Search results for "Subdural hemorrhage"

showing 4 items of 4 documents

Occurrence of Spontaneous Cortical Spreading Depression Is Increased by Blood Constituents and Impairs Neurological Recovery after Subdural Hematoma …

2019

Acute subdural hemorrhage (ASDH) is common and associated with severe morbidity and mortality. To date, the role of spontaneous cortical spreading depression (sCSD) in exaggerating secondary injury after ASDH, is poorly understood. The present study contains two experimental groups: First, we investigated and characterized the occurrence of sCSD after subdural blood infusion (300 μL) via tissue impedance (IMP) measurement in a rat model. Second, we compared the occurrence and influence of sCSD on lesion growth and neurological deficit in the presence and absence of whole blood constituents. In the first experimental group, three IMP traits could be distinguished after ASDH: no sCSD, recurre…

Male030506 rehabilitationTraumatic brain injurymacromolecular substancesHead trauma03 medical and health sciences0302 clinical medicineHematomamedicineAnimalsTissue impedanceIntracranial pressurebusiness.industryCortical Spreading DepressionSubdural hemorrhageBlood ProteinsRecovery of Functionmedicine.diseaseRatsHematoma SubduralParaffinAnesthesiaCortical spreading depressionSevere morbidityNeurology (clinical)0305 other medical sciencebusinessOils030217 neurology & neurosurgeryJournal of neurotrauma
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Erythropoietin neuroprotection is enhanced by direct cortical application following subdural blood evacuation in a rat model of acute subdural hemato…

2013

Recombinant human erythropoietin (EPO) has been successfully tested as neuroprotectant in brain injury models. The first large clinical trial with stroke patients, however, revealed negative results. Reasons are manifold and may include side-effects such as thrombotic complications or interactions with other medication, EPO concentration, penetration of the blood-brain-barrier and/or route of application. The latter is restricted to systemic application. Here we hypothesize that EPO is neuroprotective in a rat model of acute subdural hemorrhage (ASDH) and that direct cortical application is a feasible route of application in this injury type. The subdural hematoma was surgically evacuated a…

MaleIntracranial PressureLesionRats Sprague-DawleyHematomamedicineAnimalsHematoma Subdural AcuteErythropoietinIntracranial pressureCerebral Cortexbusiness.industryGeneral NeuroscienceSubdural hemorrhageVenous bloodmedicine.diseaseCombined Modality TherapyRatsDisease Models AnimalNeuroprotective AgentsCerebral blood flowBlood chemistryErythropoietinAnesthesiamedicine.symptombusinessmedicine.drugNeuroscience
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Spontaneous Cortical Spreading Depression and Intracranial Pressure Following Acute Subdural Hematoma in a Rat

2012

Acute subdural hemorrhage (ASDH) is a frequent and devastating consequence of traumatic brain injury. Tissue damage develops rapidly and makes treatment even more difficult. Management of increased intracranial pressure (ICP) due to extravasated blood volume and brain swelling is often insufficient to control all adverse effects of ASDH. In addition to sheer volume, spontaneously triggered cortical spreading depression (CSD) that leads to cell death following ischemia or trauma may contribute to injury development after ASDH. Therefore, we explored the occurrence of CSD by tissue impedance (IMP) measurement in a rat model subjected to ASDH. IMP and intraventricular and mean arterial pressur…

Mean arterial pressurebusiness.industryTraumatic brain injuryCortical spreading depressionAnesthesiaIschemiaMedicineSubdural hemorrhageBlood volumebusinessmedicine.diseaseAcute subdural hematomaIntracranial pressure
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Acute Subdural Hematoma in Pigs: Role of Volume on Multiparametric Neuromonitoring and Histology

2008

Traumatic brain injury (TBI) is often complicated by acute subdural hemorrhage (ASDH) with a high mortality rate. The pathophysiological mechanisms behind such an injury type and the contribution of blood to the extent of an injury remain poorly understood. Therefore, the goals of this study were to establish a porcine ASDH model in order to investigate pathomechanisms of ASDH and to compare effects induced by blood or sheer volume. Thus, we infused 2, 5, and 9 mL of blood (up to 15% of intracranial volume), and we compared a 5-mL blood and paraffin oil volume to separate out effects of extravasated blood on brain tissue. An extended neuromonitoring was applied that lasted up to 12 h after …

MicrodialysisPathologymedicine.medical_specialtyIntracranial PressureSwineTraumatic brain injuryGlutamic AcidBrain EdemaLesionOxygen ConsumptionEvoked Potentials SomatosensorymedicineAnimalsHematoma Subdural AcuteLactic AcidCerebral perfusion pressureIntracranial pressurebusiness.industryBrainSubdural hemorrhagemedicine.diseasePathophysiologyOxygenDisease Models AnimalSomatosensory evoked potentialBrain InjuriesAnesthesiaNeurology (clinical)medicine.symptombusinessJournal of Neurotrauma
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