Search results for "Brain tissue"

showing 10 items of 23 documents

Measurement of brain tissue pressure in cold induced cerebral oedema.

1973

Experiments were performed in order to evaluate the concept that brain oedema is associated with an increase in local interstitial fluid pressure. Assuming that the pressure measured by the cotton wick technique represents the hydrostatic interstitial fluid pressure, the tissue pressure was recorded with pressure transducers in the white matter adjacent and remote to a local cold injury, in the opposite hemisphere, and in the cisterna magna. In 9 cats during steady-state conditions mean tissue pressures between 1.20±0.30 mm Hg and 2.33±0.80 mm Hg were found, as compared to a mean CSF pressure of 5.17±0.82 mm Hg. The tissue pressure was found to increase significantly adjacent to the lesion …

CSF PRESSUREIntracranial Pressurebusiness.industryLocal cold injuryBrain EdemaBrain tissueBlood flowAnatomyCisterna magnaPressure sensorWhite matterLesionCold TemperatureHypercapniamedicine.anatomical_structuremedicineCatsHydrostatic PressurePressureAnimalsSurgeryNeurology (clinical)medicine.symptombusinessCerebrospinal FluidActa neurochirurgica
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Chronic otitis caused by heterotopic brain tissue in pterygopalatine fossa

2007

Summary Heterotopic brain tissue is a rare is congenital anomaly, it may present at any age but it is frequently in infancy. This anomaly can occur most frequently in nasal region, although rests elsewhere in the digestive tract, in facial tissue or in lungs have been reported. Heterotopic brain tissue has been defined as a mass composed of mature brain tissue, outside the cranial cavity or spinal canal. We present a 9 years old girl with history of left chronic otitis and nasal obstruction caused by heterotopic brain tissue in pterygopalatine fossa.

Heterotopic brain tissuebusiness.industryChronic otitisChronic otitisBrain tissueAnatomymedicine.diseaseConductive hearing lossConductive hearing lossParapharyngeal spacemedicine.anatomical_structureOtorhinolaryngologyNasal regionPediatrics Perinatology and Child HealthParapharyngeal spacemedicineCranial cavitySpinal canalbusinessGlue earPterygopalatine fossaInternational Journal of Pediatric Otorhinolaryngology Extra
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Supporting recovery from brain injury

2018

The beauty and intricacy of the human brain is unfortunately also mirrored by its vulnerability. Damage to the brain is typically permanent. Because cells of the adult brain, apart from rare exceptions, no longer divide, there is essentially no regrowth of damaged brain tissue. Acquired brain injury in the majority of cases occurs directly through traumatic events such as an accident involving a blow to the head or indirectly through interruption of the blood supply, namely a stroke. Brain injury is a major burden, with an estimated 1.7 million people in the United States suffering a traumatic brain injury and nearly 800,000 Americans suffering a stroke each year ( 1 , 2 ). However, current…

0301 basic medicinemedicine.medical_specialtyMultidisciplinarybusiness.industryTraumatic brain injuryTreatment optionsRecovery of FunctionBrain tissueHuman brainmedicine.disease03 medical and health sciences030104 developmental biology0302 clinical medicinePhysical medicine and rehabilitationmedicine.anatomical_structureBrain InjuriesmedicineHumansBlood supplybusinessAcquired brain injury030217 neurology & neurosurgeryScience
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Local H2-Clearance and PO2-Measurements in Microareas of the Brain Tissue in Rats

1969

Lubbers [5], as well as others, measured the oxygen partial pressure of the exposed cerebral cortex by means of small platinum microelectrodes. They registered low pO2 values between 1 and 3 mmHg in certain areas of the cortex, despite the fact that the EEG was of normal pattern. In order to decide whether these low pO2 values are a result of low rCBF, or high local oxygen consumption of brain tissue, we developed a new method. Using the same platinum needle, we measured both local pO2 values and H2-clearance curves in microareas of the brain tissue. Cater and Silver [2], Lubbers [4, 5], and others used glass-insulated platinum microelectrodes to measure local pO2. Further, Aukland, Bower a…

Microelectrodemedicine.anatomical_structureCerebral blood flowmedicine.diagnostic_testCerebral cortexChemistryCortex (anatomy)medicineBrain tissueBlood flowElectroencephalographycirculatory and respiratory physiologyBiomedical engineering
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Young neurons from medial ganglionic eminence disperse in adult and embryonic brain.

1999

In this study, we identified neuronal precursors that can disperse through adult mammalian brain tissue. Transplanted neuronal precursors from embryonic medial ganglionic eminence (MGE), but not from lateral ganglionic eminence (LGE) or neocortex, dispersed and differentiated into neurons in multiple adult brain regions. In contrast, only LGE cells were able to migrate efficiently from the adult subventricular zone to the olfactory bulb. In embryonic brain slices, MGE cells migrated extensively toward cortex. Our results demonstrate that cells in different germinal regions have unique migratory potentials, and that adult mammalian brain can support widespread dispersion of specific populati…

Ganglionic eminenceSubventricular zoneMice Inbred StrainsNeocortexBrain damageBiologyInterneuron migrationMiceCell MovementFetal Tissue TransplantationCortex (anatomy)medicineAnimalsBrain Tissue TransplantationBrain Tissue TransplantationNeuronsNeocortexGeneral NeuroscienceMedian EminenceOlfactory BulbCorpus StriatumOlfactory bulbmedicine.anatomical_structurenervous systemLac Operonmedicine.symptomNeuroscienceStem Cell TransplantationNature neuroscience
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MDMA Administration and Heat Shock Proteins Response: Foreseeing a Molecular Link

2010

Molecular and cellular mechanisms of MDMA-induced toxicity have been extensively studied in a number of experimental models. Nevertheless, only few studies investigated the involvement of HSPs ("molecular chaperones") in MDMA organs toxicity. In the present minireview we highlight this subject analysing the results of these studies conducted especially on brain tissue. Despite of it seems obvious that HSPs overexpression is a protective reaction against MDMA treatment, the molecular mechanisms for exerting their action are far to be undiscovered. At the same time, we need of comprehensive studies concerning the whole range of Hsps/chaperones expressions in all organs after acute and chronic…

N-Methyl-34-methylenedioxyamphetamineModels NeurologicalBrainPharmaceutical ScienceMDMABrain tissuePharmacologyBiologyHeat shock proteinmental disordersToxicityHallucinogensmedicineAnimalsHumans34-Methylenedioxy-N-methylamphetamine brain toxicity Hsp27 Hsp32 Hsp60 Hsp70.Heat-Shock ProteinsHeat-Shock Responsepsychological phenomena and processesBiotechnologymedicine.drugCurrent Pharmaceutical Biotechnology
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Haptoglobin interacts with apolipoprotein E and beta-amyloid and influences their crosstalk.

2014

Beta-amyloid accumulation in brain is a driving force for Alzheimer's disease pathogenesis. Apolipoprotein E (ApoE) represents a critical player in beta-amyloid homeostasis, but its role in disease progression is controversial. We previously reported that the acute-phase protein haptoglobin binds ApoE and impairs its function in cholesterol homeostasis. The major aims of this study were to characterize the binding of haptoglobin to beta-amyloid, and to evaluate whether haptoglobin affects ApoE binding to beta-amyloid. Haptoglobin is here reported to form a complex with beta-amyloid as shown by immunoblotting experiments with purified proteins, or by its immunoprecipitation in brain tissues …

Apolipoprotein EMalePhysiologyDiseaseBeta-amyloidBiochemistryAmyloid beta-Protein PrecursorAlzheimer' diseasepolycyclic compoundsskin and connective tissue diseasesapolipoprotein EbiologyChemistryMedicine (all)Haptoglobinfood and beveragesBrainApoE/A? complexGeneral MedicineMiddle AgedhaptoglobinCrosstalk (biology)ApoE/Aβ complexSettore MED/26 - Neurologialipids (amino acids peptides and proteins)FemaleAlzheimer's diseaseProtein BindingAdultmedicine.medical_specialtyImmunoprecipitationCognitive NeuroscienceEnzyme-Linked Immunosorbent AssayCHO CellsTransfectionAlzheimer' disease; ApoE/Aβ complex; Apolipoprotein E; Beta-amyloid; Haptoglobin; Human brain tissue; Adult; Aged; Alzheimer Disease; Amyloid beta-Peptides; Amyloid beta-Protein Precursor; Analysis of Variance; Animals; Apolipoproteins E; Brain; CHO Cells; Cricetulus; Enzyme-Linked Immunosorbent Assay; Female; Haptoglobins; Humans; Immunoprecipitation; Male; Middle Aged; Mutation; Protein Binding; Transfection; Biochemistry; Cell Biology; Physiology; Cognitive Neuroscience; Medicine (all)NOApolipoproteins ECricetulusAlzheimer DiseaseInternal medicinemental disordersmedicineAnimalsHumansImmunoprecipitationAgedAnalysis of VarianceAmyloid beta-PeptidesHaptoglobinsNeurotoxicityAlzheimer’diseaseCell Biologymedicine.diseasehuman brain tissueEndocrinologyMutationbiology.proteinAlzheimer'diseaseHomeostasisACS chemical neuroscience
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The Role of Monoamines in the Development of Cold-Induced Edema

1976

Our results show that even the experimentally induced high concentrations of exogenous 5-HT in the brain tissue during the early phase of edema formation are not able to increase the amount of fluid accumulation in the normal and injured brain tissue. The changes of the endogenous 5-HT levels in the blood and the brain tissue result in similar hemispheric water and RISA differences between the injured and uninjured half of the brain. Moreover, 5-HT concentrations elevated by 100% failed to produce detectable edema in the normal brain tissue of the rat.

medicine.medical_specialtyChemistryBrain edemaEndogenyBrain tissueMonoamine neurotransmitterEndocrinologyInternal medicineEdemamedicineFluid accumulationEdema formationmedicine.symptomEarly phase
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First multiphoton tomography of brain in man

2016

We report on the first two-photon in vivo brain tissue imaging study in man. High resolution in vivo histology by multiphoton tomography (MPT) including two-photon FLIM was performed in the operation theatre during neurosurgery to evaluate the feasibility to detect label-free tumor borders with subcellular resolution. This feasibility study demonstrates, that MPT has the potential to identify tumor borders on a cellular level in nearly real-time.

Fluorescence-lifetime imaging microscopymedicine.medical_specialtyPathologybusiness.industryBrain tumorImaging studyMultiphoton tomographyBrain tissueCellular levelOptical Biopsymedicine.disease03 medical and health sciences0302 clinical medicineIn vivo030220 oncology & carcinogenesismedicineMedical physicsbusiness030217 neurology & neurosurgeryClinical and Translational Neurophotonics; Neural Imaging and Sensing; and Optogenetics and Optical Manipulation
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Modulation of hippocampal acetylcholine release after fimbria-fornix lesions and septal transplantation in rats

1997

Abstract Female Long–Evans rats sustained electrolytic lesions of the fimbria and the dorsal fornix causing a partial lesion of the septohippocampal pathway. Two weeks later, the rats received intra-hippocampal grafts of fetal septal cell suspensions. Nine to twelve months later, the release of acetylcholine (ACh) in the hippocampus of sham-operated, lesion-only and grafted rats was measured by microdialysis. The extent of cholinergic (re)innervation was determined by acetylcholinesterase (AChE) staining and densitometry. In both lesion-only and grafted rats, the ratio of ACh release to AChE staining intensity was increased as compared to sham-operated rats, indicating a loss of endogenous …

medicine.medical_specialtySciences du Vivant [q-bio]/Neurosciences [q-bio.NC]Microdialysis[SDV]Life Sciences [q-bio][SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyScopolamineMuscarinic AntagonistsHippocampal formationBiologySerotonergicHippocampus03 medical and health scienceschemistry.chemical_compound0302 clinical medicineInternal medicineNeural PathwaysmedicineAnimalsBrain Tissue TransplantationCholinergic neuronNeurotransmitterComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciences8-Hydroxy-2-(di-n-propylamino)tetralinGeneral NeuroscienceFornixMuscarinic antagonistRats Inbred StrainsAcetylcholineRatsEndocrinologychemistryCholinergic FibersAnesthesiaReceptors SerotoninCholinergicRaphe NucleiFemaleSeptal Nuclei[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Receptors Serotonin 5-HT1030217 neurology & neurosurgeryAcetylcholinemedicine.drug
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