Objective: We aimed to evaluate the risks of death and cardiovascular death of different subtypes of masked hypertension, defined by either isolated daytime or nighttime blood pressure (BP) elevation, or both, compared with patients with normal both office and 24-h BP.
Methods: We selected 4999 patients with masked hypertension (normal office BP and elevated 24-h BP). They were divided in three different categories: isolated daytime masked hypertension (elevated daytime BP and normal nighttime BP, 800 patients), isolated nighttime masked hypertension (elevated nighttime BP and normal daytime BP, 1069 patients) and daytime and nighttime masked hypertension (elevation of both daytime and nighttime BP, 2989).
Over a decade ago, it was discovered that microglia, the brain's immune cells, engulf synaptic material in a process named microglial pruning. This term suggests that microglia actively sculpt brain circuits by tagging and phagocytosing unwanted synapses. However, live imaging studies have yet to demonstrate how microglial synapse elimination occurs.
View Article and Find Full Text PDFThe gene inositol polyphosphate-5-phosphatase D (INPP5D), which encodes the lipid phosphatase SH2-containing inositol polyphosphate 5-phosphatase 1 (SHIP1), is associated with the risk of Alzheimer's disease (AD). How it influences microglial function and brain physiology is unclear. Here, we showed that SHIP1 was enriched in early stages of healthy brain development.
View Article and Find Full Text PDFβ-blockers that easily cross the blood-brain barrier (BBB) seem to diminish the risk of Alzheimer's disease (AD), hypothetically facilitating waste clearance. However, their effect on AD pathophysiological markers is unknown. We compared cerebrospinal fluid (CSF) AD biomarker levels among non-demented individuals taking low, intermediate, or high BBB permeable β-blockers in two samples (ADNI: = 216; EPAD: = 79).
View Article and Find Full Text PDFMassively multidimensional diffusion magnetic resonance imaging combines tensor-valued encoding, oscillating gradients, and diffusion-relaxation correlation to provide multicomponent subvoxel parameters depicting some tissue microstructural features. This method was successfully implemented ex vivo in microimaging systems and clinical conditions with tensor-valued gradient waveform of variable duration giving access to a narrow diffusion frequency (ω) range. We demonstrate here its preclinical in vivo implementation with a protocol of 389 contrast images probing a wide diffusion frequency range of 18 to 92 Hz at b-values up to 2.
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