8. Meneghetti A.T., Tedesco P., Damani T. et al. Esophageal mucosal damage may promote dysmotility and worsen esophageal acid exposure. J Gastrointest Surg. 2005;9(9):1313-7.
9. Savarino E., Gemignani L., Pohl D. et al. Oesophageal motility and bolus transit abnormalities increase in parallel with the severity of gastro-oesophageal reflux disease. Aliment Pharmacol Ther. 2011;34(4):476-86.
10. Xiao Y., Kahrilas P.J., Kwasny M.J. et al. High-resolution manometry correlates of ineffective esophageal motil-ity. Am J Gastroenterol. 2012;107(11):1647-54.
11. Frazzoni M., Savarino E., de Bortoli N. et al. Analyses of the post-reflux swallow-induced peristaltic wave index and nocturnal baseline impedance parameters increase the diagnostic yield of impedance-pH monitoring of patients with reflux disease. Clin Gastroenterol Hepatol. 2016;14:40-46.
12. Frazzoni M., Manta R., Mirante V.G. et al. Esophageal chemical clearance is impaired in gastroesophageal reflux disease -- A 24 h impedance-pH monitoring assessment // Neurogastroenterol Motil. 2013;25(5):399-406, e295.
13. Frazzoni L., Frazzoni M., de Bortoli N. et al. Post-reflux swallow-induced peristaltic wave index and nocturnal baseline impedance can link PPI-responsive heartburn to reflux better than acid exposure time. Neurogastroenterol Motil. 2017 Nov; 29(11).
14. Farre R., Blondeau K., Clement D. et al. Evaluation of oesophageal mucosa integrity by the intraluminal impedance technique. Gut. 2011;60:885-92.
15. Kessing B.F., Bredenoord A.J., Weijenborg P.W. et al. Esophageal acid exposure decreases intralumi-nal baseline impedance levels. Am J Gastroenterol. 2011 Dec;106(12):2093-7.
16. Woodland P., Al-Zinaty M., Yazaki E., Sifrim D. In vivo evaluation of acid-induced changes in oesophageal mucosa integrity and sensitivity in non-erosive reflux disease. Gut. 2013 Sep; А62(9):1256-61.
17. Makushina A., Storonova O., Paraskevova A. et al. Assotiation between mean nocturnal baseline impedance and acid exposure time in gastroesophageal reflux disease patients and its significance for prognosis of erosive esophagi-tis. Neurogastroenterol Motil. 2018;30 (Suppl. 1):e13423, P084:20.
18. Martinucci I., De Bortoli N., Savarino E. et al. Esophageal baseline impedance levels in patients with pathophysi-ological characteristics of functional heartburn. Neurogas-troenterol Motil. 2014;26:546-55.
19. Lundell L., Dent J., Bennett J. et al. Endoscopic assessment of oesophagitis: clinical and functional correlates and further validation of the Los Angeles classification. Gut. 1999;45:172-80.
20. Zhong C., Duan L., Wang K., Xu Z. et al. Esophageal intraluminal baseline impedance is associate with severity of acid reflux and epithelial structural abnormalities in patients with gastroesophageal reflux disease. J Gastroen-terol. 2013;48:601-10.