Offending patterns for serial sex offenders identified via the DNA testing of previously unsubmitted sexual assault kits

  • Rachel Lovell
  • , Misty Luminais
  • , Daniel J. Flannery
  • , Laura Overman
  • , Duoduo Huang
  • , Tiffany Walker
  • , Dan R. Clark

Research output: Contribution to journalArticlepeer-review

45 Scopus citations

Abstract

Purpose Much of what we know about serial sex offenders is based on multiple sexual assaults linked via conviction or self-report or offenders who primarily target strangers. Our data are derived from serial sex offenders linked via DNA testing of unsubmitted sexual assault kits—which provides a more objective examination of offending patterns. Methods Study uses descriptive statistics, chi-square tests, and sexual assault narratives to explore offending patterns for serial vs. nonserial sex offenders and crossover offending patterns by relationship, age, and gender for serial sex offenders. We examine crossover offending patterns for three groups of serial sex offenders: those who assaulted only strangers, both strangers and nonstrangers, and only nonstrangers. Results Findings show significant crossover offending by relationship and age. Over one-quarter sexually assaulted both strangers and nonstrangers. Serial sex offenders often vary their offending pattern across offenses. The offender-victim relationship appears particularly salient when assessing offending patterns. Conclusions Offending patterns are not a consistently reliable link across assaults. Many of these sexual assaults had not been linked prior to DNA testing, thereby illustrating the power of the DNA testing of SAKs for identifying and linking serial sex offenders, particularly when testing is followed by a thorough investigation.
Original languageEnglish
Pages (from-to)68-78
Number of pages11
JournalJournal of Criminal Justice
Volume52
DOIs
StatePublished - Sep 1 2017

Keywords

  • Crossover offending
  • Offending patterns
  • Serial sex offenders
  • Sexual assault
  • Sexual assault kits
  • Unsubmitted DNA

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