Munich Chronotype Questionnaire

The Munich Chronotype Questionnaire is a self-report instrument that estimates an individual’s chronotype, or preferred timing of sleep and daily activity, by examining typical sleep patterns. It compares sleep onset, awakening, and sleep duration on workdays and free days, using the midpoint of sleep on free days as an indicator of biological timing and the difference between schedules to estimate social jetlag. In behavioral research, the questionnaire helps relate circadian preferences to mood, cognition, health behaviors, and performance. Its accessible format supports population studies, personalized scheduling, and investigations of how modern work or school demands interact with human circadian rhythms.

Munich Chronotype Questionnaire - Related Videos

Research

JoVE Journal - Medicine

Quantifying Glomerular Permeability of Fluorescent Macromolecules Using 2-Photon Microscopy in Munich Wistar Rats

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Cited by 28 •

2013

A technique utilizing high resolution intavital 2-photon microscopy to directly visualize and quantify gloemrular filtration in surface glomeruli. This method allows for direct determination of permeability characteristics of macromolecules in both normal and diseased states.

Mesoscopic Fluorescence Tomography for In-vivo Imaging of Developing Drosophila

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Cited by 9 •

2009

Mesoscopic fluorescence tomography operates beyond the penetration limits of tissue-sectioning fluorescence microscopy. The technique is based on multi-projection illumination and a photon transport description. We demonstrate in-vivo whole-body 3D visualization of the morphogenesis of GFP-expressing wing imaginal discs in Drosophila melanogaster.

Born Normalization for Fluorescence Optical Projection Tomography for Whole Heart Imaging

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Cited by 15 •

2009

We suggest a Born normalized approach for Optical Projection Tomography (BnOPT) that accounts for the absorption properties of imaged samples to obtain accurate and quantitative fluorescence tomographic reconstructions. We use the proposed algorithm to reconstruct the fluorescence molecular probe distribution within small animal organs.

Lineage-reprogramming of Pericyte-derived Cells of the Adult Human Brain into Induced Neurons

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Cited by 21 •

2014

Targeting brain-resident cells for direct lineage-reprogramming offers new perspectives for brain repair. Here we describe a protocol of how to prepare cultures enriched for brain-resident pericytes from the adult human cerebral cortex and convert these into induced neurons by retrovirus-mediated expression of the transcription factors Sox2 and Ascl1.

Research

JoVE Journal - Medicine
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Multispectral Real-time Fluorescence Imaging for Intraoperative Detection of the Sentinel Lymph Node in Gynecologic Oncology

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Cited by 41 •

2010

Fluorescence imaging is a promising innovative modality for image-guided surgery in surgical oncology. In this video we describe the technical procedure for detection of the sentinel lymph node using fluorescence imaging as showcased in gynecologic oncologicy. A multispectral fluorescence camera system, together with the fluorescent agent indocyanine green, is applied.

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