Multimodal monitoring in traumatic brain injury: current status and future directions.
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[1] E. Connolly,et al. Ventriculostomy-related Infections: A Critical Review of the Literature , 2002, Neurosurgery.
[2] David T Delpy,et al. The oxygen dependency of cerebral oxidative metabolism in the newborn piglet studied with 31P NMRS and NIRS. , 2003, Advances in experimental medicine and biology.
[3] Marvin Bergsneider,et al. Metabolic Crisis without Brain Ischemia is Common after Traumatic Brain Injury: A Combined Microdialysis and Positron Emission Tomography Study , 2005, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[4] E. Gratton,et al. Non-invasive optical monitoring of the newborn piglet brain using continuous-wave and frequency-domain spectroscopy. , 1999, Physics in medicine and biology.
[5] U. Ungerstedt,et al. Assessment of the Lower Limit for Cerebral Perfusion Pressure in Severe Head Injuries by Bedside Monitoring of Regional Energy Metabolism , 2003, Anesthesiology.
[6] J. Pickard,et al. Monitoring and interpretation of intracranial pressure , 2004, Journal of Neurology, Neurosurgery & Psychiatry.
[7] P. Al-Rawi,et al. Tissue Oxygen Index: Thresholds for Cerebral Ischemia Using Near-Infrared Spectroscopy , 2006, Stroke.
[8] N. Stocchetti,et al. High cerebral perfusion pressure improves low values of local brain tissue O2 tension (PtiO2) in focal lesions. , 1998, Acta neurochirurgica. Supplement.
[9] C. Kalkman,et al. Effect of intracranial pressure monitoring and targeted intensive care on functional outcome after severe head injury. , 2004, Critical care medicine.
[10] J. Cruz. The first decade of continuous monitoring of jugular bulb oxyhemoglobinsaturation: management strategies and clinical outcome. , 1998, Critical care medicine.
[11] P. Bjerre,et al. Cerebral microdialysis monitoring: determination of normal and ischemic cerebral metabolisms in patients with aneurysmal subarachnoid hemorrhage. , 2000, Journal of neurosurgery.
[12] E. Meaudre,et al. Cerebral microdialysis and Ptio2 for neuro‐monitoring before decompressive craniectomy , 2006, Acta anaesthesiologica Scandinavica.
[13] Guy B. Williams,et al. Incidence and Mechanisms of Cerebral Ischemia in Early Clinical Head Injury , 2004, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[14] E. Mackenzie,et al. Management of severe head injury: Institutional variations in care and effect on outcome* , 2002, Critical care medicine.
[15] M. Nuwer,et al. Increased incidence and impact of nonconvulsive and convulsive seizures after traumatic brain injury as detected by continuous electroencephalographic monitoring. , 1999, Journal of neurosurgery.
[16] J. Pickard,et al. Effect of cerebral perfusion pressure augmentation on regional oxygenation and metabolism after head injury* , 2005, Critical care medicine.
[17] M. Nuwer,et al. Early and persistent impaired percent alpha variability on continuous electroencephalography monitoring as predictive of poor outcome after traumatic brain injury. , 2002, Journal of neurosurgery.
[18] M Smith,et al. Cerebral microdialysis: research technique or clinical tool. , 2006, British journal of anaesthesia.
[19] J. Zentner,et al. Does Tissue Oxygen-Tension Reliably Reflect Cerebral Oxygen Delivery and Consumption? , 2002, Anesthesia and analgesia.
[20] U. Ungerstedt,et al. Intracerebral microdialysis and bedside biochemical analysis in patients with fatal traumatic brain lesions , 2001, Acta anaesthesiologica Scandinavica.
[21] Measuring brain tissue oxygenation compared with jugular venous oxygen saturation for monitoring cerebral oxygenation after traumatic brain injury. , 1999, Anesthesia and analgesia.
[22] V. Nenov,et al. Delayed increase in extracellular glycerol with post-traumatic electrographic epileptic activity: support for the theory that seizures induce secondary injury. , 2002, Acta neurochirurgica. Supplement.
[23] M A Poca,et al. Interhemispheric supratentorial intracranial pressure gradients in head-injured patients: are they clinically important? , 1999, Journal of neurosurgery.
[24] U. Ungerstedt,et al. Intracerebral Microdialysis in Clinical Practice: Baseline Values for Chemical Markers during Wakefulness, Anesthesia, and Neurosurgery , 2000, Neurosurgery.
[25] A. Gupta,et al. The role of tissue oxygen monitoring in patients with acute brain injury. , 2006, British journal of anaesthesia.
[26] D. Delpy,et al. Noninvasive Measurement of Cerebral Blood Flow in Adults Using Near-Infrared Spectroscopy and Indocyanine Green: A Pilot Study , 2002, Journal of neurosurgical anesthesiology.
[27] P. Reilly,et al. Brain injury: the pathophysiology of the first hours.'Talk and Die revisited' , 2001, Journal of Clinical Neuroscience.
[28] J. Pickard,et al. Continuous assessment of cerebral autoregulation: clinical and laboratory experience. , 2003, Acta neurochirurgica. Supplement.
[29] K. Kiening,et al. Edema and brain trauma , 2004, Neuroscience.
[30] J D Pickard,et al. Cerebral autoregulation following head injury. , 2001, Journal of neurosurgery.
[31] C. Robertson,et al. Relationship of brain tissue PO2 to outcome after severe head injury. , 1998, Critical care medicine.
[32] J D Pickard,et al. Laboratory testing of three intracranial pressure microtransducers: technical report. , 1996, Neurosurgery.
[33] R. Narayan,et al. SjvO2 monitoring in head-injured patients. , 1995, Journal of neurotrauma.
[34] D. Delpy,et al. Performance comparison of several published tissue near-infrared spectroscopy algorithms. , 1995, Analytical biochemistry.
[35] Samir M Fakhry,et al. Management of brain-injured patients by an evidence-based medicine protocol improves outcomes and decreases hospital charges. , 2004, The Journal of trauma.
[36] W. Poon,et al. Cerebral venous oxygen saturation monitoring: is dominant jugular bulb cannulation good enough? , 1996, British journal of neurosurgery.
[37] R. Bullock,et al. Continuous monitoring of cerebral substrate delivery and clearance: initial experience in 24 patients with severe acute brain injuries. , 1997, Neurosurgery.
[38] John D Pickard,et al. Correlation between Cerebral Blood Flow, Substrate Delivery, and Metabolism in Head Injury: A Combined Microdialysis and Triple Oxygen Positron Emission Tomography Study , 2002, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[39] J. Pickard,et al. Continuous assessment of the cerebral vasomotor reactivity in head injury. , 1997, Neurosurgery.
[40] M Crompton,et al. The mitochondrial permeability transition pore and its role in cell death. , 1999, The Biochemical journal.
[41] V. Eskesen,et al. Trends in monitoring patients with aneurysmal subarachnoid haemorrhage. , 2005, British journal of anaesthesia.
[42] Mark Cope,et al. Measuring Cerebral Oxygenation During Normobaric Hyperoxia: A Comparison of Tissue Microprobes, Near-Infrared Spectroscopy, and Jugular Venous Oximetry in Head Injury , 2003, Anesthesia and analgesia.
[43] P. Smielewski,et al. Evaluation of a Near-Infrared Spectrometer (NIRO 300) for the Detection of Intracranial Oxygenation Changes in the Adult Head , 2001, Stroke.
[44] Does tissue oxygen-tension reliably reflect cerebral oxygen delivery and consumption? , 2002 .
[45] J. Pickard,et al. Adverse Cerebral Events Detected after Subarachnoid Hemorrhage Using Brain Oxygen and Microdialysis Probes , 2002, Neurosurgery.
[46] Sean M. Grady,et al. Clinical trials in head injury. , 1999, Journal of neurotrauma.
[47] J L Tocher,et al. Measuring the burden of secondary insults in head-injured patients during intensive care. , 1994, Journal of neurosurgical anesthesiology.
[48] Peter J. Kirkpatrick,et al. Specialist neurocritical care and outcome from head injury , 2002, Intensive Care Medicine.
[49] Yukio Kobayashi,et al. Tissue oxygenation monitor using NIR spatially resolved spectroscopy , 1999, Photonics West - Biomedical Optics.
[50] R. Grossman,et al. Cerebral arteriovenous oxygen difference as an estimate of cerebral blood flow in comatose patients. , 1989, Journal of neurosurgery.
[51] D. Choi. Ionic dependence of glutamate neurotoxicity , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[52] Julio Cruz. Continuous monitoring of partial pressure of brain tissue oxygen in patients with severe head injury. , 1996 .
[53] W. Hoffman,et al. Brain Tissue Oxygen, Carbon Dioxide, and pH in Neurosurgical Patients at Risk for Ischemia , 1996, Anesthesia and analgesia.
[54] P. Hopton,et al. Measurement of cerebral blood volume using near-infrared spectroscopy and indocyanine green elimination. , 1999, Journal of applied physiology.
[55] D. McArthur,et al. Persistently Low Extracellular Glucose Correlates with Poor Outcome 6 Months after Human Traumatic Brain Injury despite a Lack of Increased Lactate: A Microdialysis Study , 2003, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[56] J. Meixensberger,et al. Studies of tissue PO2 in normal and pathological human brain cortex. , 1993, Acta neurochirurgica. Supplementum.
[57] A Villringer,et al. Changes in blood flow velocity and diameter of the middle cerebral artery during hyperventilation: assessment with MR and transcranial Doppler sonography. , 1997, AJNR. American journal of neuroradiology.
[58] Oscar D. Guillamondegui,et al. Reduced mortality rate in patients with severe traumatic brain injury treated with brain tissue oxygen monitoring. , 2005, Journal of neurosurgery.
[59] J. Pickard,et al. Measurement of brain tissue oxygenation performed using positron emission tomography scanning to validate a novel monitoring method. , 2002, Journal of neurosurgery.
[60] R. Chesnut,et al. Secondary brain insults after head injury: clinical perspectives. , 1995, New horizons.
[61] R. Bullock,et al. Association between elevated brain tissue glycerol levels and poor outcome following severe traumatic brain injury. , 2005, Journal of neurosurgery.
[62] J D Pickard,et al. Use of ICM+ software for on-line analysis of intracranial and arterial pressures in head-injured patients. , 2006, Acta neurochirurgica. Supplement.
[63] C. Avezaat,et al. Continuous monitoring of partial pressure of brain tissue oxygen in patients with severe head injury. , 1996, Neurosurgery.
[64] T Metens,et al. Integration of the metabolic data of positron emission tomography in the dosimetry planning of radiosurgery with the gamma knife: early experience with brain tumors. Technical note. , 2000, Journal of neurosurgery.
[65] J. Meixensberger,et al. Continuous assessment of cerebrovascular autoregulation after traumatic brain injury using brain tissue oxygen pressure reactivity* , 2006, Critical care medicine.
[66] J. M. de Campos,et al. Camino® intracranial pressure monitor: prospective study of accuracy and complications , 2000, Journal of neurology, neurosurgery, and psychiatry.
[67] S. Wisniewski,et al. Effect of hyperventilation on extracellular concentrations of glutamate, lactate, pyruvate, and local cerebral blood flow in patients with severe traumatic brain injury* , 2002, Critical care medicine.
[68] J. Pickard,et al. Cerebral perfusion pressure in head-injured patients: a noninvasive assessment using transcranial Doppler ultrasonography. , 1998, Journal of neurosurgery.