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Meloy Laboratories multielectrode recordings
Multielectrode Recordings, supplied by Meloy Laboratories, 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/multielectrode+array/multielectrode+arrays/pmc04122724-736-14-14
Average 90 stars, based on 1 article reviews
multielectrode recordings - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Activity Assay:

Article Title: The Challenges of Integrating Behavioral and Neural Data: Bridging and Breaking Boundaries Across Levels of Analysis
Article Snippet: .. For instance, using implanted electrode arrays, the experimenter can measure the real-time activity of hundreds of neurons and train the operant control of brain responses to move external devices (e.g., Schwarz, Lebedev, Hanson, Dimitrov, Lehew, Meloy, & Nicolelis, 2014 ). ..

Article Title: Ultraflexible Neural Probes for Multidirectional Neuronal Activity Recordings over Large Spatial and Temporal Scales.
Article Snippet: The widespread dissemination of ultraflexible neural probes depends on the development of advanced materials and implementation strategies that can allow reliable implantation of ultraflexible neural probes into targeted brain regions, especially deep and difficult-to-access brain regions.. Here, we report ultraflexible and multidirectional probes that are encapsulated in a biocompatible polymer alloy with controllable dissolution kinetics.. Our probes can be reliably implanted into targeted brain regions over large spatial scales, including deep hindbrain regions that are anatomically difficult-to-access in vivo.

Article Title: Power-integrated, wireless neural recording systems on the cranium using a direct printing method for deep-brain analysis
Article Snippet: .. D. A. Schwarz, M. A. Lebedev, T. L. Hanson, D. F. Dimitrov, G. Lehew, J. Meloy, S. Rajangam, V. Subramanian, P. J. Ifft, Z. Li, A. Ramakrishnan, A. Tate, K. Z. Zhuang, M. A. L. Nicolelis, Chronic, wireless recordings of large-scale brain activity in freely moving rhesus monkeys. ..

Article Title: A markerless platform for ambulatory systems neuroscience.
Article Snippet: Motor systems neuroscience seeks to understand how the brain controls movement.. To minimize confounding variables, large-animal studies typically constrain body movement from areas not under observation, ensuring consistent, repeatable behaviors.. Such studies have fueled decades of research, but they may be artificially limiting the richness of neural data observed, preventing generalization to more natural movements and settings.

Article Title: Intracortical recording interfaces: current challenges to chronic recording function.
Article Snippet: Brain Computer Interfaces (BCIs) offer significant hope to tetraplegic and paraplegic individuals.. This technology relies on extracting and translating motor intent to facilitate control of a computer cursor or to enable fine control of an external assistive device such as a prosthetic limb.. Intracortical recording interfaces (IRIs) are critical components of BCIs and consist of arrays of penetrating electrodes that are implanted into the motor cortex of the brain.

Control:

Article Title: The Challenges of Integrating Behavioral and Neural Data: Bridging and Breaking Boundaries Across Levels of Analysis
Article Snippet: .. For instance, using implanted electrode arrays, the experimenter can measure the real-time activity of hundreds of neurons and train the operant control of brain responses to move external devices (e.g., Schwarz, Lebedev, Hanson, Dimitrov, Lehew, Meloy, & Nicolelis, 2014 ). ..

Microelectrode Array:

Article Title: Cortical and thalamic contributions to response dynamics across layers of the primary somatosensory cortex during tactile discrimination
Article Snippet: .. The authors thank James Meloy for microelectrode array manufacturing, Laura Oliveira, Terry Jones, and Susan Halkiotis for miscellaneous assistance. ..

other:

Article Title: Embedding a Panoramic Representation of Infrared Light in the Adult Rat Somatosensory Cortex through a Sensory Neuroprosthesis
Article Snippet: [ PubMed ] [ Cross Ref ] Wiest M, Thomson E, Meloy J. Multielectrode recordings in the somatosensory system.

Software:

Article Title: Cortical neurons multiplex reward-related signals along with sensory and motor information.
Article Snippet: .. We thank G. Lehew and J. Meloy for the design and production of the multielectrode arrays used in this study; D. Dimitrov and M. Krucoff for conducting implantation surgeries; Z. Li for expertise with the BMI Software; T. Phillips for animal care and logistical matters; T. Jones, L. Oliveira, and S. Halkiotis for administrative assistance; and S. Halkiotis for manuscript review. ..



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Image Search Results


Day/night differences in assay of cortical feedforward inhibition, in vivo. Ai , Schematic showing the experimental arrangement of the optic fiber and the multielectrode arrays in the brain slice. Aii , Example traces of local field potentials during a train of stimuli and the derived current source densities. Aiii , Enlarged view of CSDs for the first two stimuli and a color-coded representation of the CSDs, showing that the sink-source sequence is generally found only in a single electrode in the supragranular layers. B , Color-coded representation of each stimulus in a train of 10 (delivered at 10 Hz). C , The peak of the inhibitory (“source”) current for data collected from ZT5 (red) and ZT17 (black) brain slices, showing highly significant differences at the two times, both for the absolute peak values and ( Ci ) the pattern of adaptation from the first pulse in the train ( Cii ).

Journal: eNeuro

Article Title: Intrinsic Cell-Class–Specific Modulation of Intracellular Chloride Levels and Inhibitory Function, in Cortical Networks, between Day and Night

doi: 10.1523/ENEURO.0325-25.2025

Figure Lengend Snippet: Day/night differences in assay of cortical feedforward inhibition, in vivo. Ai , Schematic showing the experimental arrangement of the optic fiber and the multielectrode arrays in the brain slice. Aii , Example traces of local field potentials during a train of stimuli and the derived current source densities. Aiii , Enlarged view of CSDs for the first two stimuli and a color-coded representation of the CSDs, showing that the sink-source sequence is generally found only in a single electrode in the supragranular layers. B , Color-coded representation of each stimulus in a train of 10 (delivered at 10 Hz). C , The peak of the inhibitory (“source”) current for data collected from ZT5 (red) and ZT17 (black) brain slices, showing highly significant differences at the two times, both for the absolute peak values and ( Ci ) the pattern of adaptation from the first pulse in the train ( Cii ).

Article Snippet: A Neuronexus multielectrode probe, with a single recording site on each of 8–16 prongs (100 μm separation of prongs), was inserted into the brain slice at its dorsal pole, oriented orthogonal to the pial surface ( Fig. 5 A ).

Techniques: Inhibition, In Vivo, Slice Preparation, Derivative Assay, Sequencing