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Neuralynx inc digital lynx hardware
Digital Lynx Hardware, supplied by Neuralynx 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/digital+lynx+system/digital+lynx+sx+hardware/pmc12274065-241-9-15
Average 90 stars, based on 1 article reviews
digital lynx hardware - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Amplification:

Article Title: Sequential activation of lateral hypothalamic neuronal populations during feeding and their assembly by gamma oscillations
Article Snippet: Silicon probes were connected to a Neuralynx preamplifier to reduce cable movement artifacts. .. Signals were amplified, bandpass filtered (1 Hz–8 kHz), and acquired continuously at 32 kHz using Digital Lynx system (Neuralynx). ..

Article Title: Selective reactivation of value- and place-dependent information during sharp-wave ripples in the intermediate and dorsal hippocampus
Article Snippet: .. Neural activity was amplified (1000 to 10,000 times) and digitized (sampling frequency, 32 kHz; filtered at 600 to 6000 Hz for spiking data and 0.1 to 1000 Hz for LFP) using a Digital Lynx system (NeuraLynx). .. The rat’s position and head direction were measured using an array of red and green LEDs attached to a custom headstage complex coupled to a preamplifier (HS-36; NeuraLynx).

Article Title: Integration of rate and phase codes by hippocampal cell-assemblies supports flexible encoding of spatiotemporal context
Article Snippet: .. Tetrode signals were amplified by headstages (HS-36, Neuralynx, MT, USA) and relayed via fine-wire tethers to a Digital Lynx system (Neuralynx), which sampled thresholded extracellular action potentials at 32 kHz (filtered at 600–6000 Hz) and continuous local field potentials (LFP) at 2 kHz (filtered at 0.1–475 Hz) using the Cheetah software package (Neuralynx) running on a desktop PC. ..

Activity Assay:

Article Title: Selective reactivation of value- and place-dependent information during sharp-wave ripples in the intermediate and dorsal hippocampus
Article Snippet: .. Neural activity was amplified (1000 to 10,000 times) and digitized (sampling frequency, 32 kHz; filtered at 600 to 6000 Hz for spiking data and 0.1 to 1000 Hz for LFP) using a Digital Lynx system (NeuraLynx). .. The rat’s position and head direction were measured using an array of red and green LEDs attached to a custom headstage complex coupled to a preamplifier (HS-36; NeuraLynx).

Sampling:

Article Title: Selective reactivation of value- and place-dependent information during sharp-wave ripples in the intermediate and dorsal hippocampus
Article Snippet: .. Neural activity was amplified (1000 to 10,000 times) and digitized (sampling frequency, 32 kHz; filtered at 600 to 6000 Hz for spiking data and 0.1 to 1000 Hz for LFP) using a Digital Lynx system (NeuraLynx). .. The rat’s position and head direction were measured using an array of red and green LEDs attached to a custom headstage complex coupled to a preamplifier (HS-36; NeuraLynx).

Software:

Article Title: Attenuated task-responsive representations of hippocampal place cells induced by amyloid-beta accumulation.
Article Snippet: Alzheimer’s disease (AD) is a typical neurodegenerative disease featuring deficits in spatial memory, which relies on spatial representations by hippocampal place cells.. Place cells exhibit task-responsive representation to support memory encoding and retrieval processes.. Yet, it remains unclear how this task-responsive spatial representation was interrupted under AD pathologies.

Article Title: Hippocampal Place Cell Sequences Are Impaired in a Rat Model of Fragile X Syndrome
Article Snippet: .. Data were acquired using a Digital Lynx system and Cheetah recording software (NeuraLynx). ..

Article Title: Integration of rate and phase codes by hippocampal cell-assemblies supports flexible encoding of spatiotemporal context
Article Snippet: .. Tetrode signals were amplified by headstages (HS-36, Neuralynx, MT, USA) and relayed via fine-wire tethers to a Digital Lynx system (Neuralynx), which sampled thresholded extracellular action potentials at 32 kHz (filtered at 600–6000 Hz) and continuous local field potentials (LFP) at 2 kHz (filtered at 0.1–475 Hz) using the Cheetah software package (Neuralynx) running on a desktop PC. ..

other:

Article Title: Novelty triggers time-dependent theta oscillatory dynamics in cortical-hippocampal-midbrain circuitry.
Article Snippet: A Digital Lynx system (Neuralynx, Bozeman, MT) was used to amplify, band-pass filter (1–1000 Hz) and digitize the electrode recordings.

Multiplexing:

Article Title: Distinct Olfactory Bulb-Cortex Neural Circuits Coordinate Cognitive Function in Parkinson’s Disease
Article Snippet: Each tetrode assembly comprises 8 polyimide-coated nichrome wires connected to a 32-channel electrode interface board (EIB-32, Neuralynx). .. Following a 3-week implantation period, neural signals during behavioral tests were digitized utilizing the Neuralynx Digital Lynx system through a multiplexing digital headstage. .. Offline spike sorting was conducted to discriminate single units using the Plexon software.



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In vivo FSCV and <t>EPhys</t> measurements from s-μIP from task-performing monkey T. (A) FSCV data collected from two neighboring sites using a dual-channel s-μIP, showing single-trial measurements as the monkey performed a forced choice large reward trial in the shape task (sites c8dg and c8ds: 483 days postimplant). Color plot shows <t>clear</t> <t>dopamine</t> redox current (i.e., color changes ∼0.6 and −0.2 V). PCA extracted dopamine concentration change ([ΔDA]) is plotted below the color plot and highlights changes around task events (e.g., increases in both channels after the value cue, V). (B) Single-trial LFP signals measured as monkey performed a large reward trial (top panel) in the direction task, with time plotted relative to value cue display at 0 s (site c3bs-c3a: 496 days postimplant). Top inset displays a close-up of the LFP signal where β bursts are visible (orange traces). The bottom panel is the β-band power to highlight task relevant changes in β signaling. For all figure panels, C indicates central cue, V is value cue display, and RW is reward outcome.
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In vivo FSCV and <t>EPhys</t> measurements from s-μIP from task-performing monkey T. (A) FSCV data collected from two neighboring sites using a dual-channel s-μIP, showing single-trial measurements as the monkey performed a forced choice large reward trial in the shape task (sites c8dg and c8ds: 483 days postimplant). Color plot shows <t>clear</t> <t>dopamine</t> redox current (i.e., color changes ∼0.6 and −0.2 V). PCA extracted dopamine concentration change ([ΔDA]) is plotted below the color plot and highlights changes around task events (e.g., increases in both channels after the value cue, V). (B) Single-trial LFP signals measured as monkey performed a large reward trial (top panel) in the direction task, with time plotted relative to value cue display at 0 s (site c3bs-c3a: 496 days postimplant). Top inset displays a close-up of the LFP signal where β bursts are visible (orange traces). The bottom panel is the β-band power to highlight task relevant changes in β signaling. For all figure panels, C indicates central cue, V is value cue display, and RW is reward outcome.
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Image Search Results


In vivo FSCV and EPhys measurements from s-μIP from task-performing monkey T. (A) FSCV data collected from two neighboring sites using a dual-channel s-μIP, showing single-trial measurements as the monkey performed a forced choice large reward trial in the shape task (sites c8dg and c8ds: 483 days postimplant). Color plot shows clear dopamine redox current (i.e., color changes ∼0.6 and −0.2 V). PCA extracted dopamine concentration change ([ΔDA]) is plotted below the color plot and highlights changes around task events (e.g., increases in both channels after the value cue, V). (B) Single-trial LFP signals measured as monkey performed a large reward trial (top panel) in the direction task, with time plotted relative to value cue display at 0 s (site c3bs-c3a: 496 days postimplant). Top inset displays a close-up of the LFP signal where β bursts are visible (orange traces). The bottom panel is the β-band power to highlight task relevant changes in β signaling. For all figure panels, C indicates central cue, V is value cue display, and RW is reward outcome.

Journal: ACS Chemical Neuroscience

Article Title: Microinvasive Probes for Monitoring Electrical and Chemical Neural Activity in Nonhuman Primates

doi: 10.1021/acschemneuro.5c00071

Figure Lengend Snippet: In vivo FSCV and EPhys measurements from s-μIP from task-performing monkey T. (A) FSCV data collected from two neighboring sites using a dual-channel s-μIP, showing single-trial measurements as the monkey performed a forced choice large reward trial in the shape task (sites c8dg and c8ds: 483 days postimplant). Color plot shows clear dopamine redox current (i.e., color changes ∼0.6 and −0.2 V). PCA extracted dopamine concentration change ([ΔDA]) is plotted below the color plot and highlights changes around task events (e.g., increases in both channels after the value cue, V). (B) Single-trial LFP signals measured as monkey performed a large reward trial (top panel) in the direction task, with time plotted relative to value cue display at 0 s (site c3bs-c3a: 496 days postimplant). Top inset displays a close-up of the LFP signal where β bursts are visible (orange traces). The bottom panel is the β-band power to highlight task relevant changes in β signaling. For all figure panels, C indicates central cue, V is value cue display, and RW is reward outcome.

Article Snippet: During each recording session, a 4 channel FSCV system was used to record dopamine from a subset of implanted electrodes, and an EPhys system (Neuralynx, Digital Lynx SX) was connected to all remaining electrodes, as done in previously reported experiments., The Ag/AgCl electrodes implanted above the epidural tissue and inside the EPhys were connected to the FSCV system ground and used as the reference for both the FSCV and EPhys recordings.

Techniques: In Vivo, Concentration Assay