The paper uses calcium imaging to measure calcium conduction velocity and intracellular calcium transients in the setting of MYOM1 deficiency. It serves as a functional readout of sarcoplasmic reticulum-related calcium handling.
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calcium imaging
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Calcium imaging documented impaired calcium conduction velocity and blunted intracellular calcium transients, indicating sarcoplasmic reticulum dysfunction.
Optical transparency during development allows for the use of optogenetics and calcium imaging to elucidate the mechanisms underlying GI-related symptoms associated with ASD.
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Calcium imaging showed impaired calcium conduction velocity and blunted intracellular calcium transients, consistent with sarcoplasmic reticulum dysfunction, in MYOM1 deficiency.
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Calcium imaging documented impaired calcium conduction velocity and blunted intracellular calcium transients, indicating sarcoplasmic reticulum dysfunction.
Optical transparency during zebrafish development allows the use of optogenetics and calcium imaging to elucidate mechanisms underlying GI-related symptoms associated with ASD.