channel wireless neuracle system Search Results


90
Triangle Biosystems dual-channel wireless neural stimulation headstage systems
Dual Channel Wireless Neural Stimulation Headstage Systems, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/wireless+neuronal+recording+system/10__1063_slash_1__4919855-114-12-0
Average 90 stars, based on 1 article reviews
dual-channel wireless neural stimulation headstage systems - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Multi Channel Systems GmbH wireless recording system wirelss-2100-system
Wireless Recording System Wirelss 2100 System, supplied by Multi Channel Systems 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/channel+wireless+neuracle+system/wireless+recording+system+wirelss+2100+system/pmc09547075-435-10-14
Average 90 stars, based on 1 article reviews
wireless recording system wirelss-2100-system - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Triangle Biosystems 32-channel wireless 10× gain headstage
32 Channel Wireless 10× Gain Headstage, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/31+channel+wireless+headstage/pmc11800750-141-6-11
Average 90 stars, based on 1 article reviews
32-channel wireless 10× gain headstage - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Triangle Biosystems stimulation system tbsi s-series
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
Stimulation System Tbsi S Series, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/stimulation+system+tbsi+s+series/pmc03809915-386-8-10
Average 90 stars, based on 1 article reviews
stimulation system tbsi s-series - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

86
Neuracle Technology multi channel wireless transcranial electrical stimulation system
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
Multi Channel Wireless Transcranial Electrical Stimulation System, supplied by Neuracle Technology, 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/product/channel+wireless+neuracle+system/64+acquisition+acquisition+channel+data+eeg+electrical+equipment+equipment+neuracle+uses/pm41292510-94-7-13
Average 86 stars, based on 1 article reviews
multi channel wireless transcranial electrical stimulation system - by Bioz Stars, 2026-08
86/100 stars
  Buy from Supplier

90
Triangle Biosystems 64-channel wireless transmitter system
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
64 Channel Wireless Transmitter System, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/64+channel+wireless+transmitter+system/bio_rxiv__2021__09__14__460329-217-6-10
Average 90 stars, based on 1 article reviews
64-channel wireless transmitter system - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Triangle Biosystems 31 channel wireless system w32
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
31 Channel Wireless System W32, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/31+channel+wireless+system+w32/pm24847198-112-7-11
Average 90 stars, based on 1 article reviews
31 channel wireless system w32 - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Triangle Biosystems recording system tbsi w-series
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
Recording System Tbsi W Series, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/recording+system+tbsi+w+series/pmc03809915-386-23-25
Average 90 stars, based on 1 article reviews
recording system tbsi w-series - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Triangle Biosystems s-series 32-channel wireless neural stimulator system
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
S Series 32 Channel Wireless Neural Stimulator System, supplied by Triangle Biosystems, 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/channel+wireless+neuracle+system/s+series+32+channel+wireless+neural+stimulator+system/pmc03809915-395-19-18
Average 90 stars, based on 1 article reviews
s-series 32-channel wireless neural stimulator system - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Deuteron Tech 16- channel wireless neural-recording device 'neural logger' spikelog-16
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
16 Channel Wireless Neural Recording Device 'Neural Logger' Spikelog 16, supplied by Deuteron Tech, 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/channel+wireless+neuracle+system/wireless+neural+data+logging+system+neurolog+16/pmc09945993__pnas__2212418120__sapp-17-7-14
Average 90 stars, based on 1 article reviews
16- channel wireless neural-recording device 'neural logger' spikelog-16 - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Deuteron Tech wireless neural-recording device neural-logger 16-channels
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
Wireless Neural Recording Device Neural Logger 16 Channels, supplied by Deuteron Tech, 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/channel+wireless+neuracle+system/16+channel+neural+logger/pmc09433324-273-3-10
Average 90 stars, based on 1 article reviews
wireless neural-recording device neural-logger 16-channels - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

91
Ocean Optics ocean sr4
Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar <t>stimulation</t> referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.
Ocean Sr4, supplied by Ocean Optics, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/channel+wireless+neuracle+system/Ocean+SR4/custom%40sr-4%4010%2E1002%2Fadfm%2E202002644
Average 91 stars, based on 1 article reviews
ocean sr4 - by Bioz Stars, 2026-08
91/100 stars
  Buy from Supplier

Image Search Results


Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar stimulation referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.

Journal: Journal of neuroscience methods

Article Title: An inexpensive, charge-balanced rodent deep brain stimulation device: a step-by-step guide to its procurement and construction

doi: 10.1016/j.jneumeth.2013.08.003

Figure Lengend Snippet: Design A is designed to be plugged directly into a socket (363 plug, Plastics 1) cemented onto the subjects skull, it has no on/off switch. Switching the device on/off is achieved by shorting the power line switching the device on. Two pins connected by a short wire must be inserted into the contact housing during implantation (pins 1 and 2). The contacts of the stimulating electrodes (E363/6/SP, Plastics 1, pins 5 and 6) and the contacts for the current return path (“ground”) must be inserted into their respective positions in the contact housing (pins 3 and 4). Two contact positions (pins 3 and 4) connect with the battery ground for those using bipolar electrodes (E363/6/SP-2TW, Plastics 1). Only 1 (either will do) of these is necessary for monopolar stimulation referenced to a screw electrode (E363/20/SP, Plastics 1) implanted in the skull. Design B is designed to be carried on a rodent jacket and includes a dedicated on/off switch. Thus fewer connections are required in the electrode pedestal. When ordering the cable the connection diagram must also be sent to Plastics 1 to guarantee the correct connections.

Article Snippet: 10g) while much heavier than a similar commercial stimulation system (TBSI S-Series, 2 channel wireless neural stimulation system, 3.3g) is comparable with heavier recording devices (TBSI W-Series, 126 channel wireless neural recording system, 10g).

Techniques: Battery

This PCB has a footprint identical the device presented in figure 2. The circuit switches on/off via a miniature slide switch rather than through shorting contacts in the power trace. Thus care must be taken not to encapsulate the switch. (A) 3 channel 363-SL/3 cable (Plastics 1). (B) Device output: the white termination must be connected to ground. The other terminations are the stimulation channels. (C) The output solder pads are nested between the battery connectors. (D) The complete (unencapsulated) device. (E) Devices are prepared for attachment to the small rodent jackets by sticking the hooked side of adhesive hook-and-loop tape to the topmost surface of the device. The looped side of the hook-and-loop tape was stuck to the underside of the device to cushion the battery housings which would otherwise have been adjacent to the animals back. The devices then stick easily to the hook-and-loop material stitched into the rodent jacket. A 10 cent (€) coin is included for scale. Inset: switch positions.

Journal: Journal of neuroscience methods

Article Title: An inexpensive, charge-balanced rodent deep brain stimulation device: a step-by-step guide to its procurement and construction

doi: 10.1016/j.jneumeth.2013.08.003

Figure Lengend Snippet: This PCB has a footprint identical the device presented in figure 2. The circuit switches on/off via a miniature slide switch rather than through shorting contacts in the power trace. Thus care must be taken not to encapsulate the switch. (A) 3 channel 363-SL/3 cable (Plastics 1). (B) Device output: the white termination must be connected to ground. The other terminations are the stimulation channels. (C) The output solder pads are nested between the battery connectors. (D) The complete (unencapsulated) device. (E) Devices are prepared for attachment to the small rodent jackets by sticking the hooked side of adhesive hook-and-loop tape to the topmost surface of the device. The looped side of the hook-and-loop tape was stuck to the underside of the device to cushion the battery housings which would otherwise have been adjacent to the animals back. The devices then stick easily to the hook-and-loop material stitched into the rodent jacket. A 10 cent (€) coin is included for scale. Inset: switch positions.

Article Snippet: 10g) while much heavier than a similar commercial stimulation system (TBSI S-Series, 2 channel wireless neural stimulation system, 3.3g) is comparable with heavier recording devices (TBSI W-Series, 126 channel wireless neural recording system, 10g).

Techniques: Battery, Adhesive