MRI-Induced Neurosensory Events in Decorative Black Tattoos: Study by Advanced Experimental Methods

Kasper Køhler Alsing1, Ole Olsen2, Christian Bender Koch3

  • 1The Tattoo Clinic, Department of Dermatology, Copenhagen University Hospital, Bispebjerg, Copenhagen, Denmark.

PubMed

Insights

Adverse reactions in tattooed skin during magnetic resonance imaging (MRI) are rare. This study reveals carbon black in tattoos can cause stinging sensations due to radiofrequency induction, not just magnetic particles.

Area of Science:

  • Radiology
  • Dermatology
  • Materials Science

Background:

  • Adverse reactions in tattooed skin during magnetic resonance imaging (MRI) are uncommon but documented.
  • Previous cases suggest reactions are due to magnetic pigment particles causing pain, erythema, and edema.
  • The exact pathophysiology of these reactions remains unclear, with simple thermal heating ruled out.

Observation:

  • A 35-year-old woman reported recurrent stinging sensations in black tattoos immediately upon MRI initiation.
  • Handheld magnets and MRI re-evaluation reproduced painful sensations in her tattooed skin.
  • Chemical analysis and electron microscopy of skin samples identified carbon black, not iron-based pigments.

Findings:

  • MRI-induced tattoo reactions are not solely caused by magnetic contaminants.
  • Carbon black, a common tattoo pigment, can trigger adverse reactions.
  • A novel mechanism involving radiofrequency induction of surface currents in carbon particles is hypothesized.

Implications:

  • This finding suggests distinct subgroups of MRI-induced tattoo reactions may exist.
  • The study highlights the need to consider non-magnetic tattoo components in adverse events.
  • Further research into radiofrequency interactions with tattoo pigments is warranted to ensure patient safety during MRI.