Neural motor complexes propagate continuously along the full length of mouse small intestine and colon, supplementary tables

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Date
2019-11-01
Authors
Spencer, Nicholas John
Costa, Marcello
Hibberd, Timothy J
Keightley, Lauren
Wiklendt, Lucasz
Arkwright, John W
Dinning, Philip
Brookes, Simon Jonathan
Journal Title
Journal ISSN
Volume Title
Publisher
Flinders University
Rights
Copyright © Flinders University. This dataset is made available under a CC-BY-NC-ND (Creative Commons, Attribution, Non-Commercial, No Derivatives) 4.0 International license.
Rights Holder
Flinders University
Abstract
Five supplementary data tables to accompany the publication entitled: “Neural motor complexes propagate continuously along the full length of mouse small intestine and colon”. Table 1 describes the extent of motor complexes according to their type of propagation. Table 2 and 3 describes the numbers and proportions of antegrade, retrograde and simultaneous motor complexes that occurred in the small intestine, colon or across the full intestine under control conditions and after the addition of the cholinesterase inhibitor, physostigmine (1 µM). Table 4 describes the total counts and proportions of motor complexes in small intestine, colon and full intestine under control conditions and in physostigmine (1 µM). Table 5 shows the lengths of motor complexes per propagation type under control conditions and in physostigmine (1 µM).
Description
Copyright © Flinders University. This dataset is made available under a CC-BY-NC-ND (Creative Commons, Attribution, Non-Commercial, No Derivatives) 4.0 International license.
Keywords
gastrointestinal motility, colon, small intestine, motor complex, enteric nervous system, colonic migrating motor complex, intraluminal manometry
Citation
Spencer, N., Costa, M., Hibberd, T., Keightley, L., Wiklendt, L., Arkwright, J., … Brookes, S. (2019). Neural motor complexes propagate continuously along the full length of mouse small intestine and colon, supplementary tables. Flinders University. https://doi.org/10.25957/5DBB8A3B7A187
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