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Chapter 6 - Management of Disorders of Eating, Drinking, and Swallowing in Neurorehabilitation

Published online by Cambridge University Press:  13 October 2018

Krishnan Padmakumari Sivaraman Nair
Affiliation:
Royal Hallamshire Hospital, Sheffield
Marlís González-Fernández
Affiliation:
Johns Hopkins University Hospital, Baltimore, MD
Jalesh N. Panicker
Affiliation:
National Hospital for Neurology & Neurosurgery, London
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Publisher: Cambridge University Press
Print publication year: 2018

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References

Nagy, A, Molfenter, SM, Peladeau-Pigeon, M, Stokely, S, Steele, CM The effect of bolus consistency on hyoid velocity in healthy swallowing. Dysphagia 2015; 30(4): 445–51.Google Scholar
Hamdy, S, Jilani, S, Price, V, Parker, C, Hall, N, Power, M. Modulation of human swallowing behaviour by thermal and chemical stimulation in health and after brain injury. Neurogastroenterol. Motil. 2003; 15(1): 6977.Google Scholar
Perlman, AL, Schultz, JG, VanDaele, DJ Effects of age, gender, bolus volume, and bolus viscosity on oropharyngeal pressure during swallowing. J. Appl. Physiol. (1985) 1993; 75(1): 33–7.Google Scholar
Zald, DH, Pardo, JV The functional neuroanatomy of voluntary swallowing. Ann. Neurol. 1999; 46(3): 281–6.3.0.CO;2-L>CrossRefGoogle ScholarPubMed
Hamdy, S, Aziz, Q, Rothwell, JC, Hobson, A, Barlow, J, Thompson, DG Cranial nerve modulation of human cortical swallowing motor pathways. Am. J. Physiol. 1997; 272(4 Pt. 1): G8028.Google Scholar
Jean, A. Brain stem control of swallowing: Neuronal network and cellular mechanisms. Physiol. Rev. 2001; 81(2): 929–69.Google Scholar
Palmer, JB, Rudin, NJ, Lara, G, Crompton, AW Coordination of mastication and swallowing. Dysphagia 1992; 7(4): 187200.Google Scholar
Hiiemae, KM, Palmer, JB Food transport and bolus formation during complete feeding sequences on foods of different initial consistency. Dysphagia 1999; 14(1): 3142.Google Scholar
Eslick, GD, Talley, N. Dysphagia: Epidemiology, risk factors and impact on quality of life – a population‐based study. Aliment. Pharmacol. Ther. 2008; 27(10): 971–9.Google Scholar
González-Fernández, M, Humbert, I, Winegrad, H, Cappola, AR, Fried, LP Dysphagia in old-old women: Prevalence as determined according to self-report and the 3-ounce water swallowing test. J. Am. Geriatr. Soc. 2014; 62(4): 716–20.CrossRefGoogle ScholarPubMed
Mann, G, Hankey, GJ, Cameron, D. Swallowing function after stroke: Prognosis and prognostic factors at 6 months. Stroke 1999; 30(4): 744–8.CrossRefGoogle ScholarPubMed
Ekberg, O, Feinberg, MJ Altered swallowing function in elderly patients without dysphagia: Radiologic findings in 56 cases. AJR: Am. J. Roentgenol. 1991; 156(6): 1181–4.Google Scholar
Logemann, JA, Gensler, G, Robbins, J, Lindblad, AS, Brandt, D, Hind, JA, et al. A randomized study of three interventions for aspiration of thin liquids in patients with dementia or Parkinson’s disease. J. Speech Lang. Hear. Res. 2008; 51(1): 173–83.Google Scholar
Carlaw, C, Finlayson, H, Beggs, K, Visser, T, Marcoux, C, Coney, D, et al. Outcomes of a pilot water protocol project in a rehabilitation setting. Dysphagia 2012; 27(3): 297306.CrossRefGoogle Scholar
Panther, K. The Frazier free water protocol. Persp. Swall. and Swall. Dis. (Dysphagia) 2005; 14(1): 49.CrossRefGoogle Scholar
Ekberg, O, Olsson, R, Sundgren-Borgstrom, P. Relation of bolus size and pharyngeal swallow. Dysphagia 1988; 3(2): 6972.Google Scholar
Kayser-Jones, J, Pengilly, K. Dysphagia among nursing home residents. Geriatr. Nurs. 1999; 20(2): 7784.CrossRefGoogle ScholarPubMed
Rosenbek, JC, Roecker, EB, Wood, JL, Robbins, J. Thermal application reduces the duration of stage transition in dysphagia after stroke. Dysphagia 1996; 11(4): 225–33.Google Scholar
Logemann, JA, Pauloski, BR, Colangelo, L, Lazarus, C, Fujiu, M, Kahrilas, PJ Effects of a sour bolus on oropharyngeal swallowing measures in patients with neurogenic dysphagia. J. Speech Hear. Res. 1995; 38(3): 556–63.Google Scholar
Lazarus, C, Logemann, JA, Gibbons, P. Effects of maneuvers on swallowing function in a dysphagic oral cancer patient. Head Neck 1993; 15(5): 419–24.CrossRefGoogle Scholar
McCullough, GH, Kamarunas, E, Mann, GC, Schmidley, JW, Robbins, JA, Crary, MA Effects of Mendelsohn maneuver on measures of swallowing duration post stroke. Top. in Stroke Rehabil. 2012; 19(3): 234–43.CrossRefGoogle ScholarPubMed
Ohmae, Y, Logemann, JA, Hanson, DG, Kaiser, P, Kahrilas, PJ Effects of two breath-holding maneuvers on oropharyngeal swallow. Ann. Oto., Rhin. & Laryn. 1996; 105(2): 123–31.Google Scholar
Donzelli, J, Brady, S. The effects of breath-holding on vocal fold adduction: Implications for safe swallowing. Arch. Oto.–Head & Neck Surg. 2004; 130(2): 208–10.Google Scholar
Pouderoux, P, Kahrilas, PJ Deglutitive tongue force modulation by volition, volume, and viscosity in humans. Gastroenterology 1995; 108(5): 1418–26.Google Scholar
Bülow, M, Olsson, R, Ekberg, O. Videomanometric analysis of supraglottic swallow, effortful swallow, and chin tuck in patients with pharyngeal dysfunction. Dysphagia 2001; 16(3): 190–5.Google Scholar
Hind, JA, Nicosia, MA, Roecker, EB, Carnes, ML, Robbins, J. Comparison of effortful and noneffortful swallows in healthy middle-aged and older adults. Arch. Phys. Med. Rehabil. 2001; 82(12): 1661–5.Google Scholar
Fujiu, M, Logemann, JA Effect of a tongue-holding maneuver on posterior pharyngeal wall movement during deglutition. Am. J. Sp.-Lang. Path. 1996; 5(1): 2330.Google Scholar
Logemann, JA, Rademaker, A, Pauloski, BR, Kelly, A, Stangl-McBreen, C, Antinoja, J, et al. A randomized study comparing the Shaker exercise with traditional therapy: A preliminary study. Dysphagia 2009; 24(4): 403–11.Google Scholar
Robbins, J, Kays, SA, Gangnon, RE, Hind, JA, Hewitt, AL, Gentry, LR, et al. The effects of lingual exercise in stroke patients with dysphagia. Arch. Phys. Med. Rehabil. 2007; 88(2): 150–8.Google Scholar
Azola, AM, Sunday, KL, Humbert, IA Kinematic visual biofeedback improves accuracy of learning a swallowing maneuver and accuracy of clinician cues during training. Dysphagia 2017; 32(1): 115–22.Google Scholar
Crary, MA, Carnaby, GD, Groher, ME, Helseth, E. Functional benefits of dysphagia therapy using adjunctive sEMG biofeedback. Dysphagia 2004; 19(3): 160–4.Google Scholar
Huckabee, M, Lamvik, K, Jones, R. Pharyngeal mis-sequencing in dysphagia: Characteristics, rehabilitative response, and etiological speculation. J. Neurol. Sci. 2014; 343(1): 153–8.CrossRefGoogle ScholarPubMed
O’Rourke, A, Humphries, K. The use of high-resolution pharyngeal manometry as biofeedback in dysphagia therapy. Ear, Nose & Throat Journal 2017; 96(2): 56.Google Scholar
Ludlow, CL, Humbert, I, Saxon, K, Poletto, C, Sonies, B, Crujido, L. Effects of surface electrical stimulation both at rest and during swallowing in chronic pharyngeal dysphagia. Dysphagia 2007; 22(1): 110.Google Scholar
Langmore, SE, McCulloch, TM, Krisciunas, GP, Lazarus, CL, Van Daele, DJ, Pauloski, BR, et al. Efficacy of electrical stimulation and exercise for dysphagia in patients with head and neck cancer: A randomized clinical trial. Head Neck 2016; 38 Suppl. 1: E122131.Google Scholar
Hegland, KW, Davenport, PW, Brandimore, AE, Singletary, FF, Troche, MS Rehabilitation of swallowing and cough functions following stroke: An expiratory muscle strength training trial. Arch. Phys. Med. Rehabil. 2016; 97(8): 1345–51.Google Scholar
Plowman, EK, Watts, SA, Tabor, L, Robison, R, Gaziano, J, Domer, AS, et al. Impact of expiratory strength training in amyotrophic lateral sclerosis. Muscle Nerve 2016; 54(1): 4853.CrossRefGoogle ScholarPubMed
Troche, MS, Okun, MS, Rosenbek, JC, Musson, N, Fernandez, HH, Rodriguez, R, et al. Aspiration and swallowing in Parkinson disease and rehabilitation with EMST: A randomized trial. Neurology 2010; 75(21): 1912–19.Google Scholar
Pisegna, JM, Kaneoka, A, Pearson, WG, Jr, Kumar, S, Langmore, SE Effects of non-invasive brain stimulation on post-stroke dysphagia: A systematic review and meta-analysis of randomized controlled trials. Clin. Neurophysiol. 2016; 127(1): 956–68.Google Scholar
Hockstein, NG, Samadi, DS, Gendron, K, Handler, SD Sialorrhea: A management challenge. Am. Fam. Physician 2004; 69(11): 2628–34.Google Scholar
Mugii, N, Hasegawa, M, Matsushita, T, Hamaguchi, Y, Oohata, S, Okita, H, et al. Oropharyngeal dysphagia in dermatomyositis: Associations with clinical and laboratory features including autoantibodies. PloS One 2016; 11(5): e0154746.Google Scholar
Wetscher, GJ, Glaser, K, Gadenstaetter, M, Profanter, C, Hinder, RA The effect of medical therapy and antireflux surgery on dysphagia in patients with gastroesophageal reflux disease without esophageal stricture. Am. J. of Surg. 1999; 177(3): 189–92.Google Scholar
Warnecke, T, Suttrup, I, Schroder, JB, Osada, N, Oelenberg, S, Hamacher, C, et al. Levodopa responsiveness of dysphagia in advanced Parkinson’s disease and reliability testing of the FEES-Levodopa-test. Parkinsonism Relat. Disord. 2016; 28: 100–6.Google Scholar
Rahnemai-Azar, AA, Rahnemaiazar, AA, Naghshizadian, R, Kurtz, A, Farkas, DT Percutaneous endoscopic gastrostomy: Indications, technique, complications and management. World J. Gastroenterol. 2014; 20(24): 7739–51.Google Scholar
Porter, RF, Gyawali, CP Botulinum toxin injection in dysphagia syndromes with preserved esophageal peristalsis and incomplete lower esophageal sphincter relaxation. Neurogastroenterol. Motil. 2011; 23(2): 139–44, e27–8.Google Scholar
Zaninotto, G, Marchese Ragona, R, Briani, C, Costantini, M, Rizzetto, C, Portale, G, et al. The role of botulinum toxin injection and upper esophageal sphincter myotomy in treating oropharyngeal dysphagia. J. Gastrointest. Surg. 2004; 8(8): 9971006.Google Scholar
Sharma, S, Kumar, G, Eweiss, A, Chatrath, P, Kaddour, H. Endoscopic-guided injection of botulinum toxin into the cricopharyngeus muscle: Our experience. J. Laryn. & Oto. 2015; 129(10): 990–5.Google Scholar
Terré, R, Panadés, A, Mearin, F. Botulinum toxin treatment for oropharyngeal dysphagia in patients with stroke. Neurogastroenterology & Motility 2013; 25(11): 896–e702.Google Scholar
Siersema, PD Treatment options for esophageal strictures. Nature Clinical Practice Gastroenterology & Hepatology 2008; 5(3): 142–52.Google Scholar
Kocdor, P, Siegel, ER, Tulunay‐Ugur, OE Cricopharyngeal dysfunction: A systematic review comparing outcomes of dilatation, botulinum toxin injection, and myotomy. Laryngoscope 2016; 126(1): 135–41.Google Scholar
Chen, Y, Sung, K, Tharin, S. Symptomatic anterior cervical osteophyte causing dysphagia: Case report, imaging, and review of the literature. Cureus 2016; 8(2).Google Scholar

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