2021
DOI: 10.7554/elife.62524
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Flagellar energetics from high-resolution imaging of beating patterns in tethered mouse sperm

Abstract: We demonstrate a technique for investigating the energetics of flagella or cilia. We record the planar beating of tethered mouse sperm at high resolution. Beating waveforms are reconstructed using proper orthogonal decomposition of the centerline tangent-angle profiles. Energy conservation is employed to obtain the mechanical power exerted by the dynein motors from the observed kinematics. A large proportion of the mechanical power exerted by the dynein motors is dissipated internally by the motors themselves.… Show more

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Cited by 21 publications
(39 citation statements)
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“…1.5 glass coverslip (Thermo Fisher Scientific). Head tethered sperm with free beating flagellum were imaged at room temperature (25°C) within 10–15 min of collection from the cauda epididymis at 400 fps for 10 s of which the first 1,000 frames were used in the analysis as described previously ( Nandagiri et al, 2021 ). N = 25–30 sperm/genotype from at least 5–6 mice were imaged and analyzed.…”
Section: Methodsmentioning
confidence: 99%
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“…1.5 glass coverslip (Thermo Fisher Scientific). Head tethered sperm with free beating flagellum were imaged at room temperature (25°C) within 10–15 min of collection from the cauda epididymis at 400 fps for 10 s of which the first 1,000 frames were used in the analysis as described previously ( Nandagiri et al, 2021 ). N = 25–30 sperm/genotype from at least 5–6 mice were imaged and analyzed.…”
Section: Methodsmentioning
confidence: 99%
“…The best-case blur free motion capture of the system using 400 fps allowed element point velocities of 130 microns per second at Nyquist-Shannon frequency sampling to be measured. Mouse sperm are 110 μm in length and were divided into three parts: mid-piece (24 μm), principal piece (80 μm) and end piece (∼6 μm) for analysis ( Nandagiri et al, 2021 ).…”
Section: Methodsmentioning
confidence: 99%
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