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The primary role of the bronchomediastinal lymph trunks is to transport lymph, which contains proteins, lipids, and immune cells such as lymphocytes, from the thoracic organs, including the lungs, heart, trachea, and esophagus, to the bloodstream. These trunks act as major conduits for lymph to reach larger lymphatic ducts or directly enter the ...
Lymph trunk is a collection of lymph vessels that carries lymph, and is formed by confluence of many efferent lymph vessels. It in turn drains into one of the two lymph ducts ( right lymph duct and the thoracic duct ).
Lymph nodes of the lungs: The lymph is drained from the lung tissue through subsegmental, segmental, lobar and interlobar lymph nodes to the hilar lymph nodes, which are located around the hilum (the pedicle, which attaches the lung to the mediastinal structures, containing the pulmonary artery, the pulmonary veins, the main bronchus for each side, some vegetative nerves and the lymphatics) of ...
Bronchomediastinal trunk. d. Right lymphatic trunk. ... and subclavian veins or into the jugular lymphatic trunk; ... page 700 of the 20th edition of Gray's Anatomy ...
Diagram showing parts of the body that drain into the right lymphatic duct. The right duct drains lymph fluid from: the upper right section of the trunk, (right thoracic cavity, via the right bronchomediastinal trunk) [1] the right arm (via the right subclavian trunk) [1] and right side of the head and neck (via the right jugular trunk) [1]
The tracheobronchial lymph glands. Details; ... This article incorporates text in the public domain from page 715 of the 20th edition of Gray's Anatomy (1918)
In humans, the cisterna chyli is located posterior to the abdominal aorta on the anterior aspect of the bodies of the first and second lumbar vertebrae (L1 and L2). There it forms the beginning of the primary lymph vessel, the thoracic duct, which transports lymph and chyle from the abdomen via the aortic opening of the diaphragm up to the junction of left subclavian vein and internal jugular ...
The lymph transport, in the thoracic duct, is mainly caused by the action of breathing, aided by the duct's smooth muscle and by internal valves which prevent the lymph from flowing back down again. There are also two valves at the junction of the duct with the left subclavian vein, to prevent the flow of venous blood into the duct.