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Measuring Gastrointestinal Electrical Activity With Extracellular Electrodes

O'Grady G, Angeli TR, Du P, Cheng LK

  • KMID: 2381314
  • J Neurogastroenterol Motil.
  • 2015 Oct;21(4):623-624.
  • doi: 10.5056/jnm15069
No abstract available.
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Colonic Electromechanical Abnormalities Underlying Post-operative Ileus: A Systematic and Critical Review

Wells CI, O'Grady G, Bissett IP

  • KMID: 2433496
  • J Neurogastroenterol Motil.
  • 2019 Jan;25(1):36-47.
  • doi: 10.5056/jnm18030
Post-operative ileus (POI) is an inevitable consequence of major abdominal surgery, and may be prolonged in up to 30% of patients. Ileus is commonly presumed to result from paralysis of...
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Experimental and Automated Analysis Techniques for High-resolution Electrical Mapping of Small Intestine Slow Wave Activity

Angeli TR, O'Grady G, Paskaranandavadivel N, Erickson J, Du P, Pullan AJ, Bissett IP, Cheng LK

  • KMID: 2325790
  • J Neurogastroenterol Motil.
  • 2013 Apr;19(2):179-191.
BACKGROUND/AIMS: Small intestine motility is governed by an electrical slow wave activity, and abnormal slow wave events have been associated with intestinal dysmotility. High-resolution (HR) techniques are necessary to analyze...
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High-resolution Mapping of Hyperglycemia-induced Gastric Slow Wave Dysrhythmias

Du P, O'Grady G, Paskaranandavadivel N, Tang SJ, Abell T, Cheng LK

  • KMID: 2449100
  • J Neurogastroenterol Motil.
  • 2019 Apr;25(2):276-285.
  • doi: 10.5056/jnm18192
BACKGROUND/AIMS: It is now recognised that gastric dysrhythmias are best characterised by their spatial propagation pattern. Hyperglycemia is an important cause of gastric slow wave dysrhythmia, however, the spatiotemporal patterns...
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