16 Mechanism and Consequence of Vasomotion
271
20. H. Gustafsson, A. Bulow, H. Nilsson, Rhythmic contractions of isolated, pressurized small
arteries from rat. Acta. Physiol. Scand. 152(2), 145–152 (1994)
21. R.E. Haddock, C.E. Hill, Differential activation of ion channels by inositol 1,4,5-trisphosphate
(IP 3 )- and ryanodine-sensitive calcium stores in rat basilar artery vasomotion. J. Physiol. 545(Pt
2), 615–627 (2002)
22. R.E. Haddock, G.D. Hirst, C.E. Hill, Voltage independence of vasomotion in isolated irideal
arterioles of the rat. J. Physiol. 540(Pt 1), 219–229 (2002)
23. N. Hayashida, K. Okui, Y. Fukuda, Mechanism of spontaneous rhythmic contraction in isolated
rat large artery. Jpn. J. Physiol. 36(4), 783–794 (1986)
24. U. Hoffmann, U.K. Franzeck, A. Bollinger, Low frequency oscillations of skin blood flux in
peripheral arterial occlusive disease. VASA Zeitschrift Fur Gefasskrankheiten 23(2), 120–124
(1994)
25. A.G. Hudetz, R.J. Roman, D.R. Harder, Spontaneous flow oscillations in the cerebral cortex
during acute changes in mean arterial pressure. J. Cereb. Blood Flow Metabol.: Offical J. Int.
Soc. Cereb. Blood Flow Metabol. 12(3), 491–499 (1992)
26. A.G. Hudetz, B.B. Biswal, H. Shen, K.K. Lauer, J.P. Kampine, Spontaneous fluctuations in
cerebral oxygen supply. An introduction. Adv. Experi. Medi. Biol. 454, 551–559 (1998)
27. M. Intaglietta, Vasomotor activity, time-dependent fluid exchange and tissue pressure.
Microvasc. Res. 21(2), 153–164 (1981)
28. M. Intaglietta, Arteriolar vasomotion: implications for tissue ischemia. Blood Vess. 28(Suppl
1), 1–7 (1991)
29. J.C. Jacobsen, C. Aalkjaer, H. Nilsson, V. Matchkov, J. Freiberg, N.H. Holstein-Rathlou, A
model of smooth muscle cell synchronization in the arterial wall. Am. J. Physiol. Heart Circ.
Physiol. 293, H229–H237 (2007)
30. J.C. Jacobsen, C. Aalkjaer, H. Nilsson, V.V. Matchkov, J. Freiberg, N.H. Holstein-Rathlou,
Activation of a cGMP-sensitive calcium-dependent chloride channel may cause transition from
calcium waves to whole cell oscillations in smooth muscle cells. Am. J. Physiol. Heart Circ.
Physiol. 293(1), H215–H228 (2007)
31. T.W. Jones, Discovery that the veins of the bat’s wing are endowed with rhythmical contractility
and that onward flow of blood is accelerated by each contraction. Phil. Trans. Roy. Soc. Lond.
142, 131–136 (1852)
32. A. Krogh, The number and distribution of capillaries in muscles with calculations of the oxygen
pressure head necessary for supplying the tissue. J. Physiol. 52(6), 409–415 (1919)
33. P. Kvandal, S.A. Landsverk, A. Bernjak, A. Stefanovska, H.D. Kvernmo, K.A. Kirkeboen,
Low-frequency oscillations of the laser Doppler perfusion signal in human skin. Microvasc.
Res. 72(3), 120–127 (2006)
34. S.A. Landsverk, P. Kvandal, A. Bernjak, A. Stefanovska, K.A. Kirkeboen, The effects of
general anesthesia on human skin microcirculation evaluated by wavelet transform. Anesth.
Analg. 105(4), 1012–1019, table (2007)
35. C.Y. Lee, V.L. Bautch, Ups and downs of guided vessel sprouting: the role of polarity.
Physiology (Bethesda, Md) 26(5), 326–333 (2011)
36. C.H. Lee, H.Y. Chang, C.W. Chen, T.R. Hsiue, Vasomotion enhanced by normovolemic hemodilution in rat diaphragmatic microcirculation. J. Formosan Medi. Assoc. [Taiwan yi zhi] 104(9),
630–638 (2005)
37. J.J. Lysiak, Q.A. Nguyen, T.T. Turner, Fluctuations in rat testicular interstitial oxygen tensions
are linked to testicular vasomotion: persistence after repair of torsion. Biol. Reprod. 63(5),
1383–1389 (2000)
38. V. Matchkov, C. Aalkjaer, H. Nilsson, A novel cGMP-dependent calcium-activated chloride
current from the mesenteric resistance artery. J. Gen. Physiol. 122, 40a (2003)
39. V.V. Matchkov, A. Rahman, H. Peng, H. Nilsson, C. Aalkjaer, Junctional and nonjunctional
effects of heptanol and glycyrrhetinic acid derivates in rat mesenteric small arteries. Br. J.
Pharmacol. 142(6), 961–972 (2004)
271
20. H. Gustafsson, A. Bulow, H. Nilsson, Rhythmic contractions of isolated, pressurized small
arteries from rat. Acta. Physiol. Scand. 152(2), 145–152 (1994)
21. R.E. Haddock, C.E. Hill, Differential activation of ion channels by inositol 1,4,5-trisphosphate
(IP 3 )- and ryanodine-sensitive calcium stores in rat basilar artery vasomotion. J. Physiol. 545(Pt
2), 615–627 (2002)
22. R.E. Haddock, G.D. Hirst, C.E. Hill, Voltage independence of vasomotion in isolated irideal
arterioles of the rat. J. Physiol. 540(Pt 1), 219–229 (2002)
23. N. Hayashida, K. Okui, Y. Fukuda, Mechanism of spontaneous rhythmic contraction in isolated
rat large artery. Jpn. J. Physiol. 36(4), 783–794 (1986)
24. U. Hoffmann, U.K. Franzeck, A. Bollinger, Low frequency oscillations of skin blood flux in
peripheral arterial occlusive disease. VASA Zeitschrift Fur Gefasskrankheiten 23(2), 120–124
(1994)
25. A.G. Hudetz, R.J. Roman, D.R. Harder, Spontaneous flow oscillations in the cerebral cortex
during acute changes in mean arterial pressure. J. Cereb. Blood Flow Metabol.: Offical J. Int.
Soc. Cereb. Blood Flow Metabol. 12(3), 491–499 (1992)
26. A.G. Hudetz, B.B. Biswal, H. Shen, K.K. Lauer, J.P. Kampine, Spontaneous fluctuations in
cerebral oxygen supply. An introduction. Adv. Experi. Medi. Biol. 454, 551–559 (1998)
27. M. Intaglietta, Vasomotor activity, time-dependent fluid exchange and tissue pressure.
Microvasc. Res. 21(2), 153–164 (1981)
28. M. Intaglietta, Arteriolar vasomotion: implications for tissue ischemia. Blood Vess. 28(Suppl
1), 1–7 (1991)
29. J.C. Jacobsen, C. Aalkjaer, H. Nilsson, V. Matchkov, J. Freiberg, N.H. Holstein-Rathlou, A
model of smooth muscle cell synchronization in the arterial wall. Am. J. Physiol. Heart Circ.
Physiol. 293, H229–H237 (2007)
30. J.C. Jacobsen, C. Aalkjaer, H. Nilsson, V.V. Matchkov, J. Freiberg, N.H. Holstein-Rathlou,
Activation of a cGMP-sensitive calcium-dependent chloride channel may cause transition from
calcium waves to whole cell oscillations in smooth muscle cells. Am. J. Physiol. Heart Circ.
Physiol. 293(1), H215–H228 (2007)
31. T.W. Jones, Discovery that the veins of the bat’s wing are endowed with rhythmical contractility
and that onward flow of blood is accelerated by each contraction. Phil. Trans. Roy. Soc. Lond.
142, 131–136 (1852)
32. A. Krogh, The number and distribution of capillaries in muscles with calculations of the oxygen
pressure head necessary for supplying the tissue. J. Physiol. 52(6), 409–415 (1919)
33. P. Kvandal, S.A. Landsverk, A. Bernjak, A. Stefanovska, H.D. Kvernmo, K.A. Kirkeboen,
Low-frequency oscillations of the laser Doppler perfusion signal in human skin. Microvasc.
Res. 72(3), 120–127 (2006)
34. S.A. Landsverk, P. Kvandal, A. Bernjak, A. Stefanovska, K.A. Kirkeboen, The effects of
general anesthesia on human skin microcirculation evaluated by wavelet transform. Anesth.
Analg. 105(4), 1012–1019, table (2007)
35. C.Y. Lee, V.L. Bautch, Ups and downs of guided vessel sprouting: the role of polarity.
Physiology (Bethesda, Md) 26(5), 326–333 (2011)
36. C.H. Lee, H.Y. Chang, C.W. Chen, T.R. Hsiue, Vasomotion enhanced by normovolemic hemodilution in rat diaphragmatic microcirculation. J. Formosan Medi. Assoc. [Taiwan yi zhi] 104(9),
630–638 (2005)
37. J.J. Lysiak, Q.A. Nguyen, T.T. Turner, Fluctuations in rat testicular interstitial oxygen tensions
are linked to testicular vasomotion: persistence after repair of torsion. Biol. Reprod. 63(5),
1383–1389 (2000)
38. V. Matchkov, C. Aalkjaer, H. Nilsson, A novel cGMP-dependent calcium-activated chloride
current from the mesenteric resistance artery. J. Gen. Physiol. 122, 40a (2003)
39. V.V. Matchkov, A. Rahman, H. Peng, H. Nilsson, C. Aalkjaer, Junctional and nonjunctional
effects of heptanol and glycyrrhetinic acid derivates in rat mesenteric small arteries. Br. J.
Pharmacol. 142(6), 961–972 (2004)
