25 Medical Products Inspired by Biological Oscillators …
397
28. A.M. Gardner, R.H. Fox, C. Lawrence, T.D. Bunker, R.S. Ling, A.G. MacEachern, Reduction
of post-traumatic swelling and compartment pressure by impulse compression of the foot. J.
Bone Joint Surg. Br. 72(5), 810–815 (1990)
29. A.M.N. Gardner, R.H. Fox, The Venous System in Health and Disease (IOS Press, 2001)
30. D. Goldman, A.S. Popel, A computational study of the effect of vasomotion on oxygen transport
from capillary networks. J. Theor. Biol. 209(2), 189–199 (2001)
31. C.N. Hall, C. Reynell, B. Gesslein, N.B. Hamilton, A. Mishra, B.A. Sutherland et al., Capillary
pericytes regulate cerebral blood flow in health and disease. Nature 508(7494), 55–60 (2014)
32. N. Hori, R. Wiest, R.J. Groszmann, Enhanced release of nitric oxide in response to changes in
flow and shear stress in the superior mesenteric arteries of portal hypertensive rats. Hepatology
28(6), 1467–1473 (1998)
33. M.H. Howlader, P.D. Smith, Microangiopathy in chronic venous insufficiency: quantitative
assessment by capillary microscopy. Eur. J. Vasc. Endovasc. Surg. 26(3), 325–331 (2003)
34. S.K. Kakkos, J.A. Caprini, G. Geroulakos, A.N. Nicolaides, G. Stansby, D.J. Reddy, et al.,
Combined intermittent pneumatic leg compression and pharmacological prophylaxis for
prevention of venous thromboembolism. Cochrane Database Systematic Rev. 9, CD005258
(2016)
35. R.F. Kelly, H.M. Snow, Characteristics of the response of the iliac artery to wall shear stress
in the anaesthetized pig. J. Physiol. 582(Pt 2), 731–743 (2007)
36. B.S. Kirby, R.E. Carlson, R.R. Markwald, W.F. Voyles, F.A. Dinenno, Mechanical influences on
skeletal muscle vascular tone in humans: insight into contraction-induced rapid vasodilatation.
J. Physiol. 583(Pt 3), 861–874 (2007)
37. V.V. Kislukhin, Regulation of oxygen consumption by vasomotion. Math. Biosci. 191(1), 101–
108 (2004)
38. P.J. Kolari, K. Pekanmaki, R.T. Pohjola, Transcutaneous oxygen tension in patients with postthrombotic leg ulcers: treatment with intermittent pneumatic compression. Cardiovasc. Res.
22(2), 138–141 (1988)
39. H.D. Kvernmo, A. Stefanovska, K.A. Kirkeboen, K. Kvernebo, Oscillations in the human
cutaneous blood perfusion signal modified by endothelium-dependent and endotheliumindependent vasodilators. Microvasc. Res. 57(3), 298–309 (1999)
40. N. Labropoulos, L.R. Leon Jr., A. Bhatti, S. Melton, S.S. Kang, A.M. Mansour et al., Hemodynamic effects of intermittent pneumatic compression in patients with critical limb ischemia.
J. Vasc. Surg. 42(4), 710–716 (2005)
41. K. Liu, L.E. Chen, A.V. Seaber, J.R. Urbaniak, Influences of inflation rate and duration on
vasodilatory effect by intermittent pneumatic compression in distant skeletal muscle. J. Orthop.
Res. 17(3), 415–420 (1999)
42. M.L. Mihok, C.L. Murrant, Rapid biphasic arteriolar dilations induced by skeletal muscle
contraction are dependent on stimulation characteristics. Can. J. Physiol. Pharmacol. 82(4),
282–287 (2004)
43. P. Moscicka, M.T. Szewczyk, J. Cwajda-Bialasik, A. Jawien, The role of compression therapy
in the treatment of venous leg ulcers. Adv Clin Exp Med. (2018)
44. E.A. Nelson, U. Adderley, Venous leg ulcers. BMJ Clin Evid. (2016)
45. E.A. Nelson, S.E. Bell-Syer, Compression for preventing recurrence of venous ulcers. Cochrane
Database Systematic Rev. 9, CD002303 (2014)
46. E.A. Nelson, A. Hillman, K. Thomas, Intermittent pneumatic compression for treating venous
leg ulcers. Cochrane Database Systematic Rev. 5, CD001899 (2014)
47. A.N. Nicolaides, J. Fareed, A.K. Kakkar, A.J. Comerota, S.Z. Goldhaber, R. Hull et al., Prevention and treatment of venous thromboembolism–international consensus statement. Int. Angiol.
32(2), 111–260 (2013)
48. S. Nikolovska, L. Pavlova, A. Ancevski, A. Petrov, A. Arsovski, E. Dejanova, The role of
nitric oxide in the pathogenesis of venous ulcers. Acta Dermatovenerol. Croat. 13(4), 242–246
(2005)
49. S. Nikolovska, A. Arsovski, K. Damevska, G. Gocev, L. Pavlova, Evaluation of two different
intermittent pneumatic compression cycle settings in the healing of venous ulcers: a randomized
trial. Med. Sci. Monitor 11(7), CR337–CR343 (2005)
397
28. A.M. Gardner, R.H. Fox, C. Lawrence, T.D. Bunker, R.S. Ling, A.G. MacEachern, Reduction
of post-traumatic swelling and compartment pressure by impulse compression of the foot. J.
Bone Joint Surg. Br. 72(5), 810–815 (1990)
29. A.M.N. Gardner, R.H. Fox, The Venous System in Health and Disease (IOS Press, 2001)
30. D. Goldman, A.S. Popel, A computational study of the effect of vasomotion on oxygen transport
from capillary networks. J. Theor. Biol. 209(2), 189–199 (2001)
31. C.N. Hall, C. Reynell, B. Gesslein, N.B. Hamilton, A. Mishra, B.A. Sutherland et al., Capillary
pericytes regulate cerebral blood flow in health and disease. Nature 508(7494), 55–60 (2014)
32. N. Hori, R. Wiest, R.J. Groszmann, Enhanced release of nitric oxide in response to changes in
flow and shear stress in the superior mesenteric arteries of portal hypertensive rats. Hepatology
28(6), 1467–1473 (1998)
33. M.H. Howlader, P.D. Smith, Microangiopathy in chronic venous insufficiency: quantitative
assessment by capillary microscopy. Eur. J. Vasc. Endovasc. Surg. 26(3), 325–331 (2003)
34. S.K. Kakkos, J.A. Caprini, G. Geroulakos, A.N. Nicolaides, G. Stansby, D.J. Reddy, et al.,
Combined intermittent pneumatic leg compression and pharmacological prophylaxis for
prevention of venous thromboembolism. Cochrane Database Systematic Rev. 9, CD005258
(2016)
35. R.F. Kelly, H.M. Snow, Characteristics of the response of the iliac artery to wall shear stress
in the anaesthetized pig. J. Physiol. 582(Pt 2), 731–743 (2007)
36. B.S. Kirby, R.E. Carlson, R.R. Markwald, W.F. Voyles, F.A. Dinenno, Mechanical influences on
skeletal muscle vascular tone in humans: insight into contraction-induced rapid vasodilatation.
J. Physiol. 583(Pt 3), 861–874 (2007)
37. V.V. Kislukhin, Regulation of oxygen consumption by vasomotion. Math. Biosci. 191(1), 101–
108 (2004)
38. P.J. Kolari, K. Pekanmaki, R.T. Pohjola, Transcutaneous oxygen tension in patients with postthrombotic leg ulcers: treatment with intermittent pneumatic compression. Cardiovasc. Res.
22(2), 138–141 (1988)
39. H.D. Kvernmo, A. Stefanovska, K.A. Kirkeboen, K. Kvernebo, Oscillations in the human
cutaneous blood perfusion signal modified by endothelium-dependent and endotheliumindependent vasodilators. Microvasc. Res. 57(3), 298–309 (1999)
40. N. Labropoulos, L.R. Leon Jr., A. Bhatti, S. Melton, S.S. Kang, A.M. Mansour et al., Hemodynamic effects of intermittent pneumatic compression in patients with critical limb ischemia.
J. Vasc. Surg. 42(4), 710–716 (2005)
41. K. Liu, L.E. Chen, A.V. Seaber, J.R. Urbaniak, Influences of inflation rate and duration on
vasodilatory effect by intermittent pneumatic compression in distant skeletal muscle. J. Orthop.
Res. 17(3), 415–420 (1999)
42. M.L. Mihok, C.L. Murrant, Rapid biphasic arteriolar dilations induced by skeletal muscle
contraction are dependent on stimulation characteristics. Can. J. Physiol. Pharmacol. 82(4),
282–287 (2004)
43. P. Moscicka, M.T. Szewczyk, J. Cwajda-Bialasik, A. Jawien, The role of compression therapy
in the treatment of venous leg ulcers. Adv Clin Exp Med. (2018)
44. E.A. Nelson, U. Adderley, Venous leg ulcers. BMJ Clin Evid. (2016)
45. E.A. Nelson, S.E. Bell-Syer, Compression for preventing recurrence of venous ulcers. Cochrane
Database Systematic Rev. 9, CD002303 (2014)
46. E.A. Nelson, A. Hillman, K. Thomas, Intermittent pneumatic compression for treating venous
leg ulcers. Cochrane Database Systematic Rev. 5, CD001899 (2014)
47. A.N. Nicolaides, J. Fareed, A.K. Kakkar, A.J. Comerota, S.Z. Goldhaber, R. Hull et al., Prevention and treatment of venous thromboembolism–international consensus statement. Int. Angiol.
32(2), 111–260 (2013)
48. S. Nikolovska, L. Pavlova, A. Ancevski, A. Petrov, A. Arsovski, E. Dejanova, The role of
nitric oxide in the pathogenesis of venous ulcers. Acta Dermatovenerol. Croat. 13(4), 242–246
(2005)
49. S. Nikolovska, A. Arsovski, K. Damevska, G. Gocev, L. Pavlova, Evaluation of two different
intermittent pneumatic compression cycle settings in the healing of venous ulcers: a randomized
trial. Med. Sci. Monitor 11(7), CR337–CR343 (2005)
