12.11.2012 Views

Examination of Firearms Review: 2007 to 2010 - Interpol

Examination of Firearms Review: 2007 to 2010 - Interpol

Examination of Firearms Review: 2007 to 2010 - Interpol

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

10 Morrish BC, Wenger E. The Australian CBRN Data Centre. Microbiology<br />

Australia 2008 29: 70-71.<br />

11 CBRNE Technical Guide 2009, CBRNe World 2009 Winter.<br />

12 Sun Y, Ong KY. Detection technologies for chemical warfare agents and<br />

<strong>to</strong>xic vapors. CRC Press, Boca Ra<strong>to</strong>n, 2005.<br />

13 See also reference 3 for a description <strong>of</strong> the main chemical detection<br />

methods.<br />

14 D'Agostino PA. Chemical warfare agents. Handbook <strong>of</strong> Analytical<br />

Separations 2008; 6(Forensic Science): 839-872.<br />

15 Piruska A, Gong M, Sweedler JV, Bohn PW. Nan<strong>of</strong>luidics in chemical<br />

analysis. Chemical Society <strong>Review</strong>s <strong>2010</strong>; 39(3): 1060-1072.<br />

16 Mark D, Haeberle S, Roth G, von Stetten F, Zengerle R. Micr<strong>of</strong>luidic labon-a-chip<br />

platforms: requirements, characteristics and applications.<br />

Chemical Society <strong>Review</strong>s <strong>2010</strong>; 39(3): 1153-1182.<br />

17 Borowsky J, Collins GE. Chemical and biological threat-agent detection<br />

using electrophoresis-based lab-on-a-chip devices. Analyst <strong>2007</strong>; 132(10):<br />

958-962.<br />

18 Dawoud AA. Fabrication <strong>of</strong> Fully Integrated Micr<strong>of</strong>luidic Device with Carbon<br />

Sensing Electrode for the Detection <strong>of</strong> Forensic and Biomedical Targets.<br />

Proceedings <strong>of</strong> IMECE<strong>2007</strong>-<strong>2007</strong>-ASME, International Mechanical<br />

Engineering Congress and Exposition, November 11-15, <strong>2007</strong>, Seattle,<br />

USA, <strong>2007</strong>; 467-471.<br />

19 Malosse L, Buvat P, Ades D, Siove A. Detection <strong>of</strong> Degradation Products<br />

<strong>of</strong> Chemical Warfare Agents by Highly Porous Molecularly Imprinted<br />

Microspheres. Analyst 2008; 133: 588-595.<br />

20 Lin Z, Zhao M, Zhang S, Yang C, Zhang X. In situ arsenic speciation on<br />

solid surfaces by desorption electrospray ionization tandem mass<br />

spectrometry. Analyst <strong>2010</strong>; 135: 1268-1275.<br />

21 Ouyang G, Pawliszyn J. A critical review in calibration methods for solidphase<br />

microextraction. Analytica Chimica Acta 2008; 627: 184–197.<br />

22 Lim DV, Simpson JM, Kearns EA, Kramer MF. Current and developing<br />

technologies for moni<strong>to</strong>ring agents <strong>of</strong> bioterrorism and biowarfare. Clinical<br />

Microbiology <strong>Review</strong>s 2005; 18: 583-607.<br />

23 See also reference 4 for a description <strong>of</strong> the main biological detection<br />

methods.<br />

24 Chiao DJ, Wey JJ, Tang SS. Monoclonal antibody-based enzyme<br />

immunoassay for detection <strong>of</strong> botulism neuro<strong>to</strong>xin type A. Hybridoma 2008;<br />

43-47.<br />

25 Hoile, R, Yuen M, James G, Gilbert GL. Evaluation <strong>of</strong> the rapid analyte<br />

measurement platform (RAMP) for the detection <strong>of</strong> Bacillus anthracis at a<br />

crime scene. Forensic Science International <strong>2007</strong>; 171: 1-4.<br />

545

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!