A Fine-Scale and Minimally Invasive Marking Method for Use with Conventional Tungsten Microelectrodes

Author:

Oikawa Tatsuya,Nomura Kento,Hara Toshimitsu,Koida KowaORCID

Abstract

In neurophysiology, achieving precise correlation between physiological responses and anatomic structures is a significant challenge. Therefore, the accuracy of the electrode marking method is crucial. In this study, we describe a tungsten-deposition method, in which tungsten oxide is generated by applying biphasic current pulses to conventional tungsten electrodes. The electrical current used was 40–50 μA, which is similar to that used in electrical microstimulation experiments. The size of the markings ranged from 10 to 100 μm, corresponding to the size of the electrode tip, which is smaller than that of existing marking methods. Despite the small size of the markings, detection is easy as the marking appears in bright red under dark-field observation after Nissl staining. This marking technique resulted in low tissue damage and was maintainedin vivofor at least two years. The feasibility of this method was tested in mouse and macaque brains.

Funder

MEXT | Japan Society for the Promotion of Science

Publisher

Society for Neuroscience

Subject

General Medicine,General Neuroscience

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