H. Almquist, J. Palmer, B. Jonson, and P. Wollmer, Pulmonary perfusion and density gradients in healthy volunteers, J Nucl Med, vol.38, issue.6, pp.962-968, 1997.

T. Hakim, G. Dean, and R. Lisbona, Effect of body posture on spatial distribution of pulmonary blood flow, J Appl Physiol, vol.64, issue.3, pp.1160-70, 1988.

R. Glenny, Counterpoint: Gravity is not the major factor determining the distribution of blood flow in the healthy human lung, Journal of Applied Physiology, vol.104, issue.5, pp.1533-1538, 2008.
DOI : 10.1152/japplphysiol.01092.2007a

R. Glenny, . Last, . Word, and . Point, Counterpoint: Gravity is not the major factor determining the distribution of blood flow in the healthy human lung, Journal of Applied Physiology, vol.104, issue.5, p.1540, 2008.
DOI : 10.1152/japplphysiol.01092.2007a

M. Hughes and J. West, Last Word on Point:Counterpoint: Gravity is/is not the major factor determining the distribution of blood flow in the human lung, Journal of Applied Physiology, vol.104, issue.5, p.1539, 2008.
DOI : 10.1152/japplphysiol.90374.2008

M. Hughes and J. West, Point:Counterpoint: Gravity is/is not the major factor determining the distribution of blood flow in the human lung, Journal of Applied Physiology, vol.104, issue.5, pp.1531-1534, 2008.
DOI : 10.1152/japplphysiol.01092.2007

W. Jr and W. , Point:Counterpoint: gravity is/is not the major factor determining the distribution of blood flow in the human lung, J Appl Physiol, vol.104, issue.5, p.1537, 2008.

M. Letourneau, Q. Nguyen, F. Harel, A. Fournier, and J. Dupuis, PulmoBind, an Adrenomedullin-Based Molecular Lung Imaging Tool, Journal of Nuclear Medicine, vol.54, issue.10, pp.1789-96, 2013.
DOI : 10.2967/jnumed.112.118984

URL : https://hal.archives-ouvertes.fr/pasteur-01131959

Y. Asada, S. Hara, K. Marutsuka, K. Kitamura, T. Tsuji et al., Novel distribution of adrenomedullin-immunoreactive cells in human tissues, Histochemistry and Cell Biology, vol.112, issue.3, pp.185-91, 1999.
DOI : 10.1007/s004180050406

I. Hwang and F. Tang, Peripheral distribution and gene expression of adrenomedullin in the rat: possible source of blood adrenomedullin, Neuropeptides, vol.34, issue.1, pp.32-39, 2000.
DOI : 10.1054/npep.1999.0783

K. Kitamura, J. Sakata, K. Kangawa, M. Kojima, H. Matsuo et al., Cloning and Characterization of cDNA Encoding a Precursor for Human Adrenomedullin, Biochemical and Biophysical Research Communications, vol.194, issue.2, pp.720-725, 1993.
DOI : 10.1006/bbrc.1993.1881

J. Dupuis, A. Caron, and N. Ruel, Biodistribution, plasma kinetics and quantification of single-pass pulmonary clearance of adrenomedullin, Clinical Science, vol.109, issue.1, pp.97-102, 2005.
DOI : 10.1042/CS20040357

F. Harel, X. Levac, Q. Nguyen, M. Letourneau, S. Marcil et al., Molecular imaging of the human pulmonary vascular endothelium using an adrenomedullin receptor ligand, Molecular Imaging, vol.14, 2015.
URL : https://hal.archives-ouvertes.fr/pasteur-01351194

J. Dupuis, F. Harel, Y. Fu, Q. Nguyen, M. Letourneau et al., Molecular Imaging of Monocrotaline-Induced Pulmonary Vascular Disease with Radiolabeled Linear Adrenomedullin, Journal of Nuclear Medicine, vol.50, issue.7, pp.1110-1115, 2009.
DOI : 10.2967/jnumed.108.059428

URL : https://hal.archives-ouvertes.fr/pasteur-00819938

N. Merabet, Q. Nguyen, S. Marcil, B. Meloche, Y. Shi et al., Molecular SPECT imaging of early angioproliferative group I pulmonary arterial hypertension using an adrenomedullin receptor ligand, Circulation, vol.130, p.17020, 2014.

J. Petersson, A. Sanchez-crespo, S. Larsson, and M. Mure, Physiological imaging of the lung: single-photon-emission computed tomography (SPECT), Journal of Applied Physiology, vol.102, issue.1, pp.468-76, 2007.
DOI : 10.1152/japplphysiol.00732.2006

H. Maeda, H. Itoh, Y. Ishii, G. Todo, T. Mukai et al., Pulmonary blood flow distribution measured by radionuclidecomputed tomography, J Appl Physiol, vol.54, issue.1, pp.225-258, 1983.

S. Nyren, M. Mure, H. Jacobsson, S. Larsson, and S. Lindahl, Pulmonary perfusion is more uniform in the prone than in the supine position: scintigraphy in healthy humans, J Appl Physiol, vol.86, issue.4, pp.1135-1176, 1999.

J. Petersson, M. Rohdin, A. Sanchez-crespo, S. Nyren, H. Jacobsson et al., Regional lung blood flow and ventilation in upright humans studied with quantitative SPECT, Respiratory Physiology & Neurobiology, vol.166, issue.1, pp.54-60, 2009.
DOI : 10.1016/j.resp.2009.01.008

R. Lisbona, G. Dean, and T. Hakim, Observations with SPECT on the normal regional distribution of pulmonary blood flow in gravity independent planes, J Nucl Med, vol.28, issue.11, pp.1758-62, 1987.

G. Prisk, H. Guy, A. Elliott, and J. West, Inhomogeneity of pulmonary perfusion during sustained microgravity on SLS-1, J Appl Physiol, vol.76, issue.4, pp.1730-1738, 1994.

R. Glenny, S. Bernard, H. Robertson, and M. Hlastala, Gravity is an important but secondary determinant of regional pulmonary blood flow in upright primates, J Appl Physiol, vol.86, issue.2, pp.623-655, 1999.

R. Glenny and H. Robertson, Determinants of Pulmonary Blood Flow Distribution, Compr Physiol, vol.29, issue.11, pp.39-59, 2011.
DOI : 10.1002/cphy.c090002

R. Glenny and H. Robertson, Fractal modeling of pulmonary blood flow heterogeneity, J Appl Physiol, vol.70, issue.3, pp.1024-1054, 1991.

E. Lau, D. Bailey, E. Bailey, P. Torzillo, P. Roach et al., Pulmonary hypertension leads to a loss of gravity dependent redistribution of regional lung perfusion: a SPECT/CT study, Heart, vol.188, issue.1, pp.47-53, 2014.
DOI : 10.1136/heartjnl-2013-304254