A Custom Microcontrolled and Wireless-Operated Chamber for Auditory Fear Conditioning
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Hermes Aguiar Magalhães | Paulo Aparecido Amaral Júnior | Flávio Afonso Gonçalves Mourão | Mariana Chamon Ladeira Amâncio | Hyorrana Pereira Pinto | Vinícius Rezende Carvalho | Leonardo de Oliveira Guarnieri | Márcio Flávio Dutra Moraes | Hermes Aguiar Magalhaes | M. Moraes | F. Mourão | V. R. Carvalho | H. P. Pinto | Leonardo de Oliveira Guarnieri | Paulo Aparecido Amaral Júnior | Mariana Chamon Ladeira Amancio
[1] G. Paxinos,et al. The Rat Brain in Stereotaxic Coordinates , 1983 .
[2] Stephen Maren. Neurobiology of Pavlovian fear conditioning. , 2001, Annual review of neuroscience.
[3] Stephen Maren,et al. The Amygdala Is Essential for the Development of Neuronal Plasticity in the Medial Geniculate Nucleus during Auditory Fear Conditioning in Rats , 2001, The Journal of Neuroscience.
[4] D. Paré,et al. Amygdala Microcircuits Controlling Learned Fear , 2014, Neuron.
[5] Terence W Picton,et al. Human Auditory Steady-State Responses: The Effects of Recording Technique and State of Arousal , 2003, Anesthesia and analgesia.
[6] João Marques,et al. Hippocampus and Prefrontal Cortex Modulation of Contextual Fear Memory Is Dissociated by Inhibiting De Novo Transcription During Late Consolidation , 2019, Molecular Neurobiology.
[7] F. Mormann,et al. Mean phase coherence as a measure for phase synchronization and its application to the EEG of epilepsy patients , 2000 .
[8] H. Meeren,et al. Auditory evoked potentials from auditory cortex, medial geniculate nucleus, and inferior colliculus during sleep–wake states and spike-wave discharges in the WAG/Rij rat , 2001, Brain Research.
[9] Kenneth Knoblauch,et al. An inexpensive Arduino-based LED stimulator system for vision research , 2012, Journal of Neuroscience Methods.
[10] K. Browman,et al. Cued and Contextual Fear Conditioning for Rodents , 2009 .
[11] Hidenao Fukuyama,et al. Optical Imaging of Interaural Time Difference Representation in Rat Auditory Cortex , 2008, Front. Neuroeng..
[12] A. Baron. Functions of CS and US in fear conditioning. , 1959, Journal of comparative and physiological psychology.
[13] J. Fex,et al. Tonotopic organization in the inferior colliculus of the rat demonstrated with the 2-deoxyglucose method , 2004, Experimental Brain Research.
[14] J. Buccafusco. Methods of Behavior Analysis in Neuroscience , 2000 .
[15] M. Jung,et al. Neural circuits and mechanisms involved in Pavlovian fear conditioning: A critical review , 2006, Neuroscience & Biobehavioral Reviews.
[16] Alan R Palmer,et al. Phase-locked responses to pure tones in the inferior colliculus. , 2006, Journal of neurophysiology.
[17] Shigeyuki Kuwada,et al. Scalp potentials of normal and hearing-impaired subjects in response to sinusoidally amplitude-modulated tones , 1986, Hearing Research.
[18] R. Bolles,et al. Naloxone and shock-elicited freezing in the rat. , 1979 .
[19] Boualem Boashash,et al. Estimating and interpreting the instantaneous frequency of a signal. I. Fundamentals , 1992, Proc. IEEE.
[20] A. Rees,et al. Steady-state evoked responses to sinusoidally amplitude-modulated sounds recorded in man , 1986, Hearing Research.
[21] A. V. Lockmann,et al. Auditory fear conditioning modifies steady-state evoked potentials in the rat inferior colliculus. , 2017, Journal of neurophysiology.
[22] Mayank R. Mehta,et al. Multisensory Control of Multimodal Behavior: Do the Legs Know What the Tongue Is Doing? , 2013, PloS one.
[23] R. Rescorla. Pavlovian conditioning and its proper control procedures. , 1967, Psychological review.
[24] Michael Davis,et al. Conditioned fear and startle magnitude: effects of different footshock or backshock intensities used in training. , 1978, Journal of experimental psychology. Animal behavior processes.
[25] A. R. Massensini,et al. Cerebral Cortex , 1987, Cerebral Cortex.
[26] C. Tullis,et al. Skin resistance changes in the rat during repeated encounters with electric shock , 1966 .
[27] Alessandro D’Ausilio,et al. Arduino: A low-cost multipurpose lab equipment , 2011, Behavior Research Methods.
[28] Michael X Cohen,et al. Fluctuations in Oscillation Frequency Control Spike Timing and Coordinate Neural Networks , 2014, The Journal of Neuroscience.
[29] P. Holland. Conditioned stimulus as a determinant of the form of the Pavlovian conditioned response. , 1977, Journal of experimental psychology. Animal behavior processes.
[30] Peter Gershkovich,et al. Custom software development for use in a clinical laboratory , 2012, Journal of pathology informatics.
[31] Philipp Häfliger,et al. Open source modules for tracking animal behavior and closed-loop stimulation based on Open Ephys and Bonsai , 2018, bioRxiv.
[32] A. Jaggi,et al. Electric foot shock stress: a useful tool in neuropsychiatric studies , 2015, Reviews in the neurosciences.
[33] Oskar Pineño. ArduiPod Box: A low-cost and open-source Skinner box using an iPod Touch and an Arduino microcontroller , 2014, Behavior research methods.
[34] Samantha R White,et al. The Future Is Open: Open-Source Tools for Behavioral Neuroscience Research , 2019, eNeuro.
[35] Larry R Squire,et al. Memory and Brain Systems: 1969–2009 , 2009, The Journal of Neuroscience.
[36] D. C. Medeiros,et al. Auditory processing assessment suggests that Wistar audiogenic rat neural networks are prone to entrainment , 2017, Neuroscience.
[37] F. Varela,et al. Measuring phase synchrony in brain signals , 1999, Human brain mapping.
[38] B. Clopton,et al. Tonotopic organization in the inferior colliculus of the rat. , 1973, Brain research.
[39] Joseph E LeDoux,et al. Fear conditioning enhances short-latency auditory responses of lateral amygdala neurons: Parallel recordings in the freely behaving rat , 1995, Neuron.
[40] David Pérez-González,et al. A Discontinuous Tonotopic Organization in the Inferior Colliculus of the Rat , 2008, The Journal of Neuroscience.
[41] Shay Ohayon,et al. Open Ephys: an open-source, plugin-based platform for multichannel electrophysiology , 2017, Journal of neural engineering.
[42] D. Paré,et al. Differential fear conditioning induces reciprocal changes in the sensory responses of lateral amygdala neurons to the CS(+) and CS(-). , 2000, Learning & memory.
[43] D. Blanchard,et al. Innate and conditioned reactions to threat in rats with amygdaloid lesions. , 1972, Journal of comparative and physiological psychology.