Correction: Real-Time Localization of Moving Dipole Sources for Tracking Multiple Free-Swimming Weakly Electric Fish
نویسندگان
چکیده
In order to survive, animals must quickly and accurately locate prey, predators, and conspecifics using the signals they generate. The signal source location can be estimated using multiple detectors and the inverse relationship between the received signal intensity (RSI) and the distance, but difficulty of the source localization increases if there is an additional dependence on the orientation of a signal source. In such cases, the signal source could be approximated as an ideal dipole for simplification. Based on a theoretical model, the RSI can be directly predicted from a known dipole location; but estimating a dipole location from RSIs has no direct analytical solution. Here, we propose an efficient solution to the dipole localization problem by using a lookup table (LUT) to store RSIs predicted by our theoretically derived dipole model at many possible dipole positions and orientations. For a given set of RSIs measured at multiple detectors, our algorithm found a dipole location having the closest matching normalized RSIs from the LUT, and further refined the location at higher resolution. Studying the natural behavior of weakly electric fish (WEF) requires efficiently computing their location and the temporal pattern of their electric signals over extended periods. Our dipole localization method was successfully applied to track single or multiple freely swimming WEF in shallow water in real-time, as each fish could be closely approximated by an ideal current dipole in two dimensions. Our optimized search algorithm found the animal's positions, orientations, and tail-bending angles quickly and accurately under various conditions, without the need for calibrating individual-specific parameters. Our dipole localization method is directly applicable to studying the role of active sensing during spatial navigation, or social interactions between multiple WEF. Furthermore, our method could be extended to other application areas involving dipole source localization.
منابع مشابه
Precision measurement of electric organ discharge timing from freely moving weakly electric fish.
Physiological measurements from an unrestrained, untethered, and freely moving animal permit analyses of neural states correlated to naturalistic behaviors of interest. Precise and reliable remote measurements remain technically challenging due to animal movement, which perturbs the relative geometries between the animal and sensors. Pulse-type electric fish generate a train of discrete and ste...
متن کاملInnovative Methodology Precision measurement of electric organ discharge timing from freely moving weakly electric fish
Jun JJ, Longtin A, Maler L. Precision measurement of electric organ discharge timing from freely moving weakly electric fish. J Neurophysiol 107: 1996 –2007, 2012. First published December 21, 2011; doi:10.1152/jn.00757.2011.—Physiological measurements from an unrestrained, untethered, and freely moving animal permit analyses of neural states correlated to naturalistic behaviors of interest. Pr...
متن کاملAutomatic Realistic Real Time Stimulation/Recording in Weakly Electric Fish: Long Time Behavior Characterization in Freely Swimming Fish and Stimuli Discrimination
Weakly electric fish are unique model systems in neuroethology, that allow experimentalists to non-invasively, access, central nervous system generated spatio-temporal electric patterns of pulses with roles in at least 2 complex and incompletely understood abilities: electrocommunication and electrolocation. Pulse-type electric fish alter their inter pulse intervals (IPIs) according to differen...
متن کاملNoninvasive Realistic Stimulation/Recording of Freely Swimming Weakly Electric Fish: Movement Detection and Discharge Entropy to Infer Fish Behavior
Weakly electric fish are unique models in Neuroscience allowing experimentalists to access, with non invasive techniques, a central nervous system generated spatio-temporal electric pattern of pulses with roles in at least two complex and not yet completely understood abilities: electrocommunication and electrolocation. We developed an apparatus to allow realistic stimulation and simultaneous r...
متن کاملPrecision Measurement of Electric Organ Discharge Timing 4 from Freely Moving Weakly Electric Fish
20 Physiological measurements from an unrestrained, untethered, and freely moving animal 21 permit analyses of neural states correlated to naturalistic behaviors of interest. Precise and 22 reliable remote measurements remain technically challenging due to animal movement, which 23 perturbs the relative geometries between the animal and sensors. Pulse-type electric fish generate 24 a train of d...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 8 شماره
صفحات -
تاریخ انتشار 2013