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LINK . SPRINGER . COM {}

  1. Analyzed Page
  2. Matching Content Categories
  3. CMS
  4. Monthly Traffic Estimate
  5. How Does Link.springer.com Make Money
  6. Keywords
  7. Topics
  8. Questions
  9. Schema
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We are analyzing https://link.springer.com/article/10.1007/s00401-008-0457-0.

Title:
Lymphatic drainage of the brain and the pathophysiology of neurological disease | Acta Neuropathologica
Description:
There are no conventional lymphatics in the brain but physiological studies have revealed a substantial and immunologically significant lymphatic drainage from brain to cervical lymph nodes. Cerebrospinal fluid drains via the cribriform plate and nasal mucosa to cervical lymph nodes in rats and sheep and to a lesser extent in humans. More significant for a range of human neurological disorders is the lymphatic drainage of interstitial fluid (ISF) and solutes from brain parenchyma along capillary and artery walls. Tracers injected into grey matter, drain out of the brain along basement membranes in the walls of capillaries and cerebral arteries. Lymphatic drainage of antigens from the brain by this route may play a significant role in the immune response in virus infections, experimental autoimmune encephalomyelitis and multiple sclerosis. Neither antigen-presenting cells nor lymphocytes drain to lymph nodes by the perivascular route and this may be a factor in immunological privilege of the brain. Vessel pulsations appear to be the driving force for the lymphatic drainage along artery walls, and as vessels stiffen with age, amyloid peptides deposit in the drainage pathways as cerebral amyloid angiopathy (CAA). Blockage of lymphatic drainage of ISF and solutes from the brain by CAA may result in loss of homeostasis of the neuronal environment that may contribute to neuronal malfunction and dementia. Facilitating perivascular lymphatic drainage of amyloid-β (Aβ) in the elderly may prevent the accumulation of Aβ in the brain, maintain homeostasis and provide a therapeutic strategy to help avert cognitive decline in Alzheimer’s disease.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {📚}

  • Education
  • Science
  • Health & Fitness

Content Management System {📝}

What CMS is link.springer.com built with?

Custom-built

No common CMS systems were detected on Link.springer.com, and no known web development framework was identified.

Traffic Estimate {📈}

What is the average monthly size of link.springer.com audience?

🌠 Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 7,642,828 visitors per month in the current month.

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How Does Link.springer.com Make Money? {💸}

We're unsure if the website is profiting.

While many websites aim to make money, others are created to share knowledge or showcase creativity. People build websites for various reasons. This could be one of them. Link.springer.com has a revenue plan, but it's either invisible or we haven't found it.

Keywords {🔍}

google, scholar, pubmed, cas, brain, fluid, weller, cerebrospinal, amyloid, drainage, disease, lymphatic, neurol, pathol, cerebral, neuropathol, human, article, cervical, lymph, alzheimers, hydrocephalus, nodes, lymphatics, perivascular, angiopathy, system, neurobiol, rat, van, interstitial, vessels, appl, physiol, study, res, immune, central, nervous, barrier, significance, exp, research, acta, multiple, sclerosis, cells, access, arachnoid, neurosurg,

Topics {✒️}

experimental autoimmune encephalomyelitis month download article/chapter age-related beta-amyloid deposition blood–cerebrospinal fluid barrier amyloid-{beta} peptide remnants cerebral beta-amyloid angiopathy amyloid-beta dynamics correlate cerebral beta-amyloid angiopathies hong-yeen yow & roxana autoimmune encephalomyelitis nasal lymphatic vessels central nervous system adoptive transfer cryolesion-eae prion disorders fine needle aspiration amyloid-beta peptide van der valk blood-brain barrier blood–brain barrier cerebral interstitial fluid harling-berg cj amyloid beta protein full article pdf amyloid beta accumulates amyloid-beta peptides beta-amyloid formation focal brain damage brain interstitial fluid cerebral amyloid angiopathy del bigio mr cerebral blood vessels privacy choices/manage cookies adaptive immune system lymphatic immune gateways cerebrospinal fluid absorption experimental hydrocephalus cerebral amyloid angiopathies related subjects cervical lymphatic obstruction arterial amyloid angiopathy amyloid beta-proteins 1–40 vascular diseases cerebrospinal fluid dynamics” basement membranes intracranial blood vessels avert cognitive decline check access cadasil mild cognitive impairment wierenga-wolf af

Questions {❓}

  • Bechmann I, Galea I, Perry VH (2007) What is the blood-brain barrier (not)?
  • Djuanda E, Lee R, Weller RO (1998) A search for the lymphatic drainage of the human brain?
  • Galea I, Bechmann I, Perry VH (2007) What is immune privilege (not)?
  • Hatterer E, Davoust N, Didier-Bazes M, Vuaillat C, Malcus C, Belin MF, Nataf S (2006) How to drain without lymphatics?
  • Papaiconomou C, Bozanovic-Sosic R, Zakharov A, Johnston M (2002) Does neonatal cerebrospinal fluid absorption occur via arachnoid projections or extracranial lymphatics?

Schema {🗺️}

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         description:There are no conventional lymphatics in the brain but physiological studies have revealed a substantial and immunologically significant lymphatic drainage from brain to cervical lymph nodes. Cerebrospinal fluid drains via the cribriform plate and nasal mucosa to cervical lymph nodes in rats and sheep and to a lesser extent in humans. More significant for a range of human neurological disorders is the lymphatic drainage of interstitial fluid (ISF) and solutes from brain parenchyma along capillary and artery walls. Tracers injected into grey matter, drain out of the brain along basement membranes in the walls of capillaries and cerebral arteries. Lymphatic drainage of antigens from the brain by this route may play a significant role in the immune response in virus infections, experimental autoimmune encephalomyelitis and multiple sclerosis. Neither antigen-presenting cells nor lymphocytes drain to lymph nodes by the perivascular route and this may be a factor in immunological privilege of the brain. Vessel pulsations appear to be the driving force for the lymphatic drainage along artery walls, and as vessels stiffen with age, amyloid peptides deposit in the drainage pathways as cerebral amyloid angiopathy (CAA). Blockage of lymphatic drainage of ISF and solutes from the brain by CAA may result in loss of homeostasis of the neuronal environment that may contribute to neuronal malfunction and dementia. Facilitating perivascular lymphatic drainage of amyloid-β (Aβ) in the elderly may prevent the accumulation of Aβ in the brain, maintain homeostasis and provide a therapeutic strategy to help avert cognitive decline in Alzheimer’s disease.
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      headline:Lymphatic drainage of the brain and the pathophysiology of neurological disease
      description:There are no conventional lymphatics in the brain but physiological studies have revealed a substantial and immunologically significant lymphatic drainage from brain to cervical lymph nodes. Cerebrospinal fluid drains via the cribriform plate and nasal mucosa to cervical lymph nodes in rats and sheep and to a lesser extent in humans. More significant for a range of human neurological disorders is the lymphatic drainage of interstitial fluid (ISF) and solutes from brain parenchyma along capillary and artery walls. Tracers injected into grey matter, drain out of the brain along basement membranes in the walls of capillaries and cerebral arteries. Lymphatic drainage of antigens from the brain by this route may play a significant role in the immune response in virus infections, experimental autoimmune encephalomyelitis and multiple sclerosis. Neither antigen-presenting cells nor lymphocytes drain to lymph nodes by the perivascular route and this may be a factor in immunological privilege of the brain. Vessel pulsations appear to be the driving force for the lymphatic drainage along artery walls, and as vessels stiffen with age, amyloid peptides deposit in the drainage pathways as cerebral amyloid angiopathy (CAA). Blockage of lymphatic drainage of ISF and solutes from the brain by CAA may result in loss of homeostasis of the neuronal environment that may contribute to neuronal malfunction and dementia. Facilitating perivascular lymphatic drainage of amyloid-β (Aβ) in the elderly may prevent the accumulation of Aβ in the brain, maintain homeostasis and provide a therapeutic strategy to help avert cognitive decline in Alzheimer’s disease.
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External Links {🔗}(231)

Analytics and Tracking {📊}

  • Google Tag Manager

Libraries {📚}

  • Clipboard.js
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CDN Services {📦}

  • Crossref

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