Forensic Science Lab
The forensic laboratory is accredited by the ANSI National Accreditation Board (ANAB) to
- ISO/IEC 17025
- ANAB Forensic Testing & Calibration AR 3125
- FBI Quality Assurance Standards for Forensic DNA Testing Laboratories
Oakland County Sheriff's Office Forensic Science Laboratory Current Certificate and Scope
The laboratory is committed to providing our clients with quality services. The laboratory understands the importance of timely, courteous, and professional service to meet our clients’ needs. We consistently strive to provide relevant, accurate, and thorough service using scientifically valid procedures under the direction of accreditation, statutory, and regulatory requirements.
Our mission is to provide our clients--the criminal justice system and individuals in the communities we serve--the highest quality forensic services. This mission is accomplished through the timely collection and examination of evidence using established methods and procedures resulting in clear and objective interpretations of analytical findings. Our staff is dedicated to the professionalism, integrity and ethics required to deliver reliable conclusions.
A Notice to Our Lab Customers: STRmix and Likelihood Ratios 2/16/2021
Administrator - Forensic Lab Services: Lori Bruski: 248-858-5019 | Email: ocsoforensiclab@oakgov.com
Tour of Our DNA Laboratory and Forensic Science Team
Request for Testing
- PDF Form to Request a Test
- Please read our Notice to the Customer
- For expedited submission fax form to 248-858-5024
- Evidence Submission Guidelines
- Evidence Submission Handout
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Laboratory Sections
The laboratory is composed of the following six sections: Crime Scene Processing, Biology/DNA, Drug Chemistry, Firearms/Toolmarks, Latent Print, and Toxicology. Analysts that work in those sections author reports detailing the results of the testing. They may be called upon to testify as an expert witness in a court of law regarding the results. Analysts also participate in the education of law enforcement personnel, training of new analysts, professional involvement in forensic organizations, and other community involvement.

The laboratory operates a mobile crime unit that will respond to any crime scene, 24 hours, seven days a week. The Forensic Laboratory Specialists collect, preserve, and analyze evidence. The scene is documented with photographs, video, and crime scene sketches.
The Biology Unit of the laboratory examines items of evidence for the possible presence of biological fluids and materials, such as blood, semen, saliva, and skin cells. State of the art technologies and instrumentation are used to recover DNA from the biological sources. DNA is extracted from the biological fluids/materials, quantitated to determine the amount, and then amplified by making copies of the 24 locations that compose a DNA profile. Forensic DNA profiles developed from evidence items are compared to known DNA profiles associated with the cases in question.
Eligible evidence profiles are uploaded to the Local, State, and/or National databases of the Combined DNA Index System (CODIS). Profiles are electronically searched against other cases and known individuals, such as missing persons, convicted offenders, and arrestees in hopes of finding matches and aiding investigations.
The Drug Chemistry section of the laboratory analyzes samples submitted by various law enforcement agencies located in Oakland County and the surrounding areas. The section analyzes any substance seized in violation of laws regulating the sale, manufacture, distribution and use of controlled or illegal drugs. To perform this type of analysis, the laboratory must possess both a valid Controlled Substance Registration Certificate, issued by the Drug Enforcement Administration (DEA), and a valid license issued by the State of Michigan Board of Pharmacy.
The samples are tested to determine whether a controlled substance or an illegal drug is present. Various plant materials (e.g., marijuana, "spice"), powders (e.g., cocaine, heroin), crystalline materials (e.g., methamphetamine, MDMA, "bath salts"), tablets, capsules and liquids are tested daily at the lab. In addition, the lab provides a quick response to customer needs by applying testing protocols for new drug substances like synthetic marijuana and various designer drugs and by developing processing plans in relation to medical marijuana.
To assist in their testing, drug chemists employ state-of-the art analytical instrumentation in the laboratory. This provides broad testing capabilities for prescription drugs and illegal substances. Gas Chromatography/Mass Spectrometry (GC/MS) and Fourier Transform Infrared Spectroscopy (FTIR) help chemists by producing a spectral representation of a substance at its molecular level. Stereomicroscopic observations allow chemists to observe characteristics of marijuana plants too small to be seen by the unaided eye. Microcrystalline tests produce unique crystal structures when various drugs are exposed to chemical reagents such as platinic chloride or gold chloride.
The Firearms/Toolmarks section of the laboratory analyzes firearms ammunition components (fired bullets, fired cartridge cases) to attempt to identify if they were fired from a specific firearm. The barrel of a rifle or pistol contains spiral rifling called lands and grooves to increase the accuracy of a bullet. The rifling from the firearm is imparted onto the bullet as it travels down the barrel. These lands and groove impressions contain individual characteristics that can be identified and matched to a specific firearm. During the firing process, the firing pin, breach face, extractor, ejector and chamber of the firearm also leave individual characteristics on a fired cartridge case; these individual marks can be identified and matched to a specific firearm as well.
In addition to comparing ammunition components to firearms, firearms examiners conduct other examinations that include the following:
- Test firing firearms to determine if they function as designed by the manufacturer
- Caliber determination of fired ammunition components and potential firearms manufacturer(s) that may have fired a particular bullet
- Restoring serial numbers
Examiners also utilizes NIBIN (National Integrated Ballistics Information Network) to link firearms and fired cartridge cases that may have been used in related crimes. NIBIN is a computer system that acquires and stores images of a fired cartridge case found at a crime scene or obtained from test firing a firearm. NIBIN looks for similarities between the images and ranks likely candidates for matches. The firearms examiner must confirm a match on a comparison microscope.
The Latent Print Unit of the laboratory conducts scientific examinations in friction ridge analysis. Friction ridge impressions can be left when a person touches an object with their hands or feet. The friction ridges that are invisible to the naked eye are called latent prints. Analysts process evidence to reveal the latent prints and locate any ridge structure present. The prints are preserved for future examinations.
Latent prints can be detected and developed using a variety of techniques such as chemicals, powders, lasers and alternate light sources. The use of the Full Spectrum Imaging System (FSIS) is also a method of viewing physical evidence for the presence of latent prints using short wave UV light prior to any type of chemical processing. This type of preprocessing can allow for additional testing for biological evidence without the evidence being compromised. Detected latent prints can be compared to the known impressions of an individual due to the uniqueness, permanence and arrangement of the friction ridges.
Latent prints can also be searched through a computer database. The Latent Print Unit operates on an Idemia AFIS (Automated Fingerprint Identification System). This system aids in the search for known finger and palm impressions which are then used in the comparisons and individualizations of latent ridge structure.
The Toxicology Unit performs drug and alcohol testing on biological specimens submitted to the laboratory. Blood specimens from OWI cases are tested for the presence of ethanol, also known as drinking alcohol. RESULTS Program urine specimens from court-ordered drug and alcohol testing are screened for the presence of various drugs and EtG (ethanol metabolite).
Blood specimens are analyzed with headspace gas chromatography with flame ionization and mass spectrometer detectors (HS-GC/FID/MS) to determine blood alcohol concentration (BAC). Ethanol is the intoxicating agent found in alcoholic beverages such as beer, wine and liquor. Any ethanol present in the blood sample is detected, identified, and quantitated using this instrumentation.
Urine specimens are analyzed with a Chemistry Analyzer utilizing immunoassay reagents to determine the presumptive presence of drugs and EtG. All specimens are also subjected to validity testing to ensure the sample has not been adulterated. The laboratory currently offers the following assays: amphetamines, benzodiazepines, cocaine, opiates, cannabinoids/marijuana, ketamine, buprenorphine, methadone, oxycodone, 6-acetylmorphine (heroin metabolite), fentanyl and EtG. Cut-off levels, to determine whether a sample is presumptively positive or negative for each specific assay, comply with the Michigan Association of Drug Court Professionals (MADCP) and/or the Substance Abuse and Mental Health Services Administration (SAMHSA).
Procedure Manuals
- QM A-01 Impartiality
- QM A-02 Confidentiality
- QM B-01 Laboratory Services
- QM B-02 Laboratory Organization
- QM B-03 Biology Contingency Plan
- QM C-01 Personnel Education Requirements
- QM C-02 Training
- QM C-03 Competency
- QM C-04 Laboratory Facilities and Environmental Conditions
- QM C-05 Laboratory Equipment
- QM C-06 Purchasing of Supplies and Services
- QM D-01 Laboratory Customer Service
- QM D-02 Laboratory Requests
- QM D-03 Evidence Handling
- QM D-04 Method Selection and Method Validation
- QM D-05 Sampling and Sample Selection Policy
- QM D-06 Validity of Results
- QM D-07 Technical Records
- QM D-08 Review of Technical Records
- QM D-09 Testimony Monitoring
- QM D-10 Monitoring Personnel Performance (Proficiency Testing)
- QM D-11 Reporting of Results
- QM D-12 Complaints
- QM D-13 Nonconforming Work and Corrective Action
- QM D-14 Information and Data Management
- QM D-15 Software Validation
- QM D-16 Case Consultations and Conflict Resolution
- QM D-17 Evidence Submission Guidelines
- QM E-01 Management System
- QM E-02 Management System Change Control
- QM E-03 Control of Records
- QM E-04 Risk Opportunity Improvement
- QM E-05 Laboratory Audits
- QM E-06 Management Review
- BIO A-01 Biology Unit References
- BIO A-02 Biology Unit Abbreviations
- BIO A-03 Biology Lab Contamination Control
- BIO A-04 Hazardous Waste Material
- BIO A-05 Evidence Examination and Analysis Scheme
- BIO A-06 Digital Photography
- BIO A-07 Report Writing
- BIO A-08 Biology Unit Case Review
- BIO A-09 NIST Traceable Standards
- BIO A-10 Laboratory Elimination Database Samples
- BIO A-11 Sample Tracking and Control Software for Casework-STACS
- BIO B-01 Reagents and Quality Control
- BIO B-02 Acid Phosphatase Spot Test
- BIO B-03 Hemastix
- BIO B-04 Phenolphthalein
- BIO B-05 RSID - Blood
- BIO B-06 RSID - Semen
- BIO B-07 RSID - Saliva
- BIO B-08 Bluestar
- BIO B-09 Microscopic Identification of Spermatazoa
- BIO C-01 PrepFiler Express Automate Extraction
- BIO C-02 PrepFiler Express Differential Automate Extraction
- BIO C-06 Quantifiler Trio Quantification Kit Automated
- BIO C-07 Quantifiler Trio Quantification Kit Manual
- BIO C-08 Globalfiler PCR Amplification Kit - Automated
- BIO C-09 Globalfiler PCR Amplification Kit-Manual
- BIO C-10 Capillary Electrophoresis Setup Automated-GlobalFiler Kit
- BIO C-11 Capillary Electrophoresis Setup Manual-Global Filer Kit
- BIO C-12 GlobalFiler Express PCR Amplification Kit Automated
- BIO C-13 GlobalFiler Express PCR Amplification Kit Manual
- BIO C-14 Capillary Electrophoresis Automated Setup - GlobalFiler Express Kit
- BIO C-15 Capillary Electrophoresis Manual Setup - GlobalFiler Express Kit
- BIO C-16 Data Analysis GMID-X Software and Interpretational Guidelines
- BIO C-17 Sample Dry Down
- BIO C-18 STRmix Probabilistic Genotyping Software
- BIO C-19 Yfiler Plus PCR Amplification Kit
- BIO C-20 Capillary Electrophoresis Setup - Yfiler Plus Kit
- BIO C-21 Y-STR Data Analysis GMID-X Software and Interpretational Guidelines
- BIO D-01 Pipettes
- BIO D-02 Air Science Safeswab Mini Drying Cabinet
- BIO D-03 Alternate Light Source
- BIO D-04 Biology Microscopes
- BIO D-05 Minco Temperature Indicator System
- BIO D-06 Analytical Balance
- BIO D-07 UV-Crosslinker
- BIO D-08 Centrifuge
- BIO D-09 Eppendorf ThermoMixers
- BIO D-10 Vacufuge
- BIO D-11 Driftcon Temperature Verification System
- BIO E-01 Automate Express Instrument Maintenance
- BIO E-02 Tecan Freedom EVO 100 Instrument Maintenance
- BIO E-03 AB GeneAmp PCR System 9700 Maintenance
- BIO E-04 AB 7500 Real-Time PCR System Maintenance
- BIO E-05 AB 7500 Real-Time PCR System Background Calibration
- BIO E-06 AB 7500 Real-Time PCR System Optical Calibration
- BIO E-07 AB 7500 Real-Time PCR System ROI Calibration
- BIO E-08 AB 7500 Real-TIme PCR System Dye Calibration
- BIO E-09 AB 3500 Genetic Analyzer Maintenance
- BIO E-10 AB 3500 Genetic Analyzer Changing Consumables
- BIO E-11 AB 3500 Genetic Analyzer Spatial Calibration
- BIO E-12 AB 3500 Genetic Analyzer Spectral Calibration
- BIO E-13 AB 3500 Genetic Analyzer Computer Maintenance
- BIO E-14 Applied Biosystems Proflex PCR System Maintenance
- BIO F-01 Administrative Functions of Local CODIS Database
- BIO F-02 CODIS Workflow
- BIO F-03 Adding Editing Deleting CODIS Data
- BIO F-04 Reviewing Marking Uploading CODIS Data
- CHEM A-01 Chemistry Unit Laboratory Hygiene
- CHEM A-02 Chemistry Unit References
- CHEM A-03 Chemistry Unit Licenses
- CHEM A-04 Chemistry Unit Abbreviations
- CHEM A-05 Sampling
- CHEM A-06 Chemistry Unit Report Statements
- CHEM A-07 Chemistry Unit Case Review
- CHEM B-01 Chemistry Unit Reference Standards
- CHEM B-02 Chemistry Reagents
- CHEM B-03 Guidelines for the Analysis of Chemistry Samples
- CHEM B-04 Physical Identification of Tablets and Capsules
- CHEM B-05 Presumptive Color Tests
- CHEM B-06 Drug Extractions
- CHEM B-07 Drug Methodology
- CHEM B-08 Uncertainty of Measurement - Drug Weights
- CHEM C-01 Weighing Practices and Balances
- CHEM C-02 Chemistry Unit Stereomicroscopes
- CHEM C-03 HP GCMS
- CHEM C-04 Agilent GCMS
- CHEM C-05 Spectrum 100 FTIR
- CHEM C-06 Agilent Cary 630 FTIR
- FTM A-01 Firearms Unit Laboratory Hygiene
- FTM A-02 Firearms References
- FTM A-03 Firearms Abbreviations
- FTM A-04 Firearms Operating Plan
- FTM A-05 Report Writing
- FTM A-06 Firearms Unit Case Review
- FTM A-07 Firearms Unit Reference Collections
- FTM B-01 Reagents and Controls
- FTM B-02 Firearms Safe Handling
- FTM B-03 Firearms Examinations
- FTM B-04 Uncertainty of Measurement - Length
- FTM B-05 Serial Number Restoration
- FTM B-06 Examination of Fired Cartridge Cases and Shotgun Shells
- FTM B-07 Examination of Fired Projectiles
- FTM B-08 NIBIN
- FTM C-01 Microscopes
- FTM C-02 Balances
- FTM C-03 Calipers & Micrometers
- FTM C-04 Shooting Tank
- FTM D-01 Comparisons
- LPM A-01 Latent Print Laboratory Hygiene.doc
- LPM A-02 Latent Print References
- LPM A-03 Latent Print Unit Operating Plan
- LPM A-04 Latent Print Abbreviations
- LPM A-05 Report Writing
- LPM A-06 Latent Print Unit Case Review
- LPM B-01 Processing Reagents
- LPM B-02 Chemical Processing Types and Sequences
- LPM B-03 Adhesive Side Chemicals
- LPM B-04 Amido Black (methanol base)
- LPM B-05 Amido Black (Water base - Fischer 98)
- LPM B-06 Amido Black (water base)
- LPM B-07 Ardrox (Fluorescent Dye)
- LPM B-08 Coomassie Brilliant Blue
- LPM B-09 Cyanoacrylate
- LPM B-10 DFO
- LPM B-11 Fingerprint Powders
- LPM B-12 Gentian Violet
- LPM B-13 1,2-Indanedione
- LPM B-14 Iodine Fuming
- LPM B-15 Leucocrystal Violet
- LPM B-16 Liqui-Drox
- LPM B-17 Lumicyano
- LPM B-18 Luminol
- LPM B-19 Ninhydrin
- LPM B-20 Physical Developer
- LPM B-21 RAM Fluorescent Dye
- LPM B-22 RAY Fluorescent Dye
- LPM B-23 Rhodamine 6G (Fluorescent Dye)
- LPM B-24 Silver Nitrate
- LPM B-25 Small Particle Reagent
- LPM B-26 Sudan Black
- LPM B-27 Yellow Fluorescent Dye
- LPM B-28 Zinc Chloride
- LPM C-01 Down Draft Dusting Table
- LPM C-02 Fingerprint Development Chamber
- LPM C-03 Foray Digital Imaging System
- LPM C-04 Mason Vactron Fuming Chamber
- LPM C-05 Omniprint 1000 Alternate Light Source
- LPM C-06 Portable Fuming Chamber
- LPM C-07 AFIS - Idemia
- LPM C-08 UltraLite ALS
- LPM C-09 FSIS Use
- LPM D-01 Examining Friction Ridge Impressions
- TOX A-01 Toxicology Laboratory Hygiene
- TOX A-02 Toxicology References
- TOX A-03 Toxicology Abbreviations
- TOX A-04 Toxicology Standards & Reagents
- TOX A-05 Quality Control
- TOX A-06 Toxicology Testing Report Statements
- TOX A-07 Case Review – Presumptive Urine Testing
- TOX A-08 Blood Alcohol Case Review
- TOX A-09 Toxicology Evidence Storage, Transfer and Disposal
- TOX B-01 Daily Operations for Presumptive Urine Testing
- TOX C-01 Ethanol Quantitation in Whole Blood
- TOX C-02 Measurement Uncertainty Ethanol in Whole Blood
- TOX D-01 Pipettes
- TOX D-02 Microlab600 Pipettor Diluter
- TOX D-03 AU680 Chemistry Analyzer Use and Maintenance
- TOX D-04 Agilent HSGCMSFID
- TOX D-05 Minco Temperature Indicator System
- TOX D-06 Balances