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Intramuscular Temperature on the Echo-textural Characteristics

Influence of Intramuscular Temperature on the Textural Characteristics of the B-mode Ultrasound Image.

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06145646
Enrollment
30
Registered
2023-11-24
Start date
2023-11-30
Completion date
2026-04-20
Last updated
2026-01-22

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Healthy Subjects

Keywords

muscle, temperature, texture, ultrasound, echo intensity

Brief summary

Echointensity and echotexture have been used as a physiological marker for changes in skeletal muscle quality and structure caused by physical training, low activity, ageing and some neuromuscular disorders. However, there are some influencing factors on muscle echo-intensity and echotexture, such as temperature, which may not be taken into account when performing an ultrasound assessment and may alter the results. This study aims to investigate the effects of muscle temperature on echointensity and other 2nd order echotextures variables such as homogeneity, contrast, correlation and entropy of muscle tissue, in order to gain a better understanding of this correlation and minimise its influence, which would allow greater precision in the use of muscle ultrasound as a diagnostic tool. The methodology of this study includes firstly the acquisition of ultrasound images of the vastus lateralis muscle. This acquisition will be performed during the continuous recording of muscle temperature, carried out during a passive cooling process after 20 min of heating using microwave equipment. In addition, to standardise the results, a correction factor will be calculated to compensate for the influence of subcutaneous adipose tissue thickness on echogenicity and echotexture.

Interventions

DEVICEMuscle warm-up

Passive heating of the vastus lateralis of the right quadriceps will be performed using a microwave device. The device will be set at a power of 150 W and a distance of 10-15 cm from the skin surface for 20 minutes with the purpose of increasing local muscle temperature to 40 ºC.

Sponsors

Cardenal Herrera University
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

* Acceptance of participation in the study. * Healthy subjects. * Subjects between the ages of 18 and 65.

Exclusion criteria

* Have known neurological, cardiovascular, metabolic or orthopedic conditions that prevent them from participating in the study. * Present metal implants in the heating area. * Wear a pacemaker. * Perform physical activity during the 48 hours prior to data collection. * Contraindications of dry needling such as: Belonephobia, history of abnormal reaction to the puncture or injection, anticoagulant treatment or thrombocytopenia, lymphedema over the area of intervention, severely compromised immune system, vascular diseases, diabetes mellitus, pregnancy, epilepsy, allergy to metals or that the intervention area has wounds, scars, tattoos, or stains.

Design outcomes

Primary

MeasureTime frameDescription
Muscle echointensity (0-255 a.u.).During interventionMuscle echointensity is calculated by the mean gray level value of the muscle Range of Interest (ROI). (0-255 a.u.)
Muscle echovariance (0-255 a.u.).During interventionThe echovariance is determined by the relationship between the standard deviation and the average pixel intensity obtained from the histogram of the muscle ROI. (0-255 a.u.)
Muscle energy or second angular momentum.During interventionIt is a second order parameter (GLCM) that measures textural uniformity of the muscle ROI
Muscle homogeneity.During interventionIt is a second-order parameter (GLCM) that measures the uniformity of the muscle ROI composition.
Contrast.During interventionIt is a second-order parameter (GLCM) that measures local variations in gray levels of the muscle ROI.
Textural Correlation.During interventionIt is a second-order parameter (GLCM) that expresses linear gray-level dependencies of the muscle ROI.
Entropy.During interventionIt is a second-order parameter (GLCM) to measure muscle ROI disorder.
Echointensity correction factor for adipose thicknessPre-interventionThe measurement of subcutaneous adipose thickness will be carried out through the average of the distance from the skin to the aponeurosis coinciding with the superficial interface of the muscle and with different pressures of the probe on the skin. This measure will be used to develop a correction factor that allows compensating the influence of this variable on echogenicity and echotexture, standardizing the results.
Muscle temperature (ºC).Pre-intervention and during interventionMeasurement of intramuscular temperature of the right vastus lateralis of the quadriceps (ºC)

Secondary

MeasureTime frameDescription
Age (years)Pre-interventionSubject's age (years)
Sex (female or male)Pre-interventionSubject's sex (female or male)
DominancePre-interventionDominant leg (right-left)
Body mass indexPre-interventionIt is a measure of body fat based on height and weight that applies to adult men and women

Countries

Spain

Contacts

CONTACTJavier Molina-Payá, PhD
francisco.molina@uchceu.es965426486
CONTACTSergio Montero-Navarro, PhD
sergio.montero@uchceu.es965426486

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026