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These mixed findings are further reflected in findings from evaluations of ten body-worn camera programs that have met the stringent criteria for inclusion in NIJ’s CrimeSolutions, see Table 1.[4] Across these evaluations, researchers looked at a range of outcomes, including use of force, citizen complaints, arrests, and assaults on officers. Four of the body-worn camera programs evaluated were found to have no, limited, or even negative effects.
Developed by the NIJ-funded NLECTC Sensor, Surveillance and Biometric Technologies Center of Excellence, A Primer on Body-Worn Cameras for Law Enforcement provides an introduction to body-worn camera systems. The report discusses the functions and features of body-worn camera systems and highlights issues and factors that law enforcement organizations should consider before and during implementation.
[note 3] Lum, C., et al, Research on body-worn cameras: What we know, what we need to know, Criminology & Public Policy, pp. 93 – 118, March 24, 2019
According to the 2018 BJS report, the main reasons (about 80% each) that local police and sheriffs’ offices had acquired body-worn cameras were to improve officer safety, increase evidence quality, reduce civilian complaints, and reduce agency liability.
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[note 2] Hyland, S., Body-Worn Cameras in Law Enforcement Agencies, 2016, Bureau of Justice Statistics, November 2018. Note that this survey excluded federal agencies, sheriffs’ offices with only jail or court duties, and special-purpose agencies such as transit police and campus police.
Research does not necessarily support the effectiveness of body-worn cameras in achieving those desired outcomes. A comprehensive review of 70 studies of body-worn cameras use found that the larger body of research on body-worn cameras showed no consistent or no statistically significant effects.[3] This meta-analysis was rated by CrimeSolutions and resulted in a No Effects rating for the impact of body-worn cameras on use of force, assaults on officers, officer-initiated calls for service, arrests, traffic stops and tickets, and field interviews (i.e., stop and frisk). See Practice Profile: Body-Worn Cameras’ Effects on Police Officer Behavior. This profile is based on a meta-analysis published in 2020.
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[note 6] Scientific Working Group on Imaging Technology, Recommendations and Guidelines for Using Closed-Circuit Television Security Systems in Commercial Institutions, Version 3.0, June 8, 2012.
[note 1] RCTs provide the highest degree of confidence that observed effects are the result of the program and not of other factors.
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Body-worn cameras are widely used by state and local law enforcement agencies in the United States. They are worn principally by officers in the performance of duties that require open and direct contact with the public. Despite their widespread and growing adoption, the current evidence regarding the effectiveness of body-worn cameras is mixed. Some studies suggest that body-worn cameras may offer benefits while others show either no impact or possible negative effects. The mixed results of these studies strongly imply that additional research is needed. In particular, more studies employing randomized control trials [1] are needed.
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[note 5] Home Office Centre for Applied Science and Technology, Body-Worn Video Technical Guidance (pdf, 10 pages), May 2014
[note 4] CrimeSolutions is the NIJ-funded federal clearinghouse of evaluation research, showing what works, what does not work, and what is promising across broad expanses of criminal and juvenile justice programs and practice. Learn more about CrimeSolutions.
The electric shock is delivered through barbed electrodes that attach to the weapon by conductive wires, penetrates skin and clothing, and disrupts voluntary muscle control. The probe is like a fishhook (Figure 125-2). A wire is attached to the proximal end to conduct the electrical charge from the weapon to the probe. The body of the probe is smooth and aerodynamic. The distal end of the probe contains the barb with a reverse hook to maintain itself in a person and not fall out. The barb end contains one or two barbs (Figures 125-2A and 125-2B). A new probe was released at the end of 2016 and is available as of 2017.
Projective electronic control devices or conductive electrical weapons are commonly known as “TASER” (Thomas A. Swift’s Electric Rifle) devices (Figure 125-1). They are often used by law enforcement and civilians as a less than lethal alternative to subdue individuals. These devices are deployed at an estimated rate of 904 times per day or approximately one every 2 minutes (personal communication, Steve Tuttle, TASER Int.). TASER devices are estimated to have saved individuals from serious injuries and death from guns and hand-to-hand combat. The devices prevent injury and death of law enforcement officers.1 These devices are currently used in 107 countries throughout the world. They work by delivering a high-voltage, low-amperage electric shock that affects the motor and sensory functions of the nervous system.2
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Based on these reviews and the existing research on the impact of body-worn cameras use, it is clear that further research is essential to determine the value of body-worn cameras use and potentially the more effective ways body-worn cameras could be deployed. Given the growing use of body-worn cameras, it would be best to build in rigorous evaluations as law enforcement agencies expand their use of this technology.
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Blast doors protect the undeployed cartridge. The cartridge contains the probes that are angled away from the center, puncture pin, primer, nitrogen capsule, and the anti-felon identification system (AFID) (Figure 125-3). The probes are loaded into the cartridge such that the top probe goes straight and the other probe is at a fixed angle when deployed. The cartridges snap into the weapon. The TASER cartridges ...
For new drivers and those drivers preparing for a test in residential areas, you must give one lane of space between you and the pedestrian.
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There are currently no U.S. Occupational Safety and Health Administration (OSHA) guidelines for TASER probe removal. This leaves protocols to be established by individual agencies, Emergency Departments (EDs), Emergency Physicians, and hospitals. The protocols vary. Treat all probes that have penetrated the skin as biohazards. Follow OSHA standard universal precautions when handling and removing the probes.
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In November 2018, the Bureau of Justice Statistics (BJS) published a report on the use of body-worn cameras by law enforcement agencies in the United States in 2016.[2] This report showed that:
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The TASER probes. A. The XP and the standard probe. B. The new probe released at the end of 2016. (Courtesy of TASER Int.)
Agencies should consider how body worn cameras will meet their mission needs and requirements prior to procurement and use of the technology. To provide general guidance to law enforcement practitioners, NIJ, NIST and the FBI developed a table listing operating characteristics and associated functionality descriptions based on existing technical resources about criminal justice use of video.[5],[6] The operating characteristics and associated functionality descriptions in the table can help agencies determine what they need as they consider the commercial products available.
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VGA, HD 720P, and 1080 HD are predominant standard resolutions. The higher the resolution, the more storage is needed. Estimates below were created assuming H.264 compression with medium to high motion at 30 frames per second (fps) derived using a heuristic formula widely used in industry. Actual storage utilized is dependent on scene complexity and the motion of the video captured. Consider what sort of analysis may be conducted on the video before selecting a resolution. For example, if forensic video analysis is anticipated, a resolution less than VGA is not recommended.