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organoplate 2 lane mimetas leiden the netherlands  (Mimetas Inc)

 
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    Structured Review

    Mimetas Inc organoplate 2 lane mimetas leiden the netherlands
    Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).
    Organoplate 2 Lane Mimetas Leiden The Netherlands, supplied by Mimetas 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/result/organoplate 2 lane mimetas leiden the netherlands/product/Mimetas Inc
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    organoplate 2 lane mimetas leiden the netherlands - by Bioz Stars, 2024-10
    86/100 stars

    Images

    1) Product Images from "The Microfluidic Trainer: Design, Fabrication and Validation of a Tool for Testing and Improving Manual Skills"

    Article Title: The Microfluidic Trainer: Design, Fabrication and Validation of a Tool for Testing and Improving Manual Skills

    Journal: Micromachines

    doi: 10.3390/mi11090872

    Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).
    Figure Legend Snippet: Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).

    Techniques Used: Staining

    Pilot study 1. Performance of the MT device as a tester. ( A ) Correlation of success rate relative to the MT device with previous recent experience with micropipetting in the last 6 months ( n = 21, * p > 0.05, Wilcoxon correlation test); ( B ) Correlation of success rate relative to the MT device with the level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane ( n = 21, ** p < 0.05, Spearman correlation test). ( C ) The receiver operating characteristic (ROC) curve for the prediction ability of the MT device about the performance in handling microfluidic supports ( n = 21, * p = 0.0167, good performers n = 10, bed performers n = 11).
    Figure Legend Snippet: Pilot study 1. Performance of the MT device as a tester. ( A ) Correlation of success rate relative to the MT device with previous recent experience with micropipetting in the last 6 months ( n = 21, * p > 0.05, Wilcoxon correlation test); ( B ) Correlation of success rate relative to the MT device with the level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane ( n = 21, ** p < 0.05, Spearman correlation test). ( C ) The receiver operating characteristic (ROC) curve for the prediction ability of the MT device about the performance in handling microfluidic supports ( n = 21, * p = 0.0167, good performers n = 10, bed performers n = 11).

    Techniques Used:

    Pilot study 2. Performance of the MT device as a trainer. Level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane, before (T0) and after (T1) 3 slots of 30-min continuous training with the MT device. The filled circles are relative to new users, the empty circles are relative to the experts ( n = 8, ** p < 0.005, Wilcoxon test of paired analysis).
    Figure Legend Snippet: Pilot study 2. Performance of the MT device as a trainer. Level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane, before (T0) and after (T1) 3 slots of 30-min continuous training with the MT device. The filled circles are relative to new users, the empty circles are relative to the experts ( n = 8, ** p < 0.005, Wilcoxon test of paired analysis).

    Techniques Used:



    Similar Products

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    Mimetas Inc organoplate 2 lane mimetas leiden the netherlands
    Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).
    Organoplate 2 Lane Mimetas Leiden The Netherlands, supplied by Mimetas 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/result/organoplate 2 lane mimetas leiden the netherlands/product/Mimetas Inc
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    organoplate 2 lane mimetas leiden the netherlands - by Bioz Stars, 2024-10
    86/100 stars
      Buy from Supplier

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    Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).

    Journal: Micromachines

    Article Title: The Microfluidic Trainer: Design, Fabrication and Validation of a Tool for Testing and Improving Manual Skills

    doi: 10.3390/mi11090872

    Figure Lengend Snippet: Validation protocol. ( A ) Comparison of the inlet of the MT single tester cell (on the left) and of the commercial microfluidic plate (OrganoPlate ® 2-lane, on the right) (objective 4×); ( B ) Graph representation of the filling process of the MT device; ( C ) MT tester cells on the exercise plate that are filled with the staining solution (1.3 µL Betadine ® ), at the end of the validation test (representative image). On the top right, a magnification of representative images of one correctly filled cell (pass), and one failed cell (fail).

    Article Snippet: The diameter of the inlet and the diameter of the exercise path has been defined to be as similar as possible to those of the reference microfluidic plate that has been considered in this study (OrganoPlate ® 2-lane, Mimetas, Leiden, The Netherlands).

    Techniques: Staining

    Pilot study 1. Performance of the MT device as a tester. ( A ) Correlation of success rate relative to the MT device with previous recent experience with micropipetting in the last 6 months ( n = 21, * p > 0.05, Wilcoxon correlation test); ( B ) Correlation of success rate relative to the MT device with the level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane ( n = 21, ** p < 0.05, Spearman correlation test). ( C ) The receiver operating characteristic (ROC) curve for the prediction ability of the MT device about the performance in handling microfluidic supports ( n = 21, * p = 0.0167, good performers n = 10, bed performers n = 11).

    Journal: Micromachines

    Article Title: The Microfluidic Trainer: Design, Fabrication and Validation of a Tool for Testing and Improving Manual Skills

    doi: 10.3390/mi11090872

    Figure Lengend Snippet: Pilot study 1. Performance of the MT device as a tester. ( A ) Correlation of success rate relative to the MT device with previous recent experience with micropipetting in the last 6 months ( n = 21, * p > 0.05, Wilcoxon correlation test); ( B ) Correlation of success rate relative to the MT device with the level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane ( n = 21, ** p < 0.05, Spearman correlation test). ( C ) The receiver operating characteristic (ROC) curve for the prediction ability of the MT device about the performance in handling microfluidic supports ( n = 21, * p = 0.0167, good performers n = 10, bed performers n = 11).

    Article Snippet: The diameter of the inlet and the diameter of the exercise path has been defined to be as similar as possible to those of the reference microfluidic plate that has been considered in this study (OrganoPlate ® 2-lane, Mimetas, Leiden, The Netherlands).

    Techniques:

    Pilot study 2. Performance of the MT device as a trainer. Level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane, before (T0) and after (T1) 3 slots of 30-min continuous training with the MT device. The filled circles are relative to new users, the empty circles are relative to the experts ( n = 8, ** p < 0.005, Wilcoxon test of paired analysis).

    Journal: Micromachines

    Article Title: The Microfluidic Trainer: Design, Fabrication and Validation of a Tool for Testing and Improving Manual Skills

    doi: 10.3390/mi11090872

    Figure Lengend Snippet: Pilot study 2. Performance of the MT device as a trainer. Level of experience in handling microfluidic supports, as measured with OrganoPlate ® 2-lane, before (T0) and after (T1) 3 slots of 30-min continuous training with the MT device. The filled circles are relative to new users, the empty circles are relative to the experts ( n = 8, ** p < 0.005, Wilcoxon test of paired analysis).

    Article Snippet: The diameter of the inlet and the diameter of the exercise path has been defined to be as similar as possible to those of the reference microfluidic plate that has been considered in this study (OrganoPlate ® 2-lane, Mimetas, Leiden, The Netherlands).

    Techniques: