differential a-c amplifier model 1700 (A-M Systems)
90
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A-M Systems
differential a-c amplifier model 1700
Differential A C Amplifier Model 1700, supplied by A-M Systems, 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/differential+a-c+amplifier+1700/differential+ac+amplifier+model+1700/pmc10238090-271-12-17
Average 90 stars, based on 1 article reviews
Differential A C Amplifier Model 1700, supplied by A-M Systems, 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/differential+a-c+amplifier+1700/differential+ac+amplifier+model+1700/pmc10238090-271-12-17
Average 90 stars, based on 1 article reviews
differential a-c amplifier model 1700 - by Bioz Stars,
2026-09
90/100 stars
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Expressing:Article Title: Discrete evaluative and premotor circuits enable vocal learning in songbirds Article Snippet: A subset of the birds used for these experiments were tested for local optogenetic responses in LMAN with a tungsten electrode, impendence: 500 kOhm to 1.5 MOhm, (MicroProbes Inc.) coupled to a fiberoptic cable (ThorLabs, 200um diameter core) through which 20–100 millisecond pulses of light were delivered while neural activity was simultaneously recorded ( Article Title: Neural dynamics underlying birdsong practice and performance Article Snippet: After waiting ~21 days to allow for viral expression, 6 of the 12 birds (3 CAG, 3 CamKII) were tested for terminal field optogenetic responses in sBG with an optrode through which 50- to 500-ms pulses of light were delivered and neural activity was recorded simultaneously ( Article Title: Divergent projections from locus coeruleus to the corticobasal ganglia system and ventral tegmental area of the adult male zebra finch. Article Snippet: Funding information National Institutes of Health, Grant/Award Numbers: R01NS099288, R01NS118424; George Barth Geller Fund; Broad Predoctoral Fellowship Abstract The locus coeruleus (LC) is a small noradrenergic brainstemnucleus that plays a central role in regulating arousal, attention, and performance.. In the mammalian brain, individual LC neurons make divergent axonal projections to different brain regions, which are distinguished in part by which noradrenaline (NA) receptor subtypes they express.. Here, we sought to determinewhether similar organizational features characterize LC projections to corticobasal ganglia (CBG) circuitry in the zebra finch song system, with a focus on the basal ganglia nucleus Area X, the thalamic nucleus DLM, as well as the cortical nuclei HVC, LMAN, and RA. Article Title: Divergent projections from Locus Coeruleus to the cortico-basal ganglia system and ventral tegmental area of the zebra finch Article Snippet: The appropriate depth of anatomical targets was confirmed via electrophysiological recording when available ( Article Title: A common neural circuit mechanism for internally guided and externally reinforced forms of motor learning Article Snippet: Using surgical procedures and stereotaxic coordinates described above, craniotomies were made over Area X and neural recordings were made to confirm its Activity Assay:Article Title: Discrete evaluative and premotor circuits enable vocal learning in songbirds Article Snippet: A subset of the birds used for these experiments were tested for local optogenetic responses in LMAN with a tungsten electrode, impendence: 500 kOhm to 1.5 MOhm, (MicroProbes Inc.) coupled to a fiberoptic cable (ThorLabs, 200um diameter core) through which 20–100 millisecond pulses of light were delivered while neural activity was simultaneously recorded ( Article Title: Neural dynamics underlying birdsong practice and performance Article Snippet: After waiting ~21 days to allow for viral expression, 6 of the 12 birds (3 CAG, 3 CamKII) were tested for terminal field optogenetic responses in sBG with an optrode through which 50- to 500-ms pulses of light were delivered and neural activity was recorded simultaneously ( Article Title: Divergent projections from locus coeruleus to the corticobasal ganglia system and ventral tegmental area of the adult male zebra finch. Article Snippet: Funding information National Institutes of Health, Grant/Award Numbers: R01NS099288, R01NS118424; George Barth Geller Fund; Broad Predoctoral Fellowship Abstract The locus coeruleus (LC) is a small noradrenergic brainstemnucleus that plays a central role in regulating arousal, attention, and performance.. In the mammalian brain, individual LC neurons make divergent axonal projections to different brain regions, which are distinguished in part by which noradrenaline (NA) receptor subtypes they express.. Here, we sought to determinewhether similar organizational features characterize LC projections to corticobasal ganglia (CBG) circuitry in the zebra finch song system, with a focus on the basal ganglia nucleus Area X, the thalamic nucleus DLM, as well as the cortical nuclei HVC, LMAN, and RA. Article Title: Divergent projections from Locus Coeruleus to the cortico-basal ganglia system and ventral tegmental area of the zebra finch Article Snippet: The appropriate depth of anatomical targets was confirmed via electrophysiological recording when available ( Article Title: A common neural circuit mechanism for internally guided and externally reinforced forms of motor learning Article Snippet: Using surgical procedures and stereotaxic coordinates described above, craniotomies were made over Area X and neural recordings were made to confirm its |