Changes of diameter and length in cylindrical segments of canine femoral arteries during activation at different pressures

Author:

Wiegand W.,Golenhofen K.

Publisher

Springer Science and Business Media LLC

Subject

Physiology (medical),Clinical Biochemistry,Physiology

Reference25 articles.

1. Assman R, Henrich H (1977) A new video-angiometer device for on-line measurement of diameters in microvessels. Bibl Anat 16:354–357

2. Assmann R, Henrich H (1978) A video-angiometer for simultaneous and continuous measurement of inner and outer vessel diameters. Pflügers Arch 376:263–266

3. Attinger FML (1968) Two-dimensional in-vitro studies of femoral arterial walls of the dog. Circ Res 22:829–840

4. Bader H (1963) The anatomy and physiology of the vascular wall. In: Handbook of physiology, section 2: Circulation, vol II. American Physiological Society, Washington DC, USA, pp 865–889

5. Bevan JA (1976) Chairman's summary of the discussion. In: Bevan JA, Burnstock G, Johansson B, Maxwell RA, Nedergaard OA (eds) Vascular neuroeffector mechanisms. Karger, Basel, pp 205–207

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1. Length as a Determinant of the Longitudinal Stress and Diameter of Different Conduit Arteries;Biomedizinische Technik/Biomedical Engineering;2009-07-17

2. Comparison of conduit vessel and resistance vessel reactivity: influence of intimal permeability;American Journal of Physiology-Heart and Circulatory Physiology;1993-04-01

3. Arteriolar smooth muscle responses are modulated by an intramural diffusion barrier;American Journal of Physiology-Heart and Circulatory Physiology;1989-07-01

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