• This record comes from PubMed

Sonographic measurement of deep fascia parameters - Interrater reliability

. 2024 Sep ; 46 (9) : 1481-1489. [epub] 20240717

Language English Country Germany Media print-electronic

Document type Journal Article, Observational Study

Grant support
211123 Wellcome Trust - United Kingdom
211123 Wellcome Trust - United Kingdom
211123 Wellcome Trust - United Kingdom
211123 Wellcome Trust - United Kingdom
211123 Wellcome Trust - United Kingdom

Links

PubMed 39014213
DOI 10.1007/s00276-024-03423-9
PII: 10.1007/s00276-024-03423-9
Knihovny.cz E-resources

PURPOSE: The deep fascia has recently been a current topic in many medical fields, including rehabilitation. Some research has already focused on assessing deep fascia, however results of individual authors differ in certain aspects. This study focuses on the inter-rater reliability of ultrasound (US) measurement of the thickness of deep fascia and loose connective tissue (LCT). The aim was to define the causes of any discrepancies in measurement that could contribute to the unification of management of evaluating fascia. METHODS: An observational study was performed including 20 healthy individuals in whom fascia lata of the anterior thigh was examined by US imaging and then measured in Image J software. Three raters participated in this study: the first with 6 years of US imaging experience, other two were newly trained. The measurement of fascial parameters was conducted in two phases with special consultation between them resulting in an agreement of the research team on the more precise way of measurement. RESULTS: Results revealed the value of inter-rater reliability ICC3,1 = 0.454 for deep fascia thickness and ICC3,1 = 0.265 for LCT thickness in the first phase and any significant difference in the second phase. This poor inter-rater reliability led to a search for possible causes of discrepancies, which authors subsequently highlighted. CONCLUSION: The findings of the study show the main pitfalls of deep fascia measurement that should contribute to the unification of evaluation.

See more in PubMed

Ahn AC, Kaptchuk TJ (2011) Spatial anisotropy analyses of subcutaneous tissue layer: potential insights into its biomechanical characteristics. J Anat 219(4):515–524. https://doi.org/10.1111/j.1469-7580.2011.01407.x PubMed DOI PMC

Besomi M, Salomoni SE, Cruz-Montecinos C, Stecco C, Vicenzino B, Hodges PW (2022) Distinct displacement of the superficial and deep fascial layers of the iliotibial band during a weight shift task in runners: an exploratory study. J Anat 240(3):579–588. https://doi.org/10.1111/joa.13575 PubMed DOI

Condino S, Turini G, Parrini S, Stecco A, Busoni F, Ferrari V et al (2015) A semiautomatic method for in vivo three-dimensional quantitative analysis of fascial layers mobility based on 3D ultrasound scans. Int J Comput Assist Radiol Surg 10(11):1721–1735. https://doi.org/10.1007/s11548-015-1167-4 PubMed DOI

Fede C, Gaudreault N, Fan Ch, Macchi V, De Caro R, Stecco C (2018) Morphometric and dynamic measurements of muscular fascia in healthy individuals using ultrasound imaging: a summary of the discrepancies and gaps in the current literature. Surg Radiol Anat 40(12):1329–1341. https://doi.org/10.1007/s00276-018-2086-1 PubMed DOI

Fede C, Angelini A, Stern R, Macchi V, Porzionato A, Ruggieri P et al (2018) Quantification of hyaluronan in human fasciae: variations with function and anatomical site. J Anat 233(4):552–556. https://doi.org/10.1111/joa.12866 PubMed DOI PMC

Fede C, Pirri C, Fan Ch, Petrelli L, Guidolin D, De Caro R et al (2021) A Closer look at the cellular and molecular components of the deep/muscular fasciae. Int J Mol Sci 22(3):580–588. https://doi.org/10.3390/ijms22031411 DOI

Hotta K (2019) Fascial plane blocks: anatomical structures that affect the spread of local anesthetic. J Anesth 33(4):493–494. https://doi.org/10.1007/s00540-019-02647-z PubMed DOI

Koo TK, Li MY (2016) A Guideline of selecting and reporting intraclass correlation coefficients for reliability research. J Chiropr Med 15(2):155–163. https://doi.org/10.1016/j.jcm.2016.02.012 PubMed DOI PMC

Luomala T, Pihlman M, Heiskanen J, Stecco C (2014) Case study: Could ultrasound and elastography visualized densified areas inside the deep fascia? J Bodyw Mov Ther 18(3):462–468. https://doi.org/10.1016/j.jbmt.2013.11.020 PubMed DOI

Mechelli F, Arendt-Nielsen L, Stokes M, Agyapong-Badu S (2019) Validity of ultrasound imaging versus magnetic resonance imaging for measuring anterior thigh muscle, subcutaneous fat, and fascia thickness. Methods Protoc 2(3):1–10. https://doi.org/10.3390/mps2030058 DOI

Otsuka S, Shan X, Kurumisawa K, Omura S, Yamagishi T, Naito M et al (2021) Investigation of the association between human fascia lata thickness and its neighboring tissues’ morphology and function using B-mode ultrasonography. J Anat 239(5):1114–1122. https://doi.org/10.1111/joa.13505 PubMed DOI PMC

Ortiz-Miguel S, Miguel-Pérez M, Navarro J, Möller I, Pérez-Bellmunt A, Agullo JL et al (2021) Compartments of the antebrachial fascia of the forearm: clinically relevant ultrasound, anatomical and histological findings. Surg Radiol Anat 43(10):1569–1579. https://doi.org/10.1007/s00276-021-02736-3 PubMed DOI

Pavan PG, Stecco A, Stern R, Stecco C (2014) Painful connections: densification versus fibrosis of fascia. Curr Pain Headache Rep 18(8):1–8. https://doi.org/10.1007/s11916-014-0441-4 DOI

Pirri C, Stecco C, Fede C, Macchi V, Özçakar L (2019) Ultrasound imaging of the fascial layers: you see (only) what you know. J Ultrasound Med 39(4):827–828. https://doi.org/10.1002/jum.15148 PubMed DOI

Pirri C, Todros S, Fede C, Pianigiani S, Fan Ch, Foti C et al (2019) Inter-rater reliability and variability of ultrasound measurements of abdominal muscles and fasciae thickness. Clin Anat 32(7):948–960. https://doi.org/10.1002/ca.23435 PubMed DOI

Pirri C, Fede C, Petrelli L, Guidolin D, Fan Ch, De Caro R et al (2021) An anatomical comparison of the fasciae of the thigh: a macroscopic, microscopic and ultrasound imaging study. J Anat 238(4):999–1009. https://doi.org/10.1111/joa.13360 PubMed DOI

Pirri C, Fede C, Stecco A, Guidolin D, Fan Ch, De Caro R et al (2021) Ultrasound imaging of crural fascia and epimysial fascia thicknesses in basketball players with previous ankle sprains versus healthy subjects. Diagnostics 11(2):1–12. https://doi.org/10.3390/diagnostics11020177 DOI

Pirri C, Guidolin D, Fede C, Macchi V, De Caro R, Stecco C (2021) Ultrasound imaging of brachial and antebrachial fasciae. Diagnostics 11(12):1–11. https://doi.org/10.3390/diagnostics11122261 DOI

Pirri C, Fede C, Petrelli L, Guidolin D, Fan Ch, De Caro R et al (2022) Elastic fibres in the subcutaneous tissue: Is there a difference between superficial and muscular fascia? A cadaver study. Skin Res Technol 28(1):21–27. https://doi.org/10.1111/srt.13084 PubMed DOI

Pirri C, Pirri N, Porzionato A, Boscolo-Berto R, De Caro R, a Stecco C, (2022) Inter- and intra-rater reliability of ultrasound measurements of superficial and deep fasciae thickness in upper limb. Diagnostics 12(9):1–18. https://doi.org/10.3390/diagnostics12092195 DOI

Pirri C, Pirri N, Guidolin D, Macchi V, De Caro R, Stecco C (2022) Ultrasound imaging of the superficial fascia in the upper limb: arm and forearm. Diagnostics 12(8):1–13. https://doi.org/10.3390/diagnostics12081884 DOI

Pirri C, Pirri N, Guidolin D, Macchi V, Porzionato A, De Caro R et al (2023) Ultrasound imaging of thoracolumbar fascia thickness: chronic non-specific lower back pain versus healthy subjects; a sign of a “frozen back”? Diagnostics 13(8):1–11. https://doi.org/10.3390/diagnostics13081436 DOI

Ricci V, Ricci C, Cocco G, Donati D, Farì G, Mazian K, Naňka O, Özçakar L (2022) From histology to sonography in skin and superficial tissue disorders: EURO-MUSCULUS/USPRM* approach. Pathol Res Pract. https://doi.org/10.1016/j.prp.2022.154003 PubMed DOI

Ricci V, Ricci C, Gervasoni F, Cocco G, Andreoli A, Özçakar L (2023) From histoanatomy to sonography in myofascial pain syndrome. Am J Phys Med Rehabil 102(1):92–97. https://doi.org/10.1097/PHM.0000000000001975 PubMed DOI

Stecco A, Macchi V, Masiero S, Porzionato A, Tiengo C, Stecco C et al (2009) Pectoral and femoral fasciae: common aspects and regional specializations. Surg Radiol Anat 31(1):35–42. https://doi.org/10.1007/s00276-008-0395-5 PubMed DOI

Stecco C, Stern R, Porzionato A, Macchi V, Masiero S, Stecco A et al (2011) Hyaluronan within fascia in the etiology of myofascial pain. Surg Radiol Anat 33(10):891–896. https://doi.org/10.1007/s00276-011-0876-9 PubMed DOI

Stecco C, Pavan P, Pachera P, De Caro R, Natali A (2014) Investigation of the mechanical properties of the human crural fascia and their possible clinical implications. Surg Radiol Anat 36(1):25–32. https://doi.org/10.1007/s00276-013-1152-y PubMed DOI

Vita M, Sedlackova Z, Herman M, Furst T, Smekal D, Cech Z (2019) Influence of female hormones on fascia elasticity: an elastography study. Clin Anat 32(7):941–947. https://doi.org/10.1002/ca.23428 PubMed DOI

Wilke J, Macchi V, De Caro R, Stecco C (2017) Fascia thickness, aging and flexibility: is there an association? J Anat 234(1):43–49. https://doi.org/10.1111/joa.12902 DOI

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...