AbstractImpaired transport of mitochondria, in dendrites and axons of neurons, and bioenergetic deficit are increasingly recognized to be of pathological importance in neurodegenerative diseases. To study the relationship between transport and bioenergetics, we have developed what to our knowledge is a novel technique to quantify organelle velocity in cultured cells. The aim was to combine measurement of motion and bioenergetic parameters while minimizing photodynamic oxidative artifacts evoked by fluorescence excitation. Velocity determination from sequential fluorescence images is not trivial, and here we describe an application of “optical flow”, the flow of gray values in grayscale images, to this problem. Based on the principles of pho...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
We present the development and in vivo application of a feedback-based tracking microscope to follow...
We present the development and in vivo application of a feedback-based tracking microscope to follow...
AbstractImpaired transport of mitochondria, in dendrites and axons of neurons, and bioenergetic defi...
<p>(A) Mitochondrial motility can be visualized using time-lapse microscopy in neurons that are eith...
ABSTRACT Axonal transport of mitochondria is critical for neuronal survival and function. Automatica...
Translational movements of mitochondria in cultured rat liver cells were characterized quantitativel...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
AbstractMitochondrial swelling is a hallmark of mitochondrial dysfunction, and is an indicator of th...
Department of Biological SciencesMitochondria are an essential component of axons, and proper distri...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
We present the development and in vivo application of a feedback-based tracking microscope to follow...
We present the development and in vivo application of a feedback-based tracking microscope to follow...
AbstractImpaired transport of mitochondria, in dendrites and axons of neurons, and bioenergetic defi...
<p>(A) Mitochondrial motility can be visualized using time-lapse microscopy in neurons that are eith...
ABSTRACT Axonal transport of mitochondria is critical for neuronal survival and function. Automatica...
Translational movements of mitochondria in cultured rat liver cells were characterized quantitativel...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Mitochondria are crucial for cells, supplying up to 90% of the energy requirements for neurons. Thei...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
AbstractMitochondrial swelling is a hallmark of mitochondrial dysfunction, and is an indicator of th...
Department of Biological SciencesMitochondria are an essential component of axons, and proper distri...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
We present the development and in vivo application of a feedback-based tracking microscope to follow...
We present the development and in vivo application of a feedback-based tracking microscope to follow...