TB Research

Identification of fluoroquinolone-resistant <i>Mycobacterium tuberculosis</i> through high-level data fusion of Raman and laser-induced breakdown spectroscopy

Gookseon Jeon, Soogeun Kim, Young Jin Kim, Seungmo Kim, Kyungmin Han, Kyunghwan Oh, Hee Joo Lee, Jang-Hee Choi

Analytical Methods · 2024-01

Abstract

is crucial for the successful treatment of tuberculosis, a persistent global public health threat. To shorten diagnosis times and enhance accuracy, this study introduces a fusion model combining laser-induced breakdown spectroscopy (LIBS) and Raman spectroscopy. This model offers a rapid and accurate method for diagnosing drug-resistance. LIBS and Raman spectroscopy provide complementary information, enabling accurate identification of drug resistance in tuberculosis. Although individual use of LIBS or Raman spectroscopy achieved approximately 90% accuracy in identifying drug resistance, the fusion model significantly improved identification accuracy to 98.3%. Given the fast measurement capabilities of both techniques, this fusion approach is expected to markedly decrease the time required for diagnosis.

MeSH terms

  • Raman spectroscopy
  • Mycobacterium tuberculosis
  • Tuberculosis
  • Fusion
  • Identification (biology)
  • Materials science
  • Analytical Chemistry (journal)
  • Microbiology