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  2. Vasa vasorum - Wikipedia

    en.wikipedia.org/wiki/Vasa_vasorum

    Due to higher radial and circumferential pressures within the vessel wall layers closer to the main lumen of the artery, vasa vasorum externa cannot perfuse these regions of the vessel wall (occlusive pressure). The structure of the vasa vasorum varies with the size, function and location of the vessels.

  3. Blood vessel - Wikipedia

    en.wikipedia.org/wiki/Blood_vessel

    The tunica media may (especially in arteries) be rich in vascular smooth muscle, which controls the caliber of the vessel. Veins do not have the external elastic lamina, but only an internal one. The tunica media is thicker in the arteries rather than the veins. The outer layer is the tunica adventitia and the thickest layer in veins. It is ...

  4. Arteriovenous oxygen difference - Wikipedia

    en.wikipedia.org/.../Arteriovenous_oxygen_difference

    Alternatively, in order to find the efficiency of the lungs in replenishing blood oxygen levels, the a-vO 2 diff may instead be taken by comparing blood from the pulmonary artery and the pulmonary vein; in this case a negative value for a-vO 2 diff would be obtained as the oxygen content of the blood would have increased. [citation needed]

  5. Vein - Wikipedia

    en.wikipedia.org/wiki/Vein

    The smallest veins are the post-capillary venules. Veins have a similar three-layered structure to arteries. The layers known as tunicae have a concentric arrangement that forms the wall of the vessel. The outer layer, is a thick layer of connective tissue called the tunica externa or adventitia; this layer is absent in the post-capillary ...

  6. Venous blood - Wikipedia

    en.wikipedia.org/wiki/Venous_blood

    Though veins might make it appear as such, human blood is never naturally blue. [3] The blue appearance of surface veins is caused mostly by the scattering of blue light away from the outside of venous tissue if the vein is at 0.5 mm deep or more. Veins and arteries appear similar when skin is removed and are seen directly. [4] [5]

  7. Arteriole - Wikipedia

    en.wikipedia.org/wiki/Arteriole

    The up and down fluctuation of the arterial blood pressure is due to the pulsatile nature of the cardiac output and determined by the interaction of the stroke volume versus the volume and elasticity of the major arteries. The decreased velocity of flow in the capillaries increases the blood pressure, due to Bernoulli's principle.

  8. Arterial blood - Wikipedia

    en.wikipedia.org/wiki/Arterial_blood

    Arterial blood is the oxygenated blood in the circulatory system found in the pulmonary vein, the left chambers of the heart, and in the arteries. [1] It is bright red in color, while venous blood is dark red in color (but looks purple through the translucent skin). It is the contralateral term to venous blood. [citation needed]

  9. Microcirculation - Wikipedia

    en.wikipedia.org/wiki/Microcirculation

    Most vessels of the microcirculation are lined by flattened cells of the endothelium and many of them are surrounded by contractile cells called pericytes.The endothelium provides a smooth surface for the flow of blood and regulates the movement of water and dissolved materials in the interstitial plasma between the blood and the tissues.