A mouse bio-electronic nose for sensitive and versatile chemical detection
暂无分享,去创建一个
George G. Malliaras | Cristina Savin | Dmitry Rinberg | Erez Shor | Pedro Herrero-Vidal | Adam Dewan | Ilke Uguz | Vincenzo F. Curto | Thomas Bozza | G. Malliaras | Cristina Savin | A. Dewan | D. Rinberg | T. Bozza | V. Curto | Ilke Uguz | Erez Shor | Pedro Herrero-Vidal
[1] C. Vandenbroucke-Grauls,et al. Using a dog’s superior olfactory sensitivity to identify Clostridium difficile in stools and patients: proof of principle study , 2012, BMJ : British Medical Journal.
[2] Peter Mombaerts,et al. A Novel Multigene Family May Encode Odorant Receptors : A Molecular Basis for Odor Recognition , 2014 .
[3] M. Wachowiak. All in a Sniff: Olfaction as a Model for Active Sensing , 2011, Neuron.
[4] Dmitry Rinberg,et al. Single olfactory receptors set odor detection thresholds , 2018, Nature Communications.
[5] D. Coppola,et al. Tests of the chromatographic theory of olfaction with highly soluble odors: a combined electro-olfactogram and computational fluid dynamics study in the mouse , 2019, Biology Open.
[6] Donald A. Wilson,et al. Synaptic adaptation and odor-background segmentation , 2007, Neurobiology of Learning and Memory.
[7] Alexei A. Koulakov,et al. A primacy code for odor identity , 2017, Nature Communications.
[8] M. M. Mozell,et al. Chromatographic Separation of Odorants by the Nose: Retention Times Measured across in vivo Olfactory Mucosa , 1973, Science.
[9] Matteo E. Bonfanti,et al. From Sniffer Dogs to Emerging Sniffer Devices for Airport Security: An Opportunity to Rethink Privacy Implications? , 2014, Science and Engineering Ethics.
[10] James M. Jeanne,et al. Convergence, Divergence, and Reconvergence in a Feedforward Network Improves Neural Speed and Accuracy , 2015, Neuron.
[11] Philippe Lucas,et al. Heterogeneity and Convergence of Olfactory First-Order Neurons Account for the High Speed and Sensitivity of Second-Order Neurons , 2014, PLoS Comput. Biol..
[12] M. Wachowiak,et al. In Vivo Modulation of Sensory Input to the Olfactory Bulb by Tonic and Activity-Dependent Presynaptic Inhibition of Receptor Neurons , 2008, The Journal of Neuroscience.
[13] N. Peled,et al. Exhaled breath analysis for the early detection of lung cancer: recent developments and future prospects , 2017, Lung Cancer.
[14] Matt Wachowiak,et al. Odorant Representations Are Modulated by Intra- but Not Interglomerular Presynaptic Inhibition of Olfactory Sensory Neurons , 2005, Neuron.
[15] P. Leleux,et al. Highly Conformable Conducting Polymer Electrodes for In Vivo Recordings , 2011, Advanced materials.
[16] Angela Licata,et al. Stimulus dependent diversity and stereotypy in the output of an olfactory functional unit , 2018, Nature Communications.
[17] Lauryn E. DeGreeff,et al. Feasibility of Canine Detection of Mass Storage Devices: A Study of Volatile Organic Compounds Emanating from Electronic Devices Using Solid Phase Microextraction , 2017, Journal of forensic sciences.
[18] M. M. Mozell,et al. Numerical modeling of odorant uptake in the rat nasal cavity. , 2007, Chemical senses.
[19] Dmitry Rinberg,et al. Multiple perceptible signals from a single olfactory glomerulus , 2014, Nature Neuroscience.
[20] Chris Lennard,et al. Biological organisms as volatile compound detectors: a review. , 2013, Forensic science international.
[21] William Kranz,et al. On the smell of Composition C-4. , 2014, Forensic science international.
[22] Il-Doo Kim,et al. Applications and Advances in Bioelectronic Noses for Odour Sensing , 2018, Sensors.
[23] H. Hatt,et al. Molecular mechanisms of olfactory processing in the mammalian olfactory epithelium. , 1996, ORL; journal for oto-rhino-laryngology and its related specialties.
[24] Joshua T. Dudman,et al. RIVETS: A Mechanical System for In Vivo and In Vitro Electrophysiology and Imaging , 2014, PloS one.
[25] Z. Mainen,et al. Speed and accuracy of olfactory discrimination in the rat , 2003, Nature Neuroscience.
[26] L. Kay. Olfactory system oscillations across phyla , 2015, Current Opinion in Neurobiology.
[27] A. Dewan,et al. Non-redundant coding of aversive odours in the main olfactory pathway , 2013, Nature.
[28] Shay Ohayon,et al. Open Ephys: an open-source, plugin-based platform for multichannel electrophysiology , 2017, Journal of neural engineering.
[29] J. McGann,et al. Testing the Sorption Hypothesis in Olfaction: A Limited Role for Sniff Strength in Shaping Primary Odor Representations During Behavior , 2013, The Journal of Neuroscience.
[30] William G. Bailey. The encyclopedia of police science , 1989 .
[31] H. Haick,et al. Diagnosis and Classification of 17 Diseases from 1404 Subjects via Pattern Analysis of Exhaled Molecules , 2016, ACS nano.
[32] Hyung-Cheul Shin,et al. Cross detection for odor of metabolic waste between breast and colorectal cancer using canine olfaction , 2018, PloS one.
[33] Richard Cooper,et al. Accuracy of Trained Canines for Detecting Bed Bugs (Hemiptera: Cimicidae) , 2014, Journal of economic entomology.
[34] A. Poling,et al. Reproducibility of African giant pouched rats detecting Mycobacterium tuberculosis , 2017, BMC Infectious Diseases.
[35] Emily Weiss. Selecting Shelter Dogs for Service Dog Training , 2002, Journal of applied animal welfare science : JAAWS.
[36] Tadeusz Jezierski,et al. Efficacy of drug detection by fully-trained police dogs varies by breed, training level, type of drug and search environment. , 2014, Forensic science international.
[37] Ryan M Carey,et al. Temporal structure of receptor neuron input to the olfactory bulb imaged in behaving rats. , 2009, Journal of neurophysiology.
[39] Dmitry Rinberg,et al. Novel Behavioral Paradigm Reveals Lower Temporal Limits on Mouse Olfactory Decisions , 2015, The Journal of Neuroscience.