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Items: 1 to 20 of 33

1.

Intraspecific sequence and gene expression variation contribute little to venom diversity in sidewinder rattlesnakes ( Crotalus cerastes).

Rautsaw RM, Hofmann EP, Margres MJ, Holding ML, Strickland JL, Mason AJ, Rokyta DR, Parkinson CL.

Proc Biol Sci. 2019 Jul 10;286(1906):20190810. doi: 10.1098/rspb.2019.0810. Epub 2019 Jul 3.

PMID:
31266424
2.

CMOS Monolithic Electrochemical Gas Sensor Microsystem Using Room Temperature Ionic Liquid.

Yin H, Mu X, Li H, Liu X, Mason AJ.

IEEE Sens J. 2018 Oct;18(19):7899-7906. doi: 10.1109/JSEN.2018.2863644. Epub 2018 Aug 6.

PMID:
30930698
3.

Evidence for divergent patterns of local selection driving venom variation in Mojave Rattlesnakes (Crotalus scutulatus).

Strickland JL, Smith CF, Mason AJ, Schield DR, Borja M, Castañeda-Gaytán G, Spencer CL, Smith LL, Trápaga A, Bouzid NM, Campillo-García G, Flores-Villela OA, Antonio-Rangel D, Mackessy SP, Castoe TA, Rokyta DR, Parkinson CL.

Sci Rep. 2018 Dec 4;8(1):17622. doi: 10.1038/s41598-018-35810-9.

4.

Comparative venom-gland transcriptomics and venom proteomics of four Sidewinder Rattlesnake (Crotalus cerastes) lineages reveal little differential expression despite individual variation.

Hofmann EP, Rautsaw RM, Strickland JL, Holding ML, Hogan MP, Mason AJ, Rokyta DR, Parkinson CL.

Sci Rep. 2018 Oct 19;8(1):15534. doi: 10.1038/s41598-018-33943-5.

5.

Evaluating the Performance of De Novo Assembly Methods for Venom-Gland Transcriptomics.

Holding ML, Margres MJ, Mason AJ, Parkinson CL, Rokyta DR.

Toxins (Basel). 2018 Jun 19;10(6). pii: E249. doi: 10.3390/toxins10060249.

6.

Characterization of the Ionic Liquid/Electrode Interfacial Relaxation Processes Under Potential Polarization for Ionic Liquid Amperometric Gas Sensor Method Development.

Lin L, Zhao P, Mason AJ, Zeng X.

ACS Sens. 2018 Jun 22;3(6):1126-1134. doi: 10.1021/acssensors.8b00155. Epub 2018 Jun 4.

PMID:
29781608
7.

Phenotypic Variation in Mojave Rattlesnake (Crotalus scutulatus) Venom Is Driven by Four Toxin Families.

Strickland JL, Mason AJ, Rokyta DR, Parkinson CL.

Toxins (Basel). 2018 Mar 23;10(4). pii: E135. doi: 10.3390/toxins10040135.

8.

Epoxy Chip-in-Carrier Integration and Screen-Printed Metalization for Multichannel Microfluidic Lab-on-CMOS Microsystems.

Li L, Yin H, Mason AJ.

IEEE Trans Biomed Circuits Syst. 2018 Apr;12(2):416-425. doi: 10.1109/TBCAS.2018.2797063.

9.

A Single Mutation Unlocks Cascading Exaptations in the Origin of a Potent Pitviper Neurotoxin.

Whittington AC, Mason AJ, Rokyta DR.

Mol Biol Evol. 2018 Apr 1;35(4):887-898. doi: 10.1093/molbev/msx334. Erratum in: Mol Biol Evol. 2018 Jul 1;35(7):1821.

PMID:
29329419
10.

Miniaturized Planar Room Temperature Ionic Liquid Electrochemical Gas Sensor for Rapid Multiple Gas Pollutants Monitoring.

Wan H, Yin H, Lin L, Zeng X, Mason AJ.

Sens Actuators B Chem. 2018 Feb;255(Pt 1):638-646. doi: 10.1016/j.snb.2017.08.109. Epub 2017 Aug 18.

11.

Ultracompact Microwatt CMOS Current Readout With Picoampere Noise and Kilohertz Bandwidth for Biosensor Arrays.

Li H, Parsnejad S, Ashoori E, Thompson C, Purcell EK, Mason AJ.

IEEE Trans Biomed Circuits Syst. 2018 Feb;12(1):35-46. doi: 10.1109/TBCAS.2017.2752742. Epub 2017 Oct 5.

12.

Rapid Measurement of Room Temperature Ionic Liquid Electrochemical Gas Sensor using Transient Double Potential Amperometry.

Wan H, Yin H, Mason AJ.

Sens Actuators B Chem. 2017 Apr;242:658-666. doi: 10.1016/j.snb.2016.11.103.

13.

A Hardware-Efficient Scalable Spike Sorting Neural Signal Processor Module for Implantable High-Channel-Count Brain Machine Interfaces.

Yang Y, Boling S, Mason AJ.

IEEE Trans Biomed Circuits Syst. 2017 Aug;11(4):743-754. doi: 10.1109/TBCAS.2017.2679032. Epub 2017 May 24.

PMID:
28541908
14.

CMOS Electrochemical Instrumentation for Biosensor Microsystems: A Review.

Li H, Liu X, Li L, Mu X, Genov R, Mason AJ.

Sensors (Basel). 2016 Dec 31;17(1). pii: E74. doi: 10.3390/s17010074. Review.

15.

A cryptic palm-pitviper species (Squamata: Viperidae: Bothriechis) from the Costa Rican highlands, with notes on the variation within B. nigroviridis.

Doan TM, Mason AJ, Castoe TA, Sasa M, Parkinson CL.

Zootaxa. 2016 Jul 15;4138(2):271-90. doi: 10.11646/zootaxa.4138.2.3.

PMID:
27470764
16.

Frequency Band Separability Feature Extraction Method With Weighted Haar Wavelet Implementation for Implantable Spike Sorting.

Yang Y, Mason AJ.

IEEE Trans Neural Syst Rehabil Eng. 2017 Jun;25(6):530-538. doi: 10.1109/TNSRE.2016.2590560. Epub 2016 Jul 12.

PMID:
27416601
17.

CMOS Amperometric ADC With High Sensitivity, Dynamic Range and Power Efficiency for Air Quality Monitoring.

Li H, Boling CS, Mason AJ.

IEEE Trans Biomed Circuits Syst. 2016 Aug;10(4):817-27. doi: 10.1109/TBCAS.2016.2571306. Epub 2016 Jun 23.

18.

Hardware Efficient Automatic Thresholding for NEO-Based Neural Spike Detection.

Yang Y, Mason AJ.

IEEE Trans Biomed Eng. 2017 Apr;64(4):826-833. doi: 10.1109/TBME.2016.2580319. Epub 2016 Jun 13.

PMID:
27323353
19.

Highly Sensitive Capacitive Gas Sensing at Ionic Liquid-Electrode Interfaces.

Wang Z, Guo M, Mu X, Sen S, Insley T, Mason AJ, Král P, Zeng X.

Anal Chem. 2016 Feb 2;88(3):1959-64. doi: 10.1021/acs.analchem.5b04677. Epub 2016 Jan 12.

PMID:
26705978
20.

Adaptive Threshold Neural Spike Detector Using Stationary Wavelet Transform in CMOS.

Yang Y, Boling CS, Kamboh AM, Mason AJ.

IEEE Trans Neural Syst Rehabil Eng. 2015 Nov;23(6):946-55. doi: 10.1109/TNSRE.2015.2425736. Epub 2015 May 4.

PMID:
25955990

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