IPLab:Lab 4:Thrombosis: Difference between revisions

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File:IPLab4Thrombosis1.jpg|This is a gross photograph of thrombosed coronary artery (arrows).  
File:IPLab4Thrombosis1.jpg|This is a gross photograph of thrombosed coronary artery (arrows).  
File:IPLab4Thrombosis2b.jpg|This is a low-power photomicrograph of thrombosed coronary artery. The thrombus (1) completely occludes the vessel. Note the layering of the thrombus. The fibrous cap is ruptured (arrow) and there is hemorrhage into the atherosclerotic plaque. Note the cholesterol crystals in the plaque.
File:IPLab4Thrombosis2.jpg|This is a low-power photomicrograph of thrombosed coronary artery. The thrombus (1) completely occludes the vessel. Note the layering of the thrombus. The fibrous cap is ruptured (arrow) and there is hemorrhage into the atherosclerotic plaque. Note the cholesterol crystals in the plaque.
File:IPLab4Thrombosis3.jpg|This is a higher-power photomicrograph of the ruptured fibrous cap (arrows) with hemorrhage (1) into the atherosclerotic plaque.
File:IPLab4Thrombosis3.jpg|This is a higher-power photomicrograph of the ruptured fibrous cap (arrows) with hemorrhage (1) into the atherosclerotic plaque.
File:IPLab4Thrombosis4.jpg|This is another high-power photomicrograph of the ruptured fibrous cap (arrows) with hemorrhage (1) into the atherosclerotic plaque. Note the presence of cholesterol crystals.
File:IPLab4Thrombosis4.jpg|This is another high-power photomicrograph of the ruptured fibrous cap (arrows) with hemorrhage (1) into the atherosclerotic plaque. Note the presence of cholesterol crystals.

Revision as of 19:20, 8 July 2020

Clinical Summary

This 83-year-old male developed chest pain. He had been awakened the previous night with dull chest pain which was retrosternal and radiated through to his back. The pain was associated with sweating, nausea, and vomiting and could not be relieved by antacids. He refused to go to the doctor but the next morning he developed severe epigastric pain and had several episodes of tachycardia (150-160 beats per minute) and later cardiac standstill. He had a history of hypertension and diabetes.

At autopsy the heart weighed 500 grams. There was massive acute myocardial infarction (about 2 days old) involving the posterior left ventricle, interventricular septum, and right ventricle from apex to base. The infarct was transmural, and there was a small rupture in the soft infarcted area at the apex. There were 1200 mL of blood within the right pleural cavity, probably secondary to this rupture. The coronary arteries showed moderate to severe atherosclerosis throughout the coronary tree.

Images

Virtual Microscopy

<peir-vm>IPLab4Thrombosis</peir-vm>

Study Questions

  • <spoiler text="What is the most common cause of acute myocardial infarction?">Thrombotic occlusion of a coronary artery at the site of an atherosclerotic plaque. Usually, there is rupture of the fibrous cap with exposure of collagen and release of atheromatous material which initiates thrombosis.</spoiler>
  • <spoiler text="What is the source for the fibroblasts and endothelial cells that are present in organizing thrombi?">Organization of a thrombus involves a process similar to the normal healing response. First there is inflammation with macrophages that phagocytose the thrombotic material. Then fibroblasts and endothelial cells from the vessel wall and the vasa vasorum of the vessel migrate into thrombotic material. This process results in a picture similar to granulation tissue in a healing wound.</spoiler>
  • <spoiler text="Does recanalization of a thrombus results in normal blood flow to the tissue?">Usually not. The recanalized lumen is not very large and by the time the thrombus is recanalized, the tissue supplied by that artery is usually already dead. Any blood flow down this vessel will help to accelerate the wound healing process in the tissue downstream.</spoiler>

Additional Resources

Reference

Journal Articles

Images

Related IPLab Cases