motorized micromanipulator Search Results


90
Carl Zeiss motorized micromanipulator (zeiss)
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Micromanipulator (Zeiss), supplied by Carl Zeiss, 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/motorized+micromanipulator/pmc09754973-158-16-17?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
motorized micromanipulator (zeiss) - by Bioz Stars, 2026-07
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90
Carl Zeiss motorized micromanipulator zeiss
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Micromanipulator Zeiss, supplied by Carl Zeiss, 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/motorized+micromanipulator/pmc09754973-37-37-38?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
motorized micromanipulator zeiss - by Bioz Stars, 2026-07
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90
FLUIGENT Inc motorized micromanipulator
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Micromanipulator, supplied by FLUIGENT 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/motorized+micromanipulator/pmc09841331-308-22-26?v=FLUIGENT+Inc
Average 90 stars, based on 1 article reviews
motorized micromanipulator - by Bioz Stars, 2026-07
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90
Neurostar GmbH motorized stereotaxic micromanipulator robot stereotaxic
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Stereotaxic Micromanipulator Robot Stereotaxic, supplied by Neurostar 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/motorized+micromanipulator/pm30144495-64-10-13?v=Neurostar+GmbH
Average 90 stars, based on 1 article reviews
motorized stereotaxic micromanipulator robot stereotaxic - by Bioz Stars, 2026-07
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90
Sutter Instrument sutter mp-285
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Sutter Mp 285, supplied by Sutter Instrument, 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/motorized+micromanipulator/bio_rxiv__2024__10__21__619528-187-18-18?v=Sutter+Instrument
Average 90 stars, based on 1 article reviews
sutter mp-285 - by Bioz Stars, 2026-07
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90
Unisense A/S micromanipulator mm33
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Micromanipulator Mm33, supplied by Unisense A/S, 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/motorized+micromanipulator/pmc03415947-146-9-8?v=Unisense+A%2FS
Average 90 stars, based on 1 article reviews
micromanipulator mm33 - by Bioz Stars, 2026-07
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90
Pyro Science GmbH computer-controlled micromanipulator
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Computer Controlled Micromanipulator, supplied by Pyro Science 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/motorized+micromanipulator/10__1128_slash_aac__01024___17-120-32-35?v=Pyro+Science+GmbH
Average 90 stars, based on 1 article reviews
computer-controlled micromanipulator - by Bioz Stars, 2026-07
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90
SmarAct Inc motorized xyz micromanipulator
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Xyz Micromanipulator, supplied by SmarAct 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/motorized+micromanipulator/pmc08044975-186-18-21?v=SmarAct+Inc
Average 90 stars, based on 1 article reviews
motorized xyz micromanipulator - by Bioz Stars, 2026-07
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90
Sutter Instrument Company power1401-3a 4-axis motorized micromanipulator
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Power1401 3a 4 Axis Motorized Micromanipulator, supplied by Sutter Instrument Company, 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/motorized+micromanipulator/pm38461414-168-185-216?v=Sutter+Instrument+Company
Average 90 stars, based on 1 article reviews
power1401-3a 4-axis motorized micromanipulator - by Bioz Stars, 2026-07
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90
Unisense A/S dualmounted, motorized micromanipulator-profiler
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Dualmounted, Motorized Micromanipulator Profiler, supplied by Unisense A/S, 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/motorized+micromanipulator/10__1002_slash_lol2__10334-80-25-34?v=Unisense+A%2FS
Average 90 stars, based on 1 article reviews
dualmounted, motorized micromanipulator-profiler - by Bioz Stars, 2026-07
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90
Sutter Instrument Company motorized micromanipulator carrying a first micropipette holder
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Micromanipulator Carrying A First Micropipette Holder, supplied by Sutter Instrument Company, 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/motorized+micromanipulator/pmc04621874-90-8-36?v=Sutter+Instrument+Company
Average 90 stars, based on 1 article reviews
motorized micromanipulator carrying a first micropipette holder - by Bioz Stars, 2026-07
90/100 stars
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90
Neurostar GmbH motorized micromanipulator
Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a <t>micromanipulator</t> pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).
Motorized Micromanipulator, supplied by Neurostar 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/motorized+micromanipulator/pmc05709228-91-15-16?v=Neurostar+GmbH
Average 90 stars, based on 1 article reviews
motorized micromanipulator - by Bioz Stars, 2026-07
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Image Search Results


Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a micromanipulator pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).

Journal: Ophthalmology Science

Article Title: Optimizing Retinal Thermofusion in Retinal Detachment Repair

doi: 10.1016/j.xops.2022.100179

Figure Lengend Snippet: Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a micromanipulator pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).

Article Snippet: As above, this suture was attached to an isometric force transducer (MLT0402), and using a motorized micromanipulator (Zeiss), constant force was applied over 90 to 120 seconds to test adhesion strength.

Techniques: Ex Vivo, Coagulation

Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a micromanipulator pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).

Journal: Ophthalmology Science

Article Title: Optimizing Retinal Thermofusion in Retinal Detachment Repair

doi: 10.1016/j.xops.2022.100179

Figure Lengend Snippet: Adhesion strength of retinal thermofusion in ex vivo porcine eyes. A , After treatment, cyanoacrylate glue was applied, and a fiber connecting the retina to the force transducer was attached. Photograph showing a micromanipulator pulling at a constant rate, causing the stress lines between the dried glue and the RTF-treated retinal edge. B , Line graph showing force traces for 2 samples in which the peak adhesion force was higher as a result of retinal thermofusion (RTF; gray trace) than laser coagulation alone (blue trace). C , Bar graph showing peak force measured for untreated (n = 9), photocoagulation alone (n = 5), warm air drying (1 minute, n = 6; 2 minutes, n = 9; and 3 minutes, n = 5), and RTF (n = 5). Stronger adhesion was achieved with RTF than with warm air drying and photocoagulation alone. D , Scatterplot showing that the peak force achieved was associated with the temperature-time integral of drying before photocoagulation. Error bars are standard error of means. Figure legend in ( D ) is as per ( C ).

Article Snippet: The immediate integrity of the repair can be examined in several ways: (1) by introducing water under the retina to test if the seal is waterproof and (2) pulling the retina tangentially and perpendicularly using a motorized micromanipulator (Zeiss) to test adhesion strength.

Techniques: Ex Vivo, Coagulation