The "Lund Concept" for the treatment of severe head trauma--physiological principles and clinical application.
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Indomethacin in controlling intracranial hypertension secondary to severe traumatic brain injuryCritical care for patients with massive ischemic strokeHuman jugular vein collapse in the upright posture: implications for postural intracranial pressure regulation.Isolated Brain Trauma in Cats Triggers Rapid Onset of HypovolemiaEvaluation of clinical efficacy and safety of cervical trauma collars: differences in immobilization, effect on jugular venous pressure and patient comfortSNP improves cerebral hemodynamics during normotension but fails to prevent sex dependent impaired cerebral autoregulation during hypotension after brain injury.Critical Evaluation of the Lund Concept for Treatment of Severe Traumatic Head Injury, 25 Years after Its IntroductionCapillary transit time heterogeneity and flow-metabolism coupling after traumatic brain injury.Systemic, local, and imaging biomarkers of brain injury: more needed, and better use of those already established?Association of hemoglobin concentration and mortality in critically ill patients with severe traumatic brain injury.The role of the microcirculation in delayed cerebral ischemia and chronic degenerative changes after subarachnoid hemorrhage.Effects of prostacyclin on the early inflammatory response in patients with traumatic brain injury-a randomised clinical study.In my opinion: serum albumin should be maintained during neurocritical care.Implications of neurophysiological parameters in persons with severe brain injury with respect to improved patient outcomes: a retrospective review.Optimal cerebral perfusion pressure: are we ready for it?Traumatic brain injury-induced autoregulatory dysfunction and spreading depression-related neurovascular uncoupling: Pathomechanisms, perspectives, and therapeutic implications.DECRA…Where do we go from here?Therapeutic Hypothermia in Children and Adults with Severe Traumatic Brain Injury.Cerebral microdialysis and PtiO2 to decide unilateral decompressive craniectomy after brain gunshotLong-term cognitive outcome after neurosurgically treated childhood traumatic brain injury.Severe traumatic brain injury: consequences of early adverse events.Modified Lund concept versus cerebral perfusion pressure-targeted therapy: a randomized controlled study in patients with secondary brain ischaemia.A prospective outcome study observing patients with severe traumatic brain injury over 10-15 years.Traumatic brain injury: Intracranial pressure monitoring in traumatic brain injury.Blood-brain barrier permeability is positively correlated with cerebral microvascular perfusion in the early fluid percussion-injured brain of the rat.Prostacyclin influences the pressure reactivity in patients with severe traumatic brain injury treated with an ICP-targeted therapy.Predictive value of somatosensory evoked potentials for patients with severe traumatic brain injury.[Volume replacement in intensive care medicine].Research priorities in neurocritical care.
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P2860
The "Lund Concept" for the treatment of severe head trauma--physiological principles and clinical application.
description
2006 nî lūn-bûn
@nan
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
2006年论文
@zh
2006年论文
@zh-cn
name
The "Lund Concept" for the tre ...... ples and clinical application.
@ast
The "Lund Concept" for the tre ...... ples and clinical application.
@en
type
label
The "Lund Concept" for the tre ...... ples and clinical application.
@ast
The "Lund Concept" for the tre ...... ples and clinical application.
@en
prefLabel
The "Lund Concept" for the tre ...... ples and clinical application.
@ast
The "Lund Concept" for the tre ...... ples and clinical application.
@en
P2860
P1476
The "Lund Concept" for the tre ...... ples and clinical application.
@en
P2093
Per-Olof Grände
P2860
P2888
P304
P356
10.1007/S00134-006-0294-3
P577
2006-08-02T00:00:00Z