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Original Article

Nasal Mucociliary Clearance Under Various Conditions

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Pages 167-173 | Published online: 08 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (17)

Mehmet Erkan Kahraman, Fatih Yüksel & Yaşar Özbuğday. (2021) The relationship between Covid-19 and mucociliary clearance. Acta Oto-Laryngologica 141:11, pages 989-993.
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Chang-Hoon Kim, Mee Hyun Song, Young Eun Ahn, Jeung-Gweon Lee & Joo-Heon Yoon. (2005) Effect of hypo-, iso- and hypertonic saline irrigation on secretory mucins and morphology of cultured human nasal epithelial cells. Acta Oto-Laryngologica 125:12, pages 1296-1300.
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Masanobu Imada, Satoshi Nonaka, Yoshihumi Kobayashi & Jun Iwamoto. (2002) Functional Roles of Nasal Nitric Oxide in Nasal Patency and Mucociliary Function. Acta Oto-Laryngologica 122:5, pages 513-519.
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Jannis Constantinidis, Dirk Knöbber, Helmut Steinhart, Julia Kuhn, Heinrich Iro. (2000) Fine-structural Investigations of the Effect of nCPAP-mask Application on the Nasal Mucosa. Acta Oto-Laryngologica 120:3, pages 432-437.
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Yoshikazu Sugiura, Yoshihiro Ohashi & Yoshiaki Nakai. (1997) Nebulization of S-Carboxymethylcysteine Does Not Adversely Affect the Mucociliary System in the Paranasal Sinus and Trachea of the Healthy Rabbit. Acta Oto-Laryngologica 117:sup531, pages 5-9.
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Heikki Rantala, Simo Räisänen & Lars-Eric Stenfors. (1997) Immunoglobulin-coated Bacteria in Effusions Obtained during Chronic Maxillary Sinusitis. Acta Oto-Laryngologica 117:sup529, pages 158-161.
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Kazuyoshi Ueno, Zhen Hai Wang, Yutaka Hanamure, Masahiko Yoshitsugu, Katsunori Fukuda, Shigeru Furuta, Fumiyuki Uehara & Masaru Ohyama. (1997) Reduced Sialylation of Glycoproteins in Nasal Glands of Patients with Chronic Sinusitis. Acta Oto-Laryngologica 117:3, pages 420-423.
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G. Meseguer, R. Gurny & P. Buri. (1994) In Vivo Evaluation of Dosage Forms: Application of Gamma Scintigraphy to Non-enteral Routes of Administration. Journal of Drug Targeting 2:4, pages 269-288.
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Edward W. Fisher, Ming Liu & Valerie J. Lund. (1994) The Nasal Cycle after Deprivation of Airflow: A Study of Laryngectomy Patients Using Acoustic Rhinometry. Acta Oto-Laryngologica 114:4, pages 443-446.
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Yoshihiro Ohashi & Yoshiaki Nakai. (1991) Current Concepts of Mucociliary Dysfunction in Otitis Media with Effusion. Acta Oto-Laryngologica 111:sup486, pages 149-161.
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Kazuhiko Takeuchi, Eri Suzumura, Yuichi Majima & Yasuo Sakakura. (1990) Effect of Atropine on Nasal Mucociliary Clearance. Acta Oto-Laryngologica 110:1-2, pages 120-123.
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Jan Dolata, Sven Lindberg & Ulf Mercke. (1989) The Effects of Prostaglandins E1 E2 and F2α on Mucociliary Activity in the Rabbit Maxillary Sinus. Acta Oto-Laryngologica 108:3-4, pages 290-297.
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Kazuhiko Takeuchi, Yasuo Sakakura, Sumiko Murai & Yuichi Majima. (1989) Nasal Mucociliary Clearance in Sjögren's Syndrome: Dissociation in Flow between Sol and Gel Layers. Acta Oto-Laryngologica 108:1-2, pages 126-129.
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Anna Cederlund, Per Camner & Magnus Svartengren. (1987) Nasal Mucociliary Transport Before and After Jogging. The Physician and Sportsmedicine 15:7, pages 93-98.
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Teruhiko Harada, Satoshi Saida, Yuuichi Majima, Kotaro Ukai & Yasuo Sakakura. (1987) Effect of Lipopolysaccharide of Haemophilus influenzae on Ciliary Activity of the Human Nasal Mucosa and Bullfrog Palate Clearance. Acta Oto-Laryngologica 103:3-4, pages 307-311.
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M. Maurizi, G. Paludetti, G. Almadori, F. Ottaviani & T. Todisco. (1986) Mucociliary Clearance and Mucosal Surface Characteristics before and after Total Laryngectomy. Acta Oto-Laryngologica 102:1-2, pages 136-145.
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Michael Hinchcliffe & Lisbeth Illum. (1999) Intranasal insulin delivery and therapy1Abbreviations: α-CD, α-cyclodextrin; β-CD, β-cyclodextrin; γ-CD, γ-cyclodextrin; AUC, area under the plasma/serum concentration versus time curve; Cmax, maximum or peak plasma/serum concentration; Cmin, minimum plasma/serum concentration; DDPC, didecanoyl-L-α-phosphatidylcholine; DM-β-CD, dimethyl-β-cyclodextrin; EDTA, ethylenediaminetetraacetic acid; FITC, fluorescein isothiocyanate; HLB, hydrophile–lipophile balance; hGH, human growth hormone; HP-β-CD, hydroxy-propyl-β-cyclodextrin; HPC, hydroxypropylcellulose; HSA, human serum albumin; Hyaff 11, hyaluronic acid ester; IDDM, insulin-dependent diabetes mellitus; Ig, immunoglobulin; Laureth-9, polyoxyethylene-9-lauryl ether; LPC, lysophosphatidylcholine; LPG, lysophosphatidylglycerol; MCC, microcrystalline cellulose; MTR, mucociliary transport rate; NIDDM, non-insulin-dependent diabetes mellitus; PC, phosphatidylcholine; RAMEB, randomly methylated β-cyclodextrin; SDC, sodium deoxycholate; SGC, sodium glycocholate; STDHF, sodium taurodihydrofusidate; 99mTc, 99mtechnetium; TER, transepithelial resistance.1. Advanced Drug Delivery Reviews 35:2-3, pages 199-234.
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