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Showing 1 to 4 of 4 for “"Rückenmarksverletzung"”.

  1. Neurales tissue engineering zur Unterstützung anatomischer und funktioneller Wiederherstellung nach akuter experimenteller Rückenmarksläsion der adulten Ratte

    Injuries to the spinal cord induce distinct changes at the lesion site. Over recent years, it has been shown that the hostile environment of the reactive, lesioned central nervous system inhibits axonal regrowth. This is in stark contrast to the lesioned peripheral nervous system which has a strong …

    aachen Repository record for Neurales tissue engineering zur Unterstützung anatomischer und funktioneller Wiederherstellung nach akuter experimenteller Rückenmarksläsion der adulten Ratte (opens in a new tab)

  2. Thalidomid und Rolipram führen zu funktionell relevanten Verbesserungen der Motorik nach traumatischen Rückenmarksverletzungen bei der Ratte

    Traumatic spinal cord injury (SCI) causes permanent motor, sensory and autonomic deficits. The primary lesion characterised by the initial mechanic tissue damage is following by a cascade of secondary tissue degeneration. The release of potent pro-inflammatory cytokines tumour necrosis factor alpha …

    aachen Repository record for Thalidomid und Rolipram führen zu funktionell relevanten Verbesserungen der Motorik nach traumatischen Rückenmarksverletzungen bei der Ratte (opens in a new tab)

  3. An investigation into the characteristics and potential therapeutic application of human neural progenitor cell-derived astrocytes in experimental spinal cord injury

    Damage to the spinal cord leads to severe, and often permanent, motor, sensory and autonomic disturbances. A multitude of mechanism may contribute to spinal cord injury (SCI), including apoptotic and necrotic death of neurons, astrocytes and oligodendrocytes, axonal injury, demyelination, …

    aachen Repository record for An investigation into the characteristics and potential therapeutic application of human neural progenitor cell-derived astrocytes in experimental spinal cord injury (opens in a new tab)

  4. Tissue engineering with glial cells and a novel biodegradable matrix to promote functional repair following experimental spinal cord injuries

    It has been well known for centuries that injuries to the spinal cord usually result in dramatic consequences for the individual concerned, without the prospect for healing or cure. The ancient Egyptians declared that spinal cord injury (SCI) was “a condition not to be treated”. In the late 1800’s …

    aachen Repository record for Tissue engineering with glial cells and a novel biodegradable matrix to promote functional repair following experimental spinal cord injuries (opens in a new tab)