Shannon criteria
In neural engineering, the Shannon criteria constitute an empirical rule that is used for evaluation of possibility of damage from electrical stimulation to nervous tissue.
The Shannon criteria relate two parameters for pulsed electrical stimulation: charge density per phase, D and charge per phase, Q with a dimensionless parameter k:
which can be written alternatively:
According to these criteria, stimulation parameters that yield k ≥ 1.85 could cause damage to the adjacent nervous tissue. Currently, this empirical law is applied in neuromodulation for development of implants for cortical, cochlear, retinal, and deep brain stimulation. Shannon categorizes the relationship between stimulating electrode and target neural tissue as either Near Field, Mid Field, or Far Field, and discusses how equation parameters may be chosen in each case. In the case of spinal cord stimulation, for example, the Far Field category would apply.