We developed and examined the applicability of two multimodal paramagnetic contrast agents for the longitudinal in vivo investigations of the brain projections. The classical dextran based neuroanatomical tracer was conjugated with mono- and bimetal Gd3+ complexes and an optical reporter. Relaxometric studies of both tracer molecules were performed in vitro followed by in cellulo MR and microscopy investigations. Finally, tracers were injected into the motor cortex of the rat brain; uptake and transporting properties were compared by MRI. The advantage of the multimodal approach was taken and histological studies were performed on the same animals. The histology results confirm the MRI studies demonstrating that the applied tracers labelled...
Magnetic resonance imaging of neuronal connectivity in vivo opens up the possibility of performing l...
This report describes the synthesis, characterization, and in vivo testing of several bifunctional c...
The advance of axonal tract-tracing has revolutionized neuroscience in the past three decades1. The ...
We developed and examined the applicability of two multimodal paramagnetic contrast agents for the l...
We developed and examined the applicability of two multimodal paramagnetic contrast agents for the ...
In order to understand the functional activity in the brain, a detailed knowledge of anatomical conn...
A Gd3+ based paramagnetic dextran conjugate has been developed, which enables the tracking of neuroa...
A Gd3+ based paramagnetic dextran conjugate has been developed, which enables the tracking of neuroa...
To investigate the connectivity of brain networks noninvasively and dynamically, we have developed a...
Gaining insights into brain function by identifying neuronal circuits connecting different regions o...
SummaryTraditional studies of neuroanatomical connections require injection of tracer compounds into...
One of the most striking characteristic of the brain is its profuse neuronal connectivity. Not surpr...
We examined anterograde labeling of noradrenergic terminals originating from the neurons of brain st...
Neuroanatomical cortico-cortical and cortico-subcortical connections have been examined mainly by me...
We examined the applicability of manganese-enhanced MRI (MEMRI) to the in vivo tracing of diffuse ne...
Magnetic resonance imaging of neuronal connectivity in vivo opens up the possibility of performing l...
This report describes the synthesis, characterization, and in vivo testing of several bifunctional c...
The advance of axonal tract-tracing has revolutionized neuroscience in the past three decades1. The ...
We developed and examined the applicability of two multimodal paramagnetic contrast agents for the l...
We developed and examined the applicability of two multimodal paramagnetic contrast agents for the ...
In order to understand the functional activity in the brain, a detailed knowledge of anatomical conn...
A Gd3+ based paramagnetic dextran conjugate has been developed, which enables the tracking of neuroa...
A Gd3+ based paramagnetic dextran conjugate has been developed, which enables the tracking of neuroa...
To investigate the connectivity of brain networks noninvasively and dynamically, we have developed a...
Gaining insights into brain function by identifying neuronal circuits connecting different regions o...
SummaryTraditional studies of neuroanatomical connections require injection of tracer compounds into...
One of the most striking characteristic of the brain is its profuse neuronal connectivity. Not surpr...
We examined anterograde labeling of noradrenergic terminals originating from the neurons of brain st...
Neuroanatomical cortico-cortical and cortico-subcortical connections have been examined mainly by me...
We examined the applicability of manganese-enhanced MRI (MEMRI) to the in vivo tracing of diffuse ne...
Magnetic resonance imaging of neuronal connectivity in vivo opens up the possibility of performing l...
This report describes the synthesis, characterization, and in vivo testing of several bifunctional c...
The advance of axonal tract-tracing has revolutionized neuroscience in the past three decades1. The ...