Ultrastructural study of brain microvessels in patients with traumatic cerebral contusions (original) (raw)
- 129 Accesses
- 29 Citations
- Explore all metrics
An Erratum to this article was published on 01 February 2008
Summary
Brain tissue from 11 patients with traumatic cerebral contusions submitted to surgery was studied. Control biopsy specimens were obtained from 5 patients undergoing ventriculo-peritoneal shunts for “communicating” hydrocephalus. After collection, the small fragments were fixed by immersion in glutaraldehyde-osmium and embedded in Epon. Semi-thin sections stained with toluidine blue were observed with the light microscope. Thin sections stained with lead citrate and uranyl acetate were observed using a Jeol electron microscope. In tissues from patients with head trauma a clear space most probably corresponding to fluid accumulation was systematically observed around microvessels. Ultrastructurally endothelial cells from these specimens exhibited signs of marked intracellular oedema, tight junctions being intact. Pinocytotic activity was increased, mainly at the abluminal surface. Swelling of astrocytic perivascular processes and the appearance of macrophagic cells with voluminous lysosomes were also observed. The authors conclude that the oedema of endothelial cells probably represent a central fact in the pathophysiology of traumatic brain oedema and speculate on the putative involvement of stretch-activated receptors in this condition.
Access this article
Subscribe and save
- Get 10 units per month
- Download Article/Chapter or eBook
- 1 Unit = 1 Article or 1 Chapter
- Cancel anytime Subscribe now
Buy Now
Price excludes VAT (USA)
Tax calculation will be finalised during checkout.
Instant access to the full article PDF.
Similar content being viewed by others
References
- Bakay L, Lee JC, Lee GC,et al (1977) Experimental cerebral concussion. J Neurosurg 47: 525–531
PubMed Google Scholar - Bouma GJ, Muizelaar JP, Choi SC,et al (1991) Cerebral circulation and metabolism after severe traumatic brain injury: the elusive role of ischemia. J Neurosurg 75: 685–693
PubMed Google Scholar - Bruns D, Jahn R (1995) Real-time measurements of transmitter release from single synaptic vesicles. Nature 377: 62–65
PubMed Google Scholar - Bullock R, Maxwell WL, Graham DI,et al (1991) Glial swelling following human cerebral contusion: an ultrastructural study. J Neurol Neurosurg Psychiatry 54: 427–437
PubMed Google Scholar - Bullock R, Smith R, Favier J,et al (1985) Brain specific gravidity and CT scan measurements after human head injury. J Neurosurg 63: 64–68
PubMed Google Scholar - Dixon CE, Lyeth BG, Povlishock JT (1987) A fluid percussion model of experimental brain injury in the rat. J Neurosurg 67: 110–119
PubMed Google Scholar - Ebisu T, Naruse S, Horikawa Y,et al (1993) Discrimination between different types of white matter oedema with diffusionweighted MR imaging. J Magn Reson Imaging 3 (6): 863–868
PubMed Google Scholar - Ellis EF, McKinney KA, Willoughby,et al (1995) A new model for rapid stretch-induced injury of cells in culture: characterization of the model using astrocytes. J Neurotrauma 12(3): 325–339
PubMed Google Scholar - Foda MA, Marmarou A (1994) A new model of diffuse brain injury in rats. Part II — Morphological characterization. J Neurosurg 80: 301–313
PubMed Google Scholar - Hagiwara N, Masuda H, Shoda M,et al (1992) Stretch-activated anion currents of rabbit cardiac myocytes. J Physiology 456: 283–302
Google Scholar - Hariri RJ (1994) Cerebral oedema. Neurosurg Clin North Am 5(4): 687–706
Google Scholar - Hekmatpanah J, Hekmatpanah CR (1992) Microvascular alterations following cerebral contusions in rats. J Neurosurg 62: 888–897
Google Scholar - Kimelberg HK (1992) Astrocytic edema in CNS trauma. J Neurotrauma 9(1): S7-S8
Google Scholar - Lang DA, Teasdale GH, MacPherson P,et al (1994) Diffuse brain swelling after head injury: more malignant in adults than in children? Neurosurg 80: 675–680
Google Scholar - Liu HM, Sturner WQ (1988) Extravasation of plasma protein in brain trauma. Forensic Sci Int 38: 285–295
PubMed Google Scholar - Lobato RD, Sarabia R, Cordobes F,et al (1988) Post traumatic cerebral hemispheric swelling — analysis of 55 cases studied with computerized tomography. J Neurosurg 68: 417–423
PubMed Google Scholar - Long DM (1982) Traumatic brain edema. Clin Neurosurg 29: 174–202
PubMed Google Scholar - Marmarou A (1994) Traumatic brain edema: an overview. Acta Neurochir (Wien) 60: 421–424
Google Scholar - Marmarou A, Foda MA, Van der Brink,et al (1994) A new model of diffuse brain injury in rats. Part I — Pathophysiology and biomechanics. J Neurosurg 80: 291–300
PubMed Google Scholar - Maxwell WL, Irvine A, Adams JH,et al (1988) Response of cerebral microvasculature to brain injury. J Pathol 155: 327–335
PubMed Google Scholar - Miller JD, Bullock R, Graham DI,et al (1990) Ischemic brain damage in a model of acute subdural haematoma. Neurosurgery 27(3): 433–439
PubMed Google Scholar - Naruse K, Sokabe M (1993) Involvement of stretch-activated ion channels in Ca mobilization to mechanical stretch in endothelial cells. Am J Physiol 264: 1037–1044
Google Scholar - Oppenheimer DR (1968) Microscopic lesions in the brain following head injury. J Neurol Neurosurg Psychiatry 31: 299–306
PubMed Google Scholar - Popp R, Hoyer I, Meyer J,et al (1992) Stretch-activated non selective cation channels in the antiluminal membrane of porcine cerebral capillaries. J Physiol 454: 435–449
PubMed Google Scholar - Rinder L, Olsson Y (1968) Studies on vascular permeability changes in experimental brain concussion. I — Distribution of circulating fluorescein indicators in brain and cervical cord after sudden mechanical loading of the brain. Acta Neuropathol 11: 183–200
PubMed Google Scholar - Sevick RJ, Kanda F, Mintorovich J,et al (1992) Cytotoxic brain edema: assessment with diffusion-weighted MR imaging. Radiology 185(3): 687–690
PubMed Google Scholar - Shapira Y, Sutton D, Artru AA (1993) Blood-brain barrier permeability, cerebral edema and neurologic function after closed head injury in rats. Anesth Analg 77: 141–148
PubMed Google Scholar - Sulivan HG, Martinez J, Becker DP,et al (1976) Fluid-percussion model of mechanical brain injury in the cat. J Neurosurg 45: 520–534
Google Scholar - Takei K, McPherson PS, Schmid SL,et al (1995) Tubular membrane invaginations coated by dymamim rings are induced by GTP-S in nerve terminals. Nature 374: 186–190
PubMed Google Scholar - Toulmond S, Duval D, Serrano A,et al (1993) Biomechanical and histological alterations induced by fluid-percussion brain injury in the rat. Brain Res 620: 24–31
PubMed Google Scholar - Tornheim PA, Laurie FY, Wagner KL,et al (1985) Acute responses to experimental blunt head trauma: topography of white matter edema. Brain Res 337: 81–90
PubMed Google Scholar - Tornheim PA, Liwnicz BH, Hirsch CS,et al (1983) Acute responses to blunt head trauma — experimental model and gross pathology. J Neurosurg 59: 431–438
PubMed Google Scholar - Tornheim PA, McLaurin RL (1981) Acute changes in regional brain water content following experimental closed head injury. J Neurosurg 55: 407–413
PubMed Google Scholar - Tornheim PA, Prioleau GR, McLaurin RL (1984) Acute responses to blunt head trauma-topography of cerebral cortical edema. J Neurosurg 60: 473–480
PubMed Google Scholar
Author information
Authors and Affiliations
- Institute of Pharmacology and Therapeutics, Hospital S. João, Porto, Portugal
A. Sarmento, N. Borges & I. Azevedo - Department of Neurology and Neurosurgery, Medical Faculty, Hospital S. João, Porto, Portugal
R. Vaz & C. Cruz
Authors
- R. Vaz
You can also search for this author inPubMed Google Scholar - A. Sarmento
You can also search for this author inPubMed Google Scholar - N. Borges
You can also search for this author inPubMed Google Scholar - C. Cruz
You can also search for this author inPubMed Google Scholar - I. Azevedo
You can also search for this author inPubMed Google Scholar
Additional information
An erratum to this article is available at http://dx.doi.org/10.1007/s00701-008-1511-3.
Rights and permissions
About this article
Cite this article
Vaz, R., Sarmento, A., Borges, N. et al. Ultrastructural study of brain microvessels in patients with traumatic cerebral contusions.Acta neurochir 139, 215–220 (1997). https://doi.org/10.1007/BF01844754
- Issue Date: March 1997
- DOI: https://doi.org/10.1007/BF01844754