Lymphatic vessels are of special importance for tissue homeostasis, and increases of their density may foster tissue regeneration. Exercise could be a relevant tool to increase lymphatic vessel density (LVD); however, a significant lack of knowledge remains to understand lymphangiogenesis in skeletal muscles upon training. Interestingly, training-induced lymphangiogenesis has never been studied in the heart. We studied lymphangiogenesis and LVD upon chronic concentric and chronic eccentric muscle contractions in both rat skeletal (Mm. Edl and Sol) and cardiac muscles.status: publishe
KEY POINTS: Capillary rarefaction is hypothesised to contribute to impaired exercise tolerance in ca...
Abstract Loss of popliteal lymphatic vessel (PLV) contractions, which is associated with damage to l...
The diaphragmatic lymphatic system drains fluid and solutes from the pleural and peritoneal cavities...
The mechanism through which the stresses developed in the diaphragmatic tissue during skeletal muscl...
Introduction: The functions of lymphatic system include homeostasis, drain of skeletal muscles and r...
The lymphatic vasculature is a blind-ended network covering most tissues and organs of the body, cru...
The lymphatic vasculature is a blind-ended network, present in all mammals, which is responsible for...
Background: Lymphatic vessels drain fluids and solutes from interstitial spaces and serosal cavities...
<p>Collecting lymphatic vessels are critical for the transport of lymph and its cellular contents to...
The weakening of Lymphatic Muscle (LM) is an essential contributor to the lymphatic pump dysfunction...
Water and plasma are forced from the capillaries into the interstitial fluid. This fluid is useful l...
Lymphatic vessels are present throughout the entire body in all mammals and function to regulate tis...
The role of the mechanical properties of the initial lymphatic wall and of the surrounding tissue in...
Objective In recent years, a large number of experimental studies have shown that the proliferation ...
Non-technical summary: The formation of new blood vessels (angiogenesis) is important during develop...
KEY POINTS: Capillary rarefaction is hypothesised to contribute to impaired exercise tolerance in ca...
Abstract Loss of popliteal lymphatic vessel (PLV) contractions, which is associated with damage to l...
The diaphragmatic lymphatic system drains fluid and solutes from the pleural and peritoneal cavities...
The mechanism through which the stresses developed in the diaphragmatic tissue during skeletal muscl...
Introduction: The functions of lymphatic system include homeostasis, drain of skeletal muscles and r...
The lymphatic vasculature is a blind-ended network covering most tissues and organs of the body, cru...
The lymphatic vasculature is a blind-ended network, present in all mammals, which is responsible for...
Background: Lymphatic vessels drain fluids and solutes from interstitial spaces and serosal cavities...
<p>Collecting lymphatic vessels are critical for the transport of lymph and its cellular contents to...
The weakening of Lymphatic Muscle (LM) is an essential contributor to the lymphatic pump dysfunction...
Water and plasma are forced from the capillaries into the interstitial fluid. This fluid is useful l...
Lymphatic vessels are present throughout the entire body in all mammals and function to regulate tis...
The role of the mechanical properties of the initial lymphatic wall and of the surrounding tissue in...
Objective In recent years, a large number of experimental studies have shown that the proliferation ...
Non-technical summary: The formation of new blood vessels (angiogenesis) is important during develop...
KEY POINTS: Capillary rarefaction is hypothesised to contribute to impaired exercise tolerance in ca...
Abstract Loss of popliteal lymphatic vessel (PLV) contractions, which is associated with damage to l...
The diaphragmatic lymphatic system drains fluid and solutes from the pleural and peritoneal cavities...