computer-controlled filter wheel sutter instruments novato, ca Search Results


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Sutter Instrument Company ultrafine computer controlled micromanipula tor
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Sutter Instrument Company three axis micromanipulator
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Sutter Instrument Company micromanipulator
Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 <t>micromanipulator,</t> 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry
Micromanipulator, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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VBM Medizintechnik computer-controlled air compressor
Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 <t>micromanipulator,</t> 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry
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MicroFluidic Systems computer-controlled solenoids
Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 <t>micromanipulator,</t> 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry
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99
Eppendorf AG computer controlled micromanipulator
Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 <t>micromanipulator,</t> 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry
Computer Controlled Micromanipulator, supplied by Eppendorf AG, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
Bio-Rad computer controlled electrophoresis power supply
Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 <t>micromanipulator,</t> 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry
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Image Search Results


Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 micromanipulator, 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry

Journal: Pflugers Archiv : European journal of physiology

Article Title: Temporal and spatial summation of laser heat stimuli in cultured nociceptive neurons of the rat.

doi: 10.1007/s00424-022-02728-1

Figure Lengend Snippet: Fig. 1 Experimental setup for investigation of diode laser-induced calcium transients in cultured nociceptive neurons of rats. Laser pulses were applied from above through the cover glasses directly to the neurons that adhere to the back of the cover glasses. Extra- cellular solution was perfused below the neurons through the small space between the cover glass and the bottom of the culture dish. A FURA-2 loaded cells as visualized in the usual XY-plane normally used in calcium imaging experiments (left) as well as after three- dimensional XYZ-reconstruction illustrating the cells hanging upside down from the cover glass (right). Note one mid-size DRG neuron surrounded by several smaller satellite cells. B Sketch of the experi- mental setup; dotted lines indicate magnified inset demonstrating the laser stimulation of hanging cells from above; red line indicates weaker refraction of the invisible NIR laser as compared to the vis- ible pilot laser (grey line). C Photography of the experimental set-up. 1 collimator with glass fiber, 2 micromanipulator, 3 culture dish with cover glass, 4 inlet, 5 outlet, 6 extraction system to keep the surface of the cover glass dry

Article Snippet: The fiber collimator that focused the two laser radiations was moved by a computer-controlled motorized micromanipulator (Sutter MP-285, Sutter Instruments, Novato, CA, USA) in 40-nm steps.

Techniques: Cell Culture, Imaging, Extraction