fiber patch cable Search Results


90
Multimode Fiber Optics Inc 200-μm nir optical fiber
200 μm Nir Optical Fiber, supplied by Multimode Fiber Optics 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/fiber+patch+cable/0+6mm+single+fiber+patch+cable+terminated+collimator+assembly/pm18679495-319-13-16
Average 90 stars, based on 1 article reviews
200-μm nir optical fiber - by Bioz Stars, 2026-09
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90
Princetel Inc dual fiber optic patch cable
Dual Fiber Optic Patch Cable, supplied by Princetel 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/fiber+patch+cable/dual+fiber+optic+patch+cable/10__7554_slash_elife__64575-394-15-28
Average 90 stars, based on 1 article reviews
dual fiber optic patch cable - by Bioz Stars, 2026-09
90/100 stars
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90
plexon inc armored patch fiber cables
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Armored Patch Fiber Cables, supplied by plexon 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/fiber+patch+cable/armored+patch+fiber+cables/pmc04217045-126-11-20
Average 90 stars, based on 1 article reviews
armored patch fiber cables - by Bioz Stars, 2026-09
90/100 stars
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90
NEWDOON Inc optical cord
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Optical Cord, supplied by NEWDOON 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/fiber+patch+cable/fiber+patch+cable/bio_rxiv__2024__08__14__607152-98-2-3
Average 90 stars, based on 1 article reviews
optical cord - by Bioz Stars, 2026-09
90/100 stars
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90
NEWDOON Inc rotary joint fiber patch cable
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Rotary Joint Fiber Patch Cable, supplied by NEWDOON 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/fiber+patch+cable/rotary+joint+fiber+patch+cable/pm39366937-375-17-22
Average 90 stars, based on 1 article reviews
rotary joint fiber patch cable - by Bioz Stars, 2026-09
90/100 stars
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90
Precision Fiber Products Inc multi-mode fiber optic patch cable
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Multi Mode Fiber Optic Patch Cable, supplied by Precision Fiber Products 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/fiber+patch+cable/multi+mode+fiber+optic+patch+cable/pmc06349724-71-3-17
Average 90 stars, based on 1 article reviews
multi-mode fiber optic patch cable - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
Multimode Fiber Optics Inc single-fiber patch cable terminated collimator assembly
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Single Fiber Patch Cable Terminated Collimator Assembly, supplied by Multimode Fiber Optics 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/fiber+patch+cable/single+fiber+patch+cable+terminated+collimator+assembly/pmc03778673-62-21-23
Average 90 stars, based on 1 article reviews
single-fiber patch cable terminated collimator assembly - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
MKS Instruments chalcogenide optical fiber patch cables
NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA <t>armored</t> <t>patch</t> <t>fiber</t> cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.
Chalcogenide Optical Fiber Patch Cables, supplied by MKS Instruments, 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/fiber+patch+cable/chalcogenide+optical+fiber+patch+cables/pm35596502-174-25-30
Average 90 stars, based on 1 article reviews
chalcogenide optical fiber patch cables - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

Image Search Results


NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA armored patch fiber cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.

Journal: Frontiers in Neuroengineering

Article Title: Real-time in vivo optogenetic neuromodulation and multielectrode electrophysiologic recording with NeuroRighter

doi: 10.3389/fneng.2014.00040

Figure Lengend Snippet: NeuroRighter software and hardware for calibration, optical stimulation, and recording. NeuroRighter’s main application window enables real-time isolation of single units (A) and local field potentials (LFP; B ) from multielectrode arrays, with real-time visualization of the electrophysiologic response to optical stimulus ( B , magenta arrow). (C) A comparison between the mean (dot) and SD (error bars) normalized output of a 473 nm blue DPSS Laser (Shanghai Dream Laser; red) and 465 nm blue LED (Plexon, Inc.) output (black). Note the high variance associated with the laser output as compared to the LED (present for the LED but smaller than the data point marker), and the non-linear nature of the laser output. (D) Plexon LED Driver, 465 nm blue LED module, and 200 μm 0.67 NA armored patch fiber cable. (E) Custom-made optical ferrules utilizing 200 μm diameter 0.37 NA fiber optic. (F) 3D-printed Intensity Chamber design (top) and fabricated with accompanying photodiode (bottom). Custom-designed and fabricated ferrules (E) plug into the chamber ( F , bottom right) which overlays the S121C detector ( F , bottom left). (G) Labview-based program for Automated Ferrule Intensity Calibration (C) . (H) A 3D-printed implantation post has multiple modules to enable ferrule implantation alone ( H , bottom right) or coupled to an array (H , top right, J) . (I) TDT 16-channel MEA, which was implanted in the dorsal hippocampus targeting CA1 and CA3 simultaneously. (J) A H-style NeuroNexus 16 channel shank array was manually glued to a calibrated ferrule (K) , enabling simultaneous stimulation, and recording from the same target site.

Article Snippet: To stimulate awake and behaving animals, calibrated ferrules were connected via armored patch fiber cables (200 μm diameter, 0.67 NA, Plexon).

Techniques: Software, Isolation, Marker