- Augusto C, Penido F. O, Tadeu M, Pacheco T, Igor K. Silveira L. L. (2016). Identification of cocaine and other illegal drugs of abuse. Journal of Raman Spectroscopy, 47-53
- Berger, Margaret A, (2005). What has a decade of Daubert Wrought. J Public Health, 95, 59-65
-Chauhan R, Kumar R, Shar V. (2018). Soil forensics: A spectroscopic examination of trace evidence. Microchemical Journal, 139, 74-84
- Cramblitt B, Grissm T. (2010) 3D Scanning: Visualizing Scenes in another Dimension. Evidence Technology Magazine, 8 (5)
-Deng W, Dou Y, Song P, Xu H, Aldalbahi A, Chen N, El-Sayed NN, Gao J, Lu J, Song S, Zuo X (2016). Lab on smartphone with interfaced electrochemical chips for on-site gender verification. Journal of Electroanalytical Chemistry.777,117-122
-DNAscan 6C Rapid DNA Analysis System, GE Healthcare Life Sciences.(2018)
-DNA Profiling RapidHIT, IntegenX. Key Forensic Services.(2018)
- Esam M.A., Howell G.M. Edwards, Ian J. Scowen. (2011). Rapid in situ detection of street samples of drugs of abuse on textile substrates using micro Raman spectroscopy, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 80, 2-7
- Footwear Identification, Retrieved January 2019 from https://saint-tech.lv/portfolio-items/footwear-identification/?lang=e
-progeny-resq-raman-spectrometer, Retrieved September 2019 from https://www.physitek.fr/en/produit/progeny-resq-raman-spectrometer/
-Gruijter M, Nee C, Poot C. (2017). Identification at the crime scene: The sooner, the better? The interpretation of rapid identification information by CSIs at the crime scene. Science & Justice,57(4),296-306. DOI:10.1016/j.scijus.2017.03.006
-Hefetz I , Liptz Y , Vaturi S, Attias D. (2018). Use of AFIS for linking scenes of crime. Forensic Science International, 262, 26–27.
-Mayo K. (2018). Rapid DNA: An Overview, Evidence Technology Magazine, Retrieved from : http://www.evidencemagazine.com/index.php?option=com_content&task=view&id=1581
-Mapes AA, Kloosterman AD, Poot CJ. (2015). DNA in the criminal justice system: the DNA success story in perspective. Journal of Forensic Sciences. 60(4), 851-856
-Novo A, Lorenzo H, Rial FI, Solla M. (2011). 3D GPR in forensics: Finding a clandestine grave in a mountainous environment,
Forensic Science International 204, 134-138
-
Lieblei D.,
McMahon M. E.,
Leary P. E.,
Massey P.,
Kammrath B. W.,(2018), A Comparison of Portable Infrared Spectrometers, Portable Raman Spectrometers, and Color-Based Field Tests for the On-Scene Analysis of Cocaine,
Spectroscopy, 33(12) Retrieved from
http://www.spectroscopyonline.com/comparison-portable-infrared-spectrometers-portable-raman-spectrometers-and-color-based-field-tests
- Perez-Alfonso C, Galipienso N, Garrigues S, Guardia M. (2014) .A green method for the determination of cocaine in illicit samples, Forensic Science International 237 70–77
-Romsos EL, Vallone PM. (2015). Rapid PCR of STR markers: Applications to human identification.Forensic Science International: Genetics. (18) 90-99
Robertson A.H., Main A, Robinson L,. Dawson L. (2015). In Situ FTIR Analysis of Soils for Forensic Applications. spectroscopyonline 30 (8), 22–3, Retrieved from http://www.spectroscopyonline.com/situ-ftir-analysis-soils-forensic-applications
-Shin J, Chois S, Yang JS, Song J, Chois JS, Jung HI (2017). Smart Forensic Phone: Colorimetric analysis of a bloodstain for age estimation using a smartphone. Sensors and Actuators B: Chemical. 243, 221-225
- Saini M, Kapoor AK. (2016) Biometrics in Forensic Identification: Applications and Challenges. Journal of Forensic Medicine1 108. Doi:1000108 10.4172/2472-1026.1000108
- Shelby R. Khandasammy, Marisia A. Fikiet, Ewelina Mistek, Yasmine Ahmed, Igor K. Lednev, (2018). Bloodstains, paintings, and drugs: Raman spectroscopy applications in forensic science, Forensic Chemistry, 8, 111-133
Salceda S., Barican A., Buscaino J., Goldman B., Klevenberg J., Kuhn M., Lehto D., Lin F., Nguyen P., Park C., Pearson F., Pittaro R., Salodkar S., Schueren R., Smith C., Validation of a rapid DNA process with the RapidHIT® ID system using GlobalFiler® Express chemistry, a platform optimized for decentralized testing environments, Forensic Science International, 28:21-34
-Sutton R, Trueman K, Moran C, Crime Scene management, Scene Specific Methods, WILEY, 2013
-SmidgION™ Nanopore Sensor (2017). Retrieved from
https://nanoporetech.com/products/smidgion.
-US Federal Bureau of Investigation (FBI). (2016).Rapid DNA or Rapid DNA Analysis US Federal Bureau of Investigation (FBI). Retrieved from: http://www.fbi.gov/about-us/lab/biometric-analysis/codis/rapid-dna-analysis.
-Walsh DJ, Corey AC, Cotton RW, Forman L, Herrin GL, Word CJ et al. (1992). Isolation of
deoxyribonucleic acid (DNA) from saliva and forensic science samples containing saliva. J Forensic Sci. 37, 387-395
-Woods B, Lennard C, Kirkbride K. P,
Robertson J. (2014) Soil examination for a forensic trace evidence laboratory—Part 1: Spectroscopic techniques,
Forensic Science International, 245, 187-194
-Wilkes TC, McGonigle AJ, Pering TD, Taggart AJ, White BS, Bryant RG, Willmott JR (2016).Ultraviolet Imaging with Low Cost Smartphone Sensors: Development and Application of a Raspberry Pi-Based UV Camera. Sensors. 16, 16-49
- Yousef Abdol Salami Asl, Yadolah Yamini, Tahmineh Baheri (1396), “Electro-tissue Extraction on Integrated Chips with RGB Method Using Cell Phones to Detect and Determine Methamephtamine-Class Narcotics in a Cheap and Fast Manner at the Place of Detection”, Drug Enforcement Studies Quarterly, 67-91 (9) 35.