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1
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0018826031
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Aortic input impedance in normal man: Relationship to pressure wave forms
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Murgo, J. P., Westerhof, N., Giolma, J. P. and Altobelli, S. A.: Aortic input impedance in normal man: relationship to pressure wave forms., Circulation 62:105-116, (1980).
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Circulation
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Murgo, J.P.1
Westerhof, N.2
Giolma, J.P.3
Altobelli, S.A.4
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2
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0004115505
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In: Quantitative Cardiovascular Studies., N. H. C. Hwang, D. R. Gross, and D. J. Patel (eds). University Park Press, Baltimore
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Westerhof, N., Murgo, J. P., Sipkema, P., Giolma, J. P. and Elzinga, G.,: Arterial impedance. In: Quantitative Cardiovascular Studies., N. H. C. Hwang, D. R. Gross, and D. J. Patel (eds). University Park Press, Baltimore, pp. 111-150, (1979).
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Arterial Impedance
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Westerhof, N.1
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Sipkema, P.3
Giolma, J.P.4
Elzinga, G.5
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3
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84887097110
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In: Biological Flows., M. Y. Jaffrin and C. G. Caro (eds). New York, Plenum
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Westerhof, N.: Cardiovascular interaction determines pressure and flow. In: Biological Flows., M. Y. Jaffrin and C. G. Caro (eds). New York, Plenum. 227-254, (1995).
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(1995)
Cardiovascular Interaction Determines Pressure and Flow
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Westerhof, N.1
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4
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0022929767
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High frequency characteristics of the arterial system
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Newman, D. L., Sipkema, P., Greenwald, S. E. and Westerhof, N.: High frequency characteristics of the arterial system., J. Biomech. 19: 817-824, (1986).
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(1986)
J. Biomech.
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Newman, D.L.1
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Greenwald, S.E.3
Westerhof, N.4
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5
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85047675261
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Systemic compliance: Does it play a role in the genesis of essential hypertension?
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Randall, O. S., van den Bos, G. C. and Westerhof, N.: Systemic compliance: does it play a role in the genesis of essential hypertension?, Cardiovasc. Res. 18:455-462, (1984).
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(1984)
Cardiovasc. Res.
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Randall, O.S.1
Van Den Bos, G.C.2
Westerhof, N.3
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6
-
-
0014341287
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Dispersion and attenuation of small artificial pressure waves in the canine aorta
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Anliker, M., Histand, M. B. and Ogden, E.: Dispersion and attenuation of small artificial pressure waves in the canine aorta., Circ. Res. 23:539-551, (1968).
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Circ. Res.
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Anliker, M.1
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Ogden, E.3
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7
-
-
0014251982
-
Measurement of nonlinearity in the arterial system of the dog by a new method
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Dick, D. E., Kendrick, J. E., Matsom, G. L. and Rideout, V. C.: Measurement of nonlinearity in the arterial system of the dog by a new method., Circ. Res. 22:101-111, (1968).
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Circ. Res
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Dick, D.E.1
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Matsom, G.L.3
Rideout, V.C.4
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8
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0028825510
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Scatter in input impedance may result from nonlinearily elastic arterial wall
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Stergiopulos, N., J.-J. Meister and Westerhof, N.: Scatter in input impedance may result from nonlinearily elastic arterial wall., Am. J. Physiol. 269:H1490-H1495, (1995).
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Am. J. Physiol
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Stergiopulos, N.1
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Westerhof, N.3
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9
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0019352211
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Manipulation of ascending aortic pressure and flow wave reflections with the VaJsaiva maneuver: Relationship to input impedance
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Murgo, J. P., Westerhof, N., Giolma, J. P. and Altobelli, S. A.: Manipulation of ascending aortic pressure and flow wave reflections with the VaJsaiva maneuver: relationship to input impedance., Circulation 63:122-132, (1981).
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(1981)
Circulation
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Murgo, J.P.1
Westerhof, N.2
Giolma, J.P.3
Altobelli, S.A.4
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10
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-
0015685622
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Influence of central and peripheral changes on the hydraulic input impedance of the systemic arterial tree
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Westerhof, N., Elzinga, G., and Van den Bos, G. C: Influence of central and peripheral changes on the hydraulic input impedance of the systemic arterial tree., Med. And Biol. Engin., 11:710-723, (1956).
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(1956)
Med. and Biol. Engin.
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Westerhof, N.1
Elzinga, G.2
Van Den Bos, G.C.3
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12
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0000770468
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Analog studies of the human systemic arterial tree
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Westerhof, N., Bosman, F., de Vries G. J. and Noordergraaf, A.: Analog studies of the human systemic arterial tree., J. Biomechanics 2:121-143, (1969).
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(1969)
J. Biomechanics
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Westerhof, N.1
Bosman, F.2
De Vries, G.J.3
Noordergraaf, A.4
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13
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0018840217
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Pulsatile flow and pressure in human systemic arteries: Studies in man and in a multi-branched model of the human systemic arterial tree
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O'Rourke, M. F. and Avolio, A. P.: Pulsatile flow and pressure in human systemic arteries: studies in man and in a multi-branched model of the human systemic arterial tree., Circ. Res. 46:363-372, (1980).
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Circ. Res.
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O'Rourke, M.F.1
Avolio, A.P.2
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14
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0027006820
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Computer simulation of arterial How with applications to arterial and aortic stenosis
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Stergiopulos, N., Young, D. F. and Rogge, T. R.: Computer simulation of arterial How with applications to arterial and aortic stenosis., J. Biomech. 25:1477-1488, (1992).
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J. Biomech.
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Stergiopulos, N.1
Young, D.F.2
Rogge, T.R.3
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15
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0002695265
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Arterial hemodynamics
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Strackee, J., and N. Westerhof (eds). IOP Press
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Westerhof, N.: Arterial Hemodynamics, In: The Physics of Heart and Circulation., Strackee, J., and N. Westerhof (eds). pp. 355-382. IOP Press, (1993).
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(1993)
The Physics of Heart and Circulation
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Westerhof, N.1
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16
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0013873616
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The input impedance of an assembly of randomly branching tubes
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Taylor, M. G.: The input impedance of an assembly of randomly branching tubes., Biophys. J. 6:29-51, (1966a).
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Biophys. J.
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Taylor, M.G.1
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17
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0013970034
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Wave transmission through an assembly of randomly branching tubes
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Taylor, M. G.: Wave transmission through an assembly of randomly branching tubes., Biophys. J. 6:697-716, (1966b).
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Taylor, M.G.1
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19
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0002453030
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Oscillatory How impedance in electrical analog of arterial system
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Jager, G. N., Westerhof, N. and Noordergraaf, A.: Oscillatory How impedance in electrical analog of arterial system., Circ. Res. 16:121-133, (1965).
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(1965)
Circ. Res.
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Jager, G.N.1
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Noordergraaf, A.3
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20
-
-
0021249532
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The static elastic properties of 45 human thoracic and 20 abdominal aortas in vitro and the parameters of a new model
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Langewouters, G. J., Wesseling, K. H. and Goedhard, W. J. A.: The static elastic properties of 45 human thoracic and 20 abdominal aortas in vitro and the parameters of a new model., J. Biomech., 17:425-435, (1984).
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Langewouters, G.J.1
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Goedhard, A.W.J.3
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21
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0014777463
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Arterial viscoelasticity: A generalized model. Effect on input impedance and wave travel in the systemic arterial tree
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Westerhof. N. and Noordergraaf, A.: Arterial viscoelasticity: a generalized model. Effect on input impedance and wave travel in the systemic arterial tree., J. Biomech. 3:357-379, (1970).
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J. Biomech.
, vol.3
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Westerhof, N.1
Noordergraaf, A.2
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22
-
-
8744236056
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Experimentelle untersuchungen iiber die puls-formen und eigenschwingungen zweiteiliger schlauch modelle
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Kenner, Th. and Wetterer, E.: Experimentelle Untersuchungen iiber die Puls-formen und Eigenschwingungen zweiteiliger Schlauch modelle., Pfltigers Arch. 275:594-603, (1962).
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Pfltigers Arch
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Kenner, T.1
Wetterer, E.2
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24
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0014116221
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Pressure and flow waves in arteries and the anatomical design of the arterial system
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O'Rourke, M. R: Pressure and flow waves in arteries and the anatomical design of the arterial system., J. Applied Physiol. 23:139-149, (1967).
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J. Applied Physiol.
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O'Rourke, M.R.1
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25
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0016545569
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Effective length of the arterial system
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Sipkema, P. and Westerhof, N.: Effective length of the arterial system., Ann. Biomed. Engin. 3:296-307, (1975).
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(1975)
Ann. Biomed. Engin.
, vol.3
, pp. 296-307
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Sipkema, P.1
Westerhof, N.2
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26
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0028198869
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Differential effects of wave reflections and peripheral resistance on aortic blood pressure: A model based study
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Berger, D. S., Li, J. K.-J. and Noordergraaf, A.: Differential effects of wave reflections and peripheral resistance on aortic blood pressure: a model based study., Am. J. Physiol. 266:H1626-H1642, (1994).
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Am. J. Physiol
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Berger, D.S.1
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27
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0029394994
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Arterial wave propagation phenomena, ventricular work and power dissipation
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Berger, D. S., Li, J. K. .-J. and Noordergraaf, A.: Arterial wave propagation phenomena, ventricular work and power dissipation., Ann. Biomed. Eng. 23:804-811, (1995).
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Berger, D.S.1
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Noordergraaf, A.3
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28
-
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0024713890
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Modified asymmetric T-tube model to infer arterial wave reflection at the aortic root
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Burattini, R. and Campbell, K. B.: Modified asymmetric T-tube model to infer arterial wave reflection at the aortic root, IEEE Trans. Biomed. Eng. 36:805-814, (1989).
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Burattini, R.1
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29
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85047680092
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Forward and backward waves in the arterial system
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Westerhof, N., P. Sipkema, P., van den Bos, G. C. and Elzinga, G.: Forward and backward waves in the arterial system., Cardiovasc. Res. 6:648-656, (1972).
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Cardiovasc. Res.
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Westerhof, N.1
Sipkema P, P.2
Van Den Bos, G.C.3
Elzinga, G.4
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30
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0001740359
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Die grundform des arteriellen puis
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Frank, O.: Die Grundform des Arteriellen Puis., Zeitschr. f. Biol. 37:483-526, (1899).
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Frank, O.1
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31
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0003845252
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Reprinted in 1964, No 22, History of medicine Series, Library of the New York Academy of Medicine. New York, NY, Hafner Publishing
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Hales, S.: Statical Essays: containing Haemostaticks., (Reprinted in 1964, No 22, History of medicine Series, Library of the New York Academy of Medicine. New York, NY, Hafner Publishing), (1733).
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Statical Essays: Containing Haemostaticks.
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Hales, S.1
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32
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0015147582
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An artificial arterial system for pumping hearts
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Westerhof, N., Elzinga, G. and Sipkema, P.: An artificial arterial system for pumping hearts., J. Appl. Physiol. 31:776-781, (1971).
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(1971)
J. Appl. Physiol.
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Westerhof, N.1
Elzinga, G.2
Sipkema, P.3
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33
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0015580040
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Pressure and flow generated by the left ventricle against different impedances
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Elzinga, G. and Westerhof, N.: Pressure and flow generated by the left ventricle against different impedances., Circ. Res. 32:178-186,(1973).
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(1973)
Circ. Res.
, vol.32
, pp. 178-186
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Elzinga, G.1
Westerhof, N.2
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34
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0018426128
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How to quantify pump function of the heart. The value of variables derived from measurements on isolated muscle
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Elzinga, G. and Westerhof, N.: How to quantify pump function of the heart. The value of variables derived from measurements on isolated muscle., Circ. Res. 44:303-308,(1979).
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(1979)
Circ. Res.
, vol.44
, pp. 303-308
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Elzinga, G.1
Westerhof, N.2
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35
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0018890927
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Pump function of the feline left heart: Changes with heart rate and its bearing on the energy balance
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Elzinga, G. and Westerhof, N.: Pump function of the feline left heart: changes with heart rate and its bearing on the energy balance., Cardiovasc. Res. 14:81-92, (1980).
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(1980)
Cardiovasc. Res.
, vol.14
, pp. 81-92
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Elzinga, G.1
Westerhof, N.2
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36
-
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0023235339
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Beat-to-beat estimation of peripheral resistance and total arterial compliance during pressure transients
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Toorop, G. P., Westerhof, N. and Elzinga, G.: Beat-to-beat estimation of peripheral resistance and total arterial compliance during pressure transients., Am. J. Physiol. 252:H1275-H1283, (1987).
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(1987)
Am. J. Physiol
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Toorop, G.P.1
Westerhof, N.2
Elzinga, G.3
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37
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0028960037
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Evaluation of methods for estimation of total arterial compliance
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Stergiopulos, N., Meister, J.-J. and Westerhof, N.: Evaluation of methods for estimation of total arterial compliance., Am. J. Physiol. 268:H1540-H1548, (1995).
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Am. J. Physiol
, vol.268
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Stergiopulos, N.1
Meister, J.-J.2
Westerhof, N.3
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38
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0030444857
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Comparison of linear and nonlinear formulations of the three-element Windkessel model
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Fogliardi, R., Didonfrancesco, M. and Burattini, R.: Comparison of linear and nonlinear formulations of the three-element Windkessel model., Am. J. Physiol. 271: H2662-H2668, (1996)
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Am. J. Physiol
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Fogliardi, R.1
Didonfrancesco, M.2
Burattini, R.3
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39
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0027980405
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Simple and accurate way for estimating total and segmental arterial compliance: The pulse pressure method
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Stergiopulos, N., Meister, J.-J. and Westerhof, N.: Simple and accurate way for estimating total and segmental arterial compliance: the pulse pressure method., Ann. Biomed. Engin. 22:392-397, (1994).
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(1994)
Ann. Biomed. Engin.
, vol.22
, pp. 392-397
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Stergiopulos, N.1
Meister, J.-J.2
Westerhof, N.3
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40
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0025895708
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Normalized input impedance and arterial decay time over heart period are independent of body size
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Westerhof, N. and Elzinga, G.: Normalized input impedance and arterial decay time over heart period are independent of body size, Am. J. Physiol. 261:R126-R133, (1991).
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Am. J. Physiol
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Westerhof, N.1
Elzinga, G.2
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