Publications by authors named "S Francese"

Questioned document examination aims to assess if a document of interest has been forged. Spectroscopy-based methods are the gold standard for this type of evaluation. In the past 15 years, Matrix-Assisted Laser Desorption Ionisation-Mass Spectrometry Imaging (MALDI-MSI) has emerged as a powerful analytical tool for the examination of finger marks, blood, and hair.

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Despite the advent of DNA profiling, fingerprints still play an important role in suspect identification. However, if single crime scene marks may be challenging to identify, overlapping fingermarks, understandably, pose an even greater challenge. In the last decade, mass spectrometry-imaging methods have provided a possible solution to the separation of fingermarks from two or more donors, based on the differential chemical composition.

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Breast cancer is a global health issue affecting 2.3 million women per year, causing death in over 600,000. Mammography (and biopsy) is the gold standard for screening and diagnosis.

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For the past 7 years, Matrix Assisted Laser Desorption Ionisation Mass Spectrometry (MALDI MS) based methods have been developed and published for the forensic detection of blood in stains and fingermarks. However, in the view of adoption in an operational context, further investigation into the capabilities and limitations of this approach must be conducted. The refinement and testing of this approach must also be tailored to the requirements of the end users, enabling them to address the specific circumstances most encountered in a forensic scenario.

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Article Synopsis
  • The study simulated a suspected forgery of a three-page real estate rental agreement to understand how much reliable information can be extracted from a single piece of evidence and to identify effective techniques for forgery detection.
  • Seventeen laboratories from sixteen countries were tasked with answering questions related to the document's printing techniques, paper consistency, staples, ink, and the age of the headings and signatures.
  • Various methods, including spectroscopic and imaging techniques, were assessed, revealing that no single method could completely solve all tasks, with correct results predominantly found in the discrimination of printer toners but errors occurring with ink distinctions.
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