Please use this identifier to cite or link to this item: https://hdl.handle.net/11000/40473

Surface and elemental analysis of stainless-steel needles after invasive physiotherapy: an exploratory scanning electron microscopy (SEM) study.

Title:
Surface and elemental analysis of stainless-steel needles after invasive physiotherapy: an exploratory scanning electron microscopy (SEM) study.
Authors:
POVEDA-PAGÁN, EMILIO J.  
Lozano-Quijada, Carlos  
Toledo-Marhuenda, José Vicente  
Segura-Heras, José Vicente  
Santafé, Manel  
Editor:
Nature Research
Department:
Departamentos de la UMH::Patología y Cirugía
Issue Date:
2026
URI:
https://hdl.handle.net/11000/40473
Abstract:
This study evaluated the safety and chemical variations of stainless-steel needles during human tissue application using four electrical stimulation modalities: high-intensity and low-intensity direct current, microcurrents, and compensated biphasic waves. Structural changes and surface integrity of three needle types were also analyzed via SEM. Surface analysis was performed on Type_A, Type_B, and Type_C needles (n = 120) following dry needling interventions on 48 participants using four distinct electrical protocols. SEM evaluation identified carbon, oxygen, chromium, iron, nickel, silicon, manganese, and aluminum across all needles. MANOVA showed that needle type (p < 0.001) and electrical current (p < 0.001) significantly influenced surface composition. A systematic reduction in silicon occurred post-intervention (p < 0.001), while nickel content remained stable (6.1%-7.7%). Qualitatively, Type_A exhibited the most structural irregularities, while percutaneous electrical nerve stimulation caused the greatest organic matter accumulation. These findings indicate that invasive electrotherapy significantly alters the surface elemental composition and morphology of stainless-steel needles, notably through systematic silicon loss. While these changes indicate material loss during procedures, further tissue analysis is required to determine clinical relevance. SEM revealed that Type_A needles developed more surface scratches, whereas Type_B and Type_C accumulated substantial organic matter post-intervention.
Keywords/Subjects:
dry needling
dry needling needles
acupuncture needles
biocompatibility
surface degradation
Knowledge area:
CDU: Ciencias aplicadas: Medicina
Type of document:
info:eu-repo/semantics/article
Access rights:
info:eu-repo/semantics/openAccess
DOI:
10.1038/s41598-026-57733-6
Published in:
Scientific Reports. 2026 Jul 15
Appears in Collections:
Artículos Patología y Cirugía



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