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[eMicrobe]When cerebrospinal fluid cultures are negative, a study evaluates mNGS for CNS infections, showing positive clinical impact in 65.6% of patients.
www.sciltp.com/journals/eMi...
#metagenomicnextgenerationsequencing #cerebrospinalfluid #centralnervoussysteminfection #pathogen #clinicalimpact

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28 THE CENTRAL NERVOUS SYSTEM, BRAIN AND SPINAL CORD EXPLAINED #50LAM_ANATOMY_ENG
28 THE CENTRAL NERVOUS SYSTEM, BRAIN AND SPINAL CORD EXPLAINED #50LAM_ANATOMY_ENG YouTube video by 50 LIKE A MACHINE

28 THE CENTRAL NERVOUS SYSTEM, BRAIN AND SPINAL CORD EXPLAINED #50LAM_ANATOMY_ENG
youtube.com/shorts/TfCb7...
#centralnervoussystem #brain #spinalcord #cnsanatomy #neuroscience #nervoussystem #cerebrum #cerebellum #brainstem #cerebrospinalfluid

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A Prediction Model for Detecting Dysthyroid Optic Neuropathy Based on Clinical Factors and Imaging Markers of the Optic Nerve and Cerebrospinal Fluid in the Optic Nerve Sheath

A Prediction Model for Detecting Dysthyroid Optic Neuropathy Based on Clinical Factors and Imaging Markers of the Optic Nerve and Cerebrospinal Fluid in the Optic Nerve Sheath

A noninvasive model combining #OpticNerve imaging and #CerebroSpinalFluid sheath metrics predicts #DysthyroidOpticNeuropathy in #ThyroidAssociatedOphthalmopathy with high accuracy, supporting early detection and risk stratification in clinical practice.

Read: doi.org/10.1007/s115...

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New AI approach enables diagnosis and monitoring of brain tumours Read more about the analysis method!

🧠 Precise #tumour classification — without tumour tissue?

An international team incl. #MedUniVienna developed an #AI-based method to classify #braintumours via genetic material from #cerebrospinalfluid & monitor disease progression.

📖 @natcancer.nature.com​

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The paper reveals neurological disease outcomes of tick-borne #encephalitis #virus (#TBEV), and associated #metabolomics in the #CerebrospinalFluid (#CSF).
The group investigated the host #immune and metabolic responses with specific TBEV neurological infectious outcomes.

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Mindfulness for Brain Health
Mindfulness for Brain Health YouTube video by Mindfulness Voyage

New Episode: youtu.be/ssy9vK03Tyo

#mindfulness #mindfulnessbasedcognitivetherapy #mindfulnessbasedprograms #mindfulnessbasedstressreduction #depression #anxiety #stress #cerebrospinalfluid #Alzheimers #dementia

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PNAS Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...

This has significant implications for brain health, particularly around cognitive decline from aging or illness.

www.pnas.org/doi/10.1073/...

#mindfulness #mentalhealth #brainhealth #cerebrospinalfluid #focusedattention #attentionregulation #neurodegeneration #alzheimers #dementia

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Study by Hugh Markus, et al. at Cambridge found impaired movement of #CerebrospinalFluid predicted #Dementia risk later in life among 40,000 adults recruited to the @ukbiobank.bsky.social. @alzdemjournals.bsky.social @alzassociation.bsky.social
➡️ alz-journals.onlinelibrary.wiley.com/doi/10.1002/...

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Homeostasis in Action: How the Brain Stays Sharp and Healthy
Homeostasis in Action: How the Brain Stays Sharp and Healthy YouTube video by Greenhouse for Mental Health Development

Homeostasis in Action: How the Brain Stays Sharp and Healthy

#BrainScience #NeuroscienceExplained #BrainHealth #Neurobiology #CerebrospinalFluid #CSF #BrainBarrier #Hydrocephalus #Neurotrophins #BrainFacts #MindMatters #Homeostasis #BrainFunction #GlialLymphatic

youtube.com/shorts/P9vYt...

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From Ventricles to Vitality: The Fluid That Keeps You Thinking
From Ventricles to Vitality: The Fluid That Keeps You Thinking YouTube video by Greenhouse for Mental Health Development

From Ventricles to Vitality: The Fluid That Keeps You Thinking

#BrainScience #NeuroscienceExplained #CerebrospinalFluid #CSF #BrainHealth #Neurobiology #Hydrocephalus #BrainFacts #MindMatters #AnatomyOfTheBrain #Neurotrophins #BrainHomeostasis #BrainFunction

youtube.com/shorts/IaekV...

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Genome-wide cfDNA fragmentation patterns in cerebrospinal fluid reflect medulloblastoma groups - npj Precision Oncology npj Precision Oncology - Genome-wide cfDNA fragmentation patterns in cerebrospinal fluid reflect medulloblastoma groups

Excited to share our new paper: "Genome-wide cfDNA fragmentation patterns in cerebrospinal fluid reflect medulloblastoma groups."

nature.com/articles/s41...

#Medulloblastoma #Fragmentomics #LiquidBiopsy #cfDNA #CerebrospinalFluid

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Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

The directed motion of #CerebrospinalFluid #CSF in the #brain is key for the distribution & removal of solutes, but how is this flux modulated? @bzottlab.bsky.social &co show that changes in total cerebral #blood volume drive the flow of CSF in humans @plosbiology.org 🧪 plos.io/4lOrHKm

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Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

The directed motion of #CerebrospinalFluid #CSF in the #brain is key for the distribution & removal of solutes, but how is this flux modulated? @bzottlab.bsky.social &co show that changes in total cerebral #blood volume drive the flow of CSF in humans @plosbiology.org 🧪 plos.io/4lOrHKm

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Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

Coupled neuronal activity, gGM, PFI, and CSF fMRI signals during burst-suppression anesthesia. Top left: Experimental design: fMRI recording under deep sevoflurane anesthesia in a Philips Achieva 3.0T scanner. Bottom left: Example scan positioning in a representative subject. Schematic depiction of the fMRI volume superimposed on a sagittal T1-weighted image with representative slice positions for the gGM and PFI masks and slice 1, which contains the CSF mask. Middle: Simultaneous recordings of the EEG with an MRI-compatible, 64-electrode cap with equidistantly arranged electrodes (Easycap) and of three fMRI masks, depicted in representative slices: gGM (white), PFI (blue), and CSF (red). Right: Simultaneously recorded signal time courses from one subject under burst-suppression anesthesia: EEG (green), gGM fMRI (black), PFI fMRI (blue), and CSF fMRI (red). Suppression and burst periods are indicated in light blue and light orange, respectively.

The directed motion of #CerebrospinalFluid #CSF in the #brain is key for the distribution & removal of solutes, but how is this flux modulated? @bzottlab.bsky.social &co show that changes in total cerebral #blood volume drive the flow of CSF in humans @plosbiology.org 🧪 plos.io/4lOrHKm

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Everything went well. Procedure was uncomfortable and a little painful.

Here is a bit of my brain fluid in a sample tube.

#BrainFluid #CerebrospinalFluid #lumbarpuncture

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Effect of Sleeping pills The research found, in mice, sleeping pills are harmful for the brain. Since we share similar brain patterns we might be at risk also.

Effect of Sleeping pills

www.linkedin.com/pulse/effect...

#sleepingpills #ambien #zolpidem #benzodiazepine #norepinephrine #MaikenNedergaard #detoxifying #cerebrospinalfluid #CSF #NREM #qlymphaticsystem #bloodvessels #memory

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#ChoroidPlexus #CerebrospinalFluid #CSF #LongCovid #hEDS

Is this what links The Trifecta? #EDS #POTS #MCAS

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A look from above, nuclei in 🟢

A look from above, nuclei in 🟢

Shown from a different angle without arteriole. The thin lines on the fibroblasts are primary cilia.

Shown from a different angle without arteriole. The thin lines on the fibroblasts are primary cilia.

Closeup of macrophage between fibroblast processes.

Closeup of macrophage between fibroblast processes.

As my first post on #Bluesky I am showing my #3Drendering of a pial #macrophage 🔵 squeezing between #fibroblast 🟡 processes next to a #penetratingarteriole. Nuclei in 🟢. Macrophages move around and help clean up waste in the #cerebrospinalfluid. www.biorxiv.org/content/10.1...

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Yoda1, a #Piezo1 activator, rescues Mengineal #LymphaticVessel-mediated #CerebroSpinalFLuid drainage in🐭with #Aging (2 yr) or #Craniosynostosis (Twist1 deficiency)
45kD Ovalbumin tracer

How many regulatory layers of🧠CSF drainage can be controlled by Piezo1?

#JCI 2024
www.jci.org/articles/vie...

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