servo controlled force actuator (Aurora Scientific)
86
Structured Review
Aurora Scientific
servo controlled force actuator
Servo Controlled Force Actuator, supplied by Aurora Scientific, 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/servo-controlled+force+actuator/constant+controlled+feedback+force+stimulator/pm38193160-95-6-9
Average 86 stars, based on 1 article reviews
Servo Controlled Force Actuator, supplied by Aurora Scientific, 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/servo-controlled+force+actuator/constant+controlled+feedback+force+stimulator/pm38193160-95-6-9
Average 86 stars, based on 1 article reviews
servo controlled force actuator - by Bioz Stars,
2026-09
86/100 stars
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Isolation:Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal or muscular/mucosal: probing with Article Title: Combined genetic and pharmacological inhibition of TRPV1 and P2X3 attenuates colorectal hypersensitivity and afferent sensitization Article Snippet: Probing and stretching were performed using a Article Title: Activation of Guanylate Cyclase-C Attenuates Stretch Responses and Sensitization of Mouse Colorectal Afferents Article Snippet: Muscular and M/M afferents both respond to stretch and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Experimental and computational evidence for an essential role of Na V 1.6 in spike initiation at stretch-sensitive colorectal afferent endings Article Snippet: Muscular and M/M afferents both respond to stretch, and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Peripheral GABA receptors regulate colonic afferent excitability and visceral nociception Article Snippet: After that, the isolated units were characterized as muscular colonic afferents according to their responses to probing with von Freylike nylon monofilaments (0.01, 0.4 and 1g) and circumferential stretch (0-170 mN, 58 s) using a Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal, or muscular/mucosal: probing with Article Title: Altered colorectal afferent function associated with TNBS-induced visceral hypersensitivity in mice Article Snippet: Receptive endings were localized as the site requiring the least stimulus intensity to evoke an action potential (i.e., stimulus threshold), after which they were tested for mechanosensitivity and classified as serosal, muscular, mucosal, muscular/mucosal, or mechanically insensitive afferents (MIAs) as previously described ( 10 ): probing with von Frey-like nylon monofilaments (0.4, 1, and 1.4 g force), mucosal stroking with In Vitro:Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal or muscular/mucosal: probing with Article Title: Combined genetic and pharmacological inhibition of TRPV1 and P2X3 attenuates colorectal hypersensitivity and afferent sensitization Article Snippet: Probing and stretching were performed using a Article Title: Activation of Guanylate Cyclase-C Attenuates Stretch Responses and Sensitization of Mouse Colorectal Afferents Article Snippet: Muscular and M/M afferents both respond to stretch and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Experimental and computational evidence for an essential role of Na V 1.6 in spike initiation at stretch-sensitive colorectal afferent endings Article Snippet: Muscular and M/M afferents both respond to stretch, and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Peripheral GABA receptors regulate colonic afferent excitability and visceral nociception Article Snippet: After that, the isolated units were characterized as muscular colonic afferents according to their responses to probing with von Freylike nylon monofilaments (0.01, 0.4 and 1g) and circumferential stretch (0-170 mN, 58 s) using a Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal, or muscular/mucosal: probing with Article Title: Altered colorectal afferent function associated with TNBS-induced visceral hypersensitivity in mice Article Snippet: Receptive endings were localized as the site requiring the least stimulus intensity to evoke an action potential (i.e., stimulus threshold), after which they were tested for mechanosensitivity and classified as serosal, muscular, mucosal, muscular/mucosal, or mechanically insensitive afferents (MIAs) as previously described ( 10 ): probing with von Frey-like nylon monofilaments (0.4, 1, and 1.4 g force), mucosal stroking with Ex Vivo:Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal or muscular/mucosal: probing with Article Title: Combined genetic and pharmacological inhibition of TRPV1 and P2X3 attenuates colorectal hypersensitivity and afferent sensitization Article Snippet: Probing and stretching were performed using a Article Title: Activation of Guanylate Cyclase-C Attenuates Stretch Responses and Sensitization of Mouse Colorectal Afferents Article Snippet: Muscular and M/M afferents both respond to stretch and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Experimental and computational evidence for an essential role of Na V 1.6 in spike initiation at stretch-sensitive colorectal afferent endings Article Snippet: Muscular and M/M afferents both respond to stretch, and their stimulus-response functions (SRFs) to circumferential stretch were generated using a Article Title: Peripheral GABA receptors regulate colonic afferent excitability and visceral nociception Article Snippet: After that, the isolated units were characterized as muscular colonic afferents according to their responses to probing with von Freylike nylon monofilaments (0.01, 0.4 and 1g) and circumferential stretch (0-170 mN, 58 s) using a Article Title: Optogenetic Activation of Colon Epithelium of the Mouse Produces High-Frequency Bursting in Extrinsic Colon Afferents and Engages Visceromotor Responses Article Snippet: Mechanical stimuli were then applied to further classify afferents as serosal, muscular, mucosal, or muscular/mucosal: probing with Article Title: Altered colorectal afferent function associated with TNBS-induced visceral hypersensitivity in mice Article Snippet: Receptive endings were localized as the site requiring the least stimulus intensity to evoke an action potential (i.e., stimulus threshold), after which they were tested for mechanosensitivity and classified as serosal, muscular, mucosal, muscular/mucosal, or mechanically insensitive afferents (MIAs) as previously described ( 10 ): probing with von Frey-like nylon monofilaments (0.4, 1, and 1.4 g force), mucosal stroking with |