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1.
Möller, W. et al.: Nasal high flow reduces dead space. J. Appl. Physiol. 122, 191-197 (2017)
2.
Möller, W. et al.: Nasal high flow clears anatomical dead space in upper airway models. J. Appl. Physiol. 118, 1525-1532 (2015)
3.
Schulz, H. ; Eder, G. ; Bolle, I. ; Tsuda, A.* & Karrasch, S.: Micron-sized intrapulmonary particle deposition in the developing rat lung. J. Appl. Physiol. 112, 759-765 (2012)
4.
Dickie, R.* ; Cormack, M.* ; Semmler-Behnke, M. ; Kreyling, W.G. & Tsuda, A.*: Deep pulmonary lymphatics in immature lungs. J. Appl. Physiol. 107, 859-863 (2009)
5.
Karrasch, S. ; Eder, G. ; Bolle, I. ; Tsuda, A.* & Schulz, S.: Breath-by-breath measurement of particle deposition in the lung of spontaneously breathing rats. J. Appl. Physiol. 107, 1293-1299 (2009)
6.
Bolle, I. et al.: Postnatal lung function in the developing rat. J. Appl. Physiol. 104, 1167-1176 (2008)
7.
Haller, J.* et al.: Visualization of pulmonary inflammation using noninvasive fluorescence molecular imaging. J. Appl. Physiol. 104, 795-802 (2008)
8.
Möller, W. et al.: Mucociliary and long-term particle clearance in the airways of healthy nonsmoker subjects. J. Appl. Physiol. 97, 2200-2206 (2004)
9.
Schulz, S. ; Schulz, A. ; Eder, G. & Heyder, J.: Labelled carbon dioxide (C18O2 : An indicator gas for phase II in expirograms. J. Appl. Physiol. 97, 1755-1762 (2004)
10.
Schulz, H. et al.: Convective and diffusive gas transport in canine intrapulmonary airways. J. Appl. Physiol. 72, 1557-1562 (1992)
11.
Gebhart, J. ; Heyder, J. & Stahlhofen, W.: Use of aerosols to estimate pulmonary air-space dimensions. J. Appl. Physiol. 51, 465-476 (1981)