triton + 48-channel patch clamp amplifier (Tecella LLC)
90
Structured Review
Tecella LLC
triton + 48-channel patch clamp amplifier
Triton + 48 Channel Patch Clamp Amplifier, supplied by Tecella LLC, 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/patch+clamp+microelectrode+amplifier/triton+48+channel+patch+clamp+amplifier/pmc04014142-25-11-17
Average 90 stars, based on 1 article reviews
Triton + 48 Channel Patch Clamp Amplifier, supplied by Tecella LLC, 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/patch+clamp+microelectrode+amplifier/triton+48+channel+patch+clamp+amplifier/pmc04014142-25-11-17
Average 90 stars, based on 1 article reviews
triton + 48-channel patch clamp amplifier - by Bioz Stars,
2026-10
90/100 stars
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Microelectrode Array:Article Title: Simultaneous study of subcellular exocytosis with individually addressable multiple microelectrodes. Article Snippet: We report the application of individually addressable microelectrode arrays (MEAs) to study the heterogeneity of cell exocytosis at the subcellular level.. Multiple subcellular-size electrodes are covered by a single PC12 cell for the investigation of subcellular exocytosis.. PC12 cells have been seeded and cultured on top of three kinds of MEAs containing 16, 25, or 36 square microelectrodes (4 mm width in a 4 by 4 MEA, 3 mm width in a 5 by 5 MEA, 2 mm width in a 6 by 6 MEA). Article Title: Carbon-ring microelectrode arrays for electrochemical imaging of single cell exocytosis: fabrication and characterization. Article Snippet: Electrochemical recordings of exocytotic events from single PC12 cells were performed on an inverted microscope (IX71, Olympus) using a Article Title: Stable lipid bilayers based on micro- and nano-fabrication as a platform for recording ion-channel activities. Article Snippet: † To whom correspondence should be addressed.. E-mail: ahirano@bme.tohoku.ac.jp Article Title: Spatial Resolution of Single-Cell Exocytosis by Microwell-Based Individually Addressable Thin Film Ultramicroelectrode Arrays Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Lithographic Microfabrication of a 16-Electrode Array on a Probe Tip for High Spatial Resolution Electrochemical Localization of Exocytosis. Article Snippet: We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe consisting of 16 platinum band electrodes placed on top of a supporting borosilicate glass substrate.. These 1.2 μm wide electrodes were tightly packed and positioned parallel in two opposite rows within a 20 μm × 25 μm square area and with a distance less than 10 μm from the edge of the glass substrate.. We demonstrate the ability to control and place the probe in close proximity to the surface of adherent bovine chromaffin cells and to amperometrically record single exocytosis release events with high spatiotemporal resolution. Article Title: Spatial resolution of single-cell exocytosis by microwell-based individually addressable thin film ultramicroelectrode arrays. Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Toward cell-inspired materials that feel: measurements and modeling of mechanotransduction in droplet-based, multi-membrane arrays. Article Snippet: The droplet interface bilayer (DIB)was recently used to show that a 5 nm thick lipidmembrane placed near a vibrating synthetic hair could transduce hairmotion into electrical current.. Herein, we study for the first timemechanoelectrical transduction of hairmotion usingmulti-membraneDIB arrays formedwithmore than 2 droplets connected in series, andwe introduce a transductionmodel to investigate how airflow across the hair generates current in amembrane-based hair cell.. Measurements of sensing currents across everymembrane in serial chains of up to 5 connected droplets demonstrate that perturbation of a single hair creates vibrations that propagate across several droplets, allowing formembranes that are not directly attached to the hair to still transduce itsmotion. Patch Clamp:Article Title: Simultaneous study of subcellular exocytosis with individually addressable multiple microelectrodes. Article Snippet: We report the application of individually addressable microelectrode arrays (MEAs) to study the heterogeneity of cell exocytosis at the subcellular level.. Multiple subcellular-size electrodes are covered by a single PC12 cell for the investigation of subcellular exocytosis.. PC12 cells have been seeded and cultured on top of three kinds of MEAs containing 16, 25, or 36 square microelectrodes (4 mm width in a 4 by 4 MEA, 3 mm width in a 5 by 5 MEA, 2 mm width in a 6 by 6 MEA). Article Title: Carbon-ring microelectrode arrays for electrochemical imaging of single cell exocytosis: fabrication and characterization. Article Snippet: Electrochemical recordings of exocytotic events from single PC12 cells were performed on an inverted microscope (IX71, Olympus) using a Article Title: Stable lipid bilayers based on micro- and nano-fabrication as a platform for recording ion-channel activities. Article Snippet: † To whom correspondence should be addressed.. E-mail: ahirano@bme.tohoku.ac.jp Article Title: Spatial Resolution of Single-Cell Exocytosis by Microwell-Based Individually Addressable Thin Film Ultramicroelectrode Arrays Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Lithographic Microfabrication of a 16-Electrode Array on a Probe Tip for High Spatial Resolution Electrochemical Localization of Exocytosis. Article Snippet: We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe consisting of 16 platinum band electrodes placed on top of a supporting borosilicate glass substrate.. These 1.2 μm wide electrodes were tightly packed and positioned parallel in two opposite rows within a 20 μm × 25 μm square area and with a distance less than 10 μm from the edge of the glass substrate.. We demonstrate the ability to control and place the probe in close proximity to the surface of adherent bovine chromaffin cells and to amperometrically record single exocytosis release events with high spatiotemporal resolution. Article Title: Spatial resolution of single-cell exocytosis by microwell-based individually addressable thin film ultramicroelectrode arrays. Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Toward cell-inspired materials that feel: measurements and modeling of mechanotransduction in droplet-based, multi-membrane arrays. Article Snippet: The droplet interface bilayer (DIB)was recently used to show that a 5 nm thick lipidmembrane placed near a vibrating synthetic hair could transduce hairmotion into electrical current.. Herein, we study for the first timemechanoelectrical transduction of hairmotion usingmulti-membraneDIB arrays formedwithmore than 2 droplets connected in series, andwe introduce a transductionmodel to investigate how airflow across the hair generates current in amembrane-based hair cell.. Measurements of sensing currents across everymembrane in serial chains of up to 5 connected droplets demonstrate that perturbation of a single hair creates vibrations that propagate across several droplets, allowing formembranes that are not directly attached to the hair to still transduce itsmotion. Inverted Microscopy:Article Title: Simultaneous study of subcellular exocytosis with individually addressable multiple microelectrodes. Article Snippet: We report the application of individually addressable microelectrode arrays (MEAs) to study the heterogeneity of cell exocytosis at the subcellular level.. Multiple subcellular-size electrodes are covered by a single PC12 cell for the investigation of subcellular exocytosis.. PC12 cells have been seeded and cultured on top of three kinds of MEAs containing 16, 25, or 36 square microelectrodes (4 mm width in a 4 by 4 MEA, 3 mm width in a 5 by 5 MEA, 2 mm width in a 6 by 6 MEA). Article Title: Carbon-ring microelectrode arrays for electrochemical imaging of single cell exocytosis: fabrication and characterization. Article Snippet: Electrochemical recordings of exocytotic events from single PC12 cells were performed on an inverted microscope (IX71, Olympus) using a Article Title: Stable lipid bilayers based on micro- and nano-fabrication as a platform for recording ion-channel activities. Article Snippet: † To whom correspondence should be addressed.. E-mail: ahirano@bme.tohoku.ac.jp Article Title: Spatial Resolution of Single-Cell Exocytosis by Microwell-Based Individually Addressable Thin Film Ultramicroelectrode Arrays Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Lithographic Microfabrication of a 16-Electrode Array on a Probe Tip for High Spatial Resolution Electrochemical Localization of Exocytosis. Article Snippet: We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe consisting of 16 platinum band electrodes placed on top of a supporting borosilicate glass substrate.. These 1.2 μm wide electrodes were tightly packed and positioned parallel in two opposite rows within a 20 μm × 25 μm square area and with a distance less than 10 μm from the edge of the glass substrate.. We demonstrate the ability to control and place the probe in close proximity to the surface of adherent bovine chromaffin cells and to amperometrically record single exocytosis release events with high spatiotemporal resolution. Article Title: Spatial resolution of single-cell exocytosis by microwell-based individually addressable thin film ultramicroelectrode arrays. Article Snippet: Single-cell exocytosis was recorded from multiple microelectrodes by use of a Article Title: Toward cell-inspired materials that feel: measurements and modeling of mechanotransduction in droplet-based, multi-membrane arrays. Article Snippet: The droplet interface bilayer (DIB)was recently used to show that a 5 nm thick lipidmembrane placed near a vibrating synthetic hair could transduce hairmotion into electrical current.. Herein, we study for the first timemechanoelectrical transduction of hairmotion usingmulti-membraneDIB arrays formedwithmore than 2 droplets connected in series, andwe introduce a transductionmodel to investigate how airflow across the hair generates current in amembrane-based hair cell.. Measurements of sensing currents across everymembrane in serial chains of up to 5 connected droplets demonstrate that perturbation of a single hair creates vibrations that propagate across several droplets, allowing formembranes that are not directly attached to the hair to still transduce itsmotion. |