This work presents a platform for the detection of the neuronal magnetic signal arising from the propagation of the action potential along the axon, via an array of highly sensitive magnetoresistive sensors and a low noise front-end electronic setup. We report the results of calculations and experiments for estimating the limit of detection of such platform in terms of minimum detectable magnetic field. Furthermore, an experimental setup for recording the magnetic signal in a brain slice is presented. (C) 2017 The Authors. Published by Elsevier Ltd
International audienceNeuronal electrical activity is widely studied in vivo, and the ability to mea...
This paper reviews the feasibility to directly image neuronal currents in the brain by using magneti...
Measurements of magnetic fields from nervous cells can transpire to be significant in not only diagn...
This work presents a platform for the detection of the neuronal magnetic signal arising from the pro...
A promising strategy to get deeper insight on brain functionalities relies on the investigation of n...
An alternative neuroscience tool for magnetic field detection is described in this work, providing b...
Magnetoencephalography has been established nowadays as a crucial in vivo technique for clinical and...
Information transmission in the brain occurs through ionic currents flowing inside the neuronal netw...
Understanding brain activity requires simultaneous recordings across spatial scales, from single-cel...
In this work an alternative neuroscience tool for electromagnetic measurements of neurons at the lev...
Magnetic fields generated by human and animal organs, such as the heart, brain and nervous system ca...
Recent developments in spintronics materials and physics are promising to develop a new type of mag...
Magnetoreception, sensing the Earth's magnetic field, is used by many species in orientation and nav...
The noninvasive detection of neuronal currents ill active brain networks [or direct neuronal imaging...
A magnetically shielded setup was developed for characterizing magnetoresistance (MR) and noise prop...
International audienceNeuronal electrical activity is widely studied in vivo, and the ability to mea...
This paper reviews the feasibility to directly image neuronal currents in the brain by using magneti...
Measurements of magnetic fields from nervous cells can transpire to be significant in not only diagn...
This work presents a platform for the detection of the neuronal magnetic signal arising from the pro...
A promising strategy to get deeper insight on brain functionalities relies on the investigation of n...
An alternative neuroscience tool for magnetic field detection is described in this work, providing b...
Magnetoencephalography has been established nowadays as a crucial in vivo technique for clinical and...
Information transmission in the brain occurs through ionic currents flowing inside the neuronal netw...
Understanding brain activity requires simultaneous recordings across spatial scales, from single-cel...
In this work an alternative neuroscience tool for electromagnetic measurements of neurons at the lev...
Magnetic fields generated by human and animal organs, such as the heart, brain and nervous system ca...
Recent developments in spintronics materials and physics are promising to develop a new type of mag...
Magnetoreception, sensing the Earth's magnetic field, is used by many species in orientation and nav...
The noninvasive detection of neuronal currents ill active brain networks [or direct neuronal imaging...
A magnetically shielded setup was developed for characterizing magnetoresistance (MR) and noise prop...
International audienceNeuronal electrical activity is widely studied in vivo, and the ability to mea...
This paper reviews the feasibility to directly image neuronal currents in the brain by using magneti...
Measurements of magnetic fields from nervous cells can transpire to be significant in not only diagn...