1989The Journal of Cardiovascular NursingRequires access

Physiologic mechanisms of hemostasis and fibrinolysis

Marcy L. Diethorn, Linda M. Weld

Open publisher page 9 citations

Abstract

This article describes the interrelated processes and homeostatic controlling mechanisms of hemostasis and fibrinolysis. Hemostasis involves platelets, blood vessels, and coagulation proteins. Primary hemostasis is dependent on platelet adhesion, activation, secretion, and aggregation. Secondary hemostasis consists of intrinsic activation, extrinsic activation, and the common final pathway. Fibrinolysis results in clot dissolution and is initiated endogenously as plasminogen is converted to plasmin.

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What this paper is about

This article describes the interrelated processes and homeostatic controlling mechanisms of hemostasis and fibrinolysis. Hemostasis involves platelets, blood vessels, and coagulation proteins. Primary hemostasis is dependent on platelet adhesion, activation, secretion, and aggregation. Secondary hemostasis consists of intrinsic activation, extrinsic activation, and the common final pathway. Fibrinolysis results in clot dissolution and is initiated endogenously as plasminogen is converted to plasmin.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This article describes the interrelated processes and homeostatic controlling mechanisms of hemostasis and fibrinolysis. Hemostasis involves platelets, blood vessels, and coagulation proteins. Primary hemostasis is dependent on platelet adhesion, activation, secretion, and aggregation. Secondary hemostasis consists of intrinsic activation, extrinsic activation, and the common final pathway. Fibrinolysis results in clot dissolution and is initiated endogenously as plasminogen is converted to plasmin.

Key concepts: Hemostasis, Fibrinolysis, Medicine, Coagulation, Plasmin, Platelet activation, Platelet, Secretion

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