100-DOX printed via 2PP method. (c) DOX release measurement of PNAGA-100 under 25°C and 45°C, respectively. (d) Evaluation of thermosensitive properties of PNAGA-100.

    Journal: International Journal of Bioprinting

    Article Title: 3D-printed PNAGA thermosensitive hydrogelbased microrobots: An effective cancer therapy by temperature-triggered drug release

    doi: 10.18063/ijb.709

    Figure Lengend Snippet: (a) 3D printing window of PNAGA-100-encapsuled DOX. (b) 3D structures of PNAGA-100-DOX printed via 2PP method. (c) DOX release measurement of PNAGA-100 under 25°C and 45°C, respectively. (d) Evaluation of thermosensitive properties of PNAGA-100.

    Article Snippet: PNAGA-100 thermosensitive microstructures were fabricated using a 3D Direct Laser lithography (Nanoscribe GmbH) according to the method described in section 2.3.

    Techniques:

    (a) Helix PNAGA-100-based thermosensitive microrobots fabricated by 3D printing. (b) Metal–organic framework (MOF)-coated magnetic helix PNAGA-100-based microrobots.

    Journal: International Journal of Bioprinting

    Article Title: 3D-printed PNAGA thermosensitive hydrogelbased microrobots: An effective cancer therapy by temperature-triggered drug release

    doi: 10.18063/ijb.709

    Figure Lengend Snippet: (a) Helix PNAGA-100-based thermosensitive microrobots fabricated by 3D printing. (b) Metal–organic framework (MOF)-coated magnetic helix PNAGA-100-based microrobots.

    Article Snippet: PNAGA-100 thermosensitive microstructures were fabricated using a 3D Direct Laser lithography (Nanoscribe GmbH) according to the method described in section 2.3.

    Techniques: