Publications by authors named "P zu Eulenburg"

Objective: Peripapillary hyperreflective ovoid mass-like structures (PHOMS) have been identified in ophthalmological and neurological diseases. Since PHOMS were found more frequently in these cohorts compared to healthy controls, it is assumed that the presence of PHOMS reflects a secondary disease marker of unknown significance. The extent to which disease-specific differences are reflected in PHOMS has not yet been sufficiently investigated.

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The number of long duration human spaceflights has increased substantially over the past 15 years, leading to the discovery of numerous effects on the CNS. Microgravity results in headward fluid shifts, ventricular expansion, an upward shift of the brain within the skull, and remodelling of grey and white matter. The fluid changes are correlated with changes to perivascular space and spaceflight associated neuro-ocular syndrome.

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In addition to general anesthesia and mechanical ventilation, robotic-assisted laparoscopic radical prostatectomy (RALP) necessitates maintaining a capnoperitoneum and placing the patient in a pronounced downward tilt (Trendelenburg position). While the effects of the resulting fluid shift on the cardiovascular system seem to be modest and well tolerated, the effects on the brain and the blood-brain barrier have not been thoroughly investigated. Previous studies indicated that select patients showed an increase in the optic nerve sheath diameter (ONSD), detected by ultrasound during RALP, which suggests an elevation in intracranial pressure.

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Article Synopsis
  • Recent studies suggest that vestibular loss may contribute to cognitive decline and hippocampal volume loss, linking it to Alzheimer's disease risk.
  • This research aimed to compare MRI brain volumes of adults with bilateral vestibulopathy (BV) to matched controls and examine if otolith function affects hippocampal volume.
  • Findings revealed no significant differences in brain or hippocampal volumes between BV participants and controls, indicating vestibular dysfunction may not directly impact hippocampal atrophy.
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Space exploration objectives will soon move from low Earth orbit to distant destinations like Moon and Mars. The present work provides an up-to-date roadmap that identifies critical research gaps related to human behavior and performance in altered gravity and space. The roadmap summarizes (1) key neurobehavioral challenges associated with spaceflight, (2) the need to consider sex as a biological variable, (3) the use of integrative omics technologies to elucidate mechanisms underlying changes in the brain and behavior, and (4) the importance of understanding the neural representation of gravity throughout the brain and its multisensory processing.

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