Spatiotemporal Analysis of Simultaneous Repetitive Electrical Stimulation with Voltage Sensitive Dye

Author(s):  
Lucas de Levy Oliveira ◽  
Naofumi Suematsu ◽  
Tetsuya Yagi
PLoS ONE ◽  
2014 ◽  
Vol 9 (9) ◽  
pp. e108686 ◽  
Author(s):  
Elliot B. Bourgeois ◽  
Brian N. Johnson ◽  
Almedia J. McCoy ◽  
Lorenzo Trippa ◽  
Akiva S. Cohen ◽  
...  

1990 ◽  
Vol 5 (2) ◽  
pp. 77-80
Author(s):  
Hirobumi KAWAMURA ◽  
Takamasa TSURUMI ◽  
Morihiro TSUJISHITA ◽  
Hiroshi YAMAMOTO ◽  
Tetsuro SADAHIRO ◽  
...  

1978 ◽  
Vol 235 (4) ◽  
pp. E345
Author(s):  
S Yokoyama ◽  
T Ozaki

The effects of repetitive electrical stimulation of nodes in Auerbach's plexus on the longitudinal muscle of rabbit intestine were investigated. Peeled longitudinal muscle strips, with adherent Auerbach's plexus, were obtained and placed under a stereodissecting microscope. Neural elements within nodes of Auerbach's plexus were stimulated repetitively using a metal microelectrode with tip diameter of 5 micrometer. Stimuli applied to a node generally caused excitation of the longitudinal muscle on the oral side and inhibition on the anal side of the point of stimulation. Excitation of the muscle was mainly cholinergic, and inhibition of the muscle was nonadrenergic. From the results of the present study the concept of the law of the intestine, excitation above and inhibition below the stimulated spot, was supported.


2011 ◽  
Vol 300 (1) ◽  
pp. G170-G180 ◽  
Author(s):  
Bin Feng ◽  
G. F. Gebhart

Hypersensitivity in inflammatory/irritable bowel syndrome is contributed to in part by changes in the receptive properties of colorectal afferent endings, likely including mechanically insensitive afferents (MIAs; silent afferents) that have the ability to acquire mechanosensitivity. The proportion and attributes of colorectal MIAs, however, have not previously been characterized. The distal ∼3 cm of colorectum with either pelvic (PN) or lumbar splanchnic (LSN) nerve attached was removed, opened longitudinally, pinned flat in a recording chamber, and perfused with oxygenated Krebs solution. Colorectal receptive endings were located by electrical stimulation and characterized as mechanosensitive or not by blunt probing, mucosal stroking, and circumferential stretch. MIA endings were tested for response to and acquisition of mechanosensitivity by localized exposure to an inflammatory soup (IS). Colorectal afferents were also tested with twin-pulse and repetitive electrical stimulation paradigms. PN MIAs represented 23% of 211 afferents studied, 71% (30/42) of which acquired mechanosensitivity after application of IS to their receptive ending. LSN MIAs represented 33% of 156 afferents studied, only 23% (11/48) of which acquired mechanosensitivity after IS exposure. Mechanosensitive PN endings uniformly exhibited significant twin-pulse slowing whereas LSN endings showed no significant twin-pulse difference. PN MIAs displayed significantly greater activity-dependent slowing than LSN MIAs. In conclusion, significant proportions of MIAs are present in the colorectal innervation; significantly more in the PN than LSN acquire mechanosensitivity in an inflammatory environment. This knowledge contributes to our understanding of the possible roles of MIAs in colon-related disorders like inflammatory/irritable bowel syndrome.


Life Sciences ◽  
1980 ◽  
Vol 27 (4) ◽  
pp. 325-330 ◽  
Author(s):  
M. Baudry ◽  
M. Oliver ◽  
R. Creager ◽  
A. Wieraszko ◽  
G. Lynch

1991 ◽  
Vol 567 (2) ◽  
pp. 248-252 ◽  
Author(s):  
Noriaki Uenishi ◽  
Tracey J. Shors ◽  
Caleb E. Finch ◽  
Nancy R. Nichols ◽  
Richard F. Thompson

1995 ◽  
Vol 73 (3) ◽  
pp. 974-982 ◽  
Author(s):  
N. Kouchtir ◽  
J. F. Perrier ◽  
D. Zytnicki ◽  
L. Jami

1. Motoneurons innervating peroneal muscles were recorded intracellularly in anesthetized cats during sustained submaximal isometric contractions of peroneus brevis produced by repetitive electrical stimulation of motor axons in the distal portion of cut ventral root filaments. 2. In contrast with the inhibition previously observed during contractions of gastrocnemius medialis muscle in triceps surae motoneurons, the afferent input generated by peroneus brevis contraction elicited excitatory potentials in nearly all motoneurons supplying peroneus brevis, peroneus tertius, or peroneus longus muscles. 3. We ascribed the contraction-induced excitation of peroneal motoneurons to spindle afferents for two reasons. First, the amplitude of contraction-induced excitatory potentials increased when the ventral root stimulation strength was increased to recruit gamma-axons. Second, with stimulation strengths under gamma-threshold, peroneus brevis contraction still excited peroneal motoneurons, and we obtained evidence that activation of spindles by skeletofusimotor beta-axons could account at least partly for this excitation. 4. The lack of contraction-induced inhibition in peroneal motoneurons and the prevalence of contraction-induced excitation raised the possibility that, in contrast to the usual effects of tendon organ afferents, Ib afferents from peroneus brevis might exert an excitatory influence on homonymous motoneurons. The fact that electrical stimulation of group I afferents in the nerve to peroneus brevis only exceptionally evoked inhibition in peroneal motoneurons would appear compatible with this hypothesis. Furthermore, stimulation of cutaneous afferents, known to facilitate transmission in Ib pathways, only exceptionally revealed a weak contraction-induced inhibition.(ABSTRACT TRUNCATED AT 250 WORDS)


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