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Evaluating the Level of Agreement Between Goniometer Measurements and Algorithm to Determine Wall Squat Position

An Observational Cross-Sectional Comparison to Evaluate the Level of Agreement Between Standard Universal Goniometer Measurements and a Squat Height Calculator Algorithm to Determine Squat Position for Isometric Wall Squat Position.

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07297485
Enrollment
21
Registered
2025-12-22
Start date
2025-07-15
Completion date
2026-01-19
Last updated
2026-02-06

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

Conditions

Wall Squat Position

Keywords

Goniometer, Algorithm, Wall Squat, Level of Agreement

Brief summary

The wall squat exercise has been used in several research studies to help lower blood pressure. However, setting up the correct squat position often involves using a joint angle-measuring tool called a goniometer to get the knee at exactly the right angle. To set up the wall squat using a goniometer, someone has to stand in position, hold still while their knee angle is measured and adjusted, and then measure how high they should squat. This takes time, can be uncomfortable, and can be difficult to hold steady. This can make it difficult to get accurate measurements, particularly for people who are not used to exercise. Therefore, the purpose of this research is to explore if a squat height calculator (based on leg bone measurements) to work out the squat height agrees with goniometer measurements for specific knee joint angles.

Detailed description

The isometric wall squat exercise has been used as an intervention in several research studies However, how the protocol is delivered can vary between researchers; for example, participants can be instructed to adjust their foot position to keep lower leg vertical with the wall while lowering onto a squat position; while others use a standard goniometer in conjunction with a spirit level to establish knee joint angle and limb position. Therefore, to ensure study reliability and repeatability a standardised protocol to ensure consistent limb position needs to be established. Traditionally, measurement of joint angles and limb range of movement (ROM) using a standard universal goniometer is deemed gold standard in clinical settings. While the goniometer is portable and relatively inexpensive it has several limitations in terms of practical use. Firstly, both hands are required to align and stabilise the goniometer positioning, and maintaining the alignment during movement can be problematic. Also, the use of a standard universal goniometer requires alignment with specified bony landmarks, some of which are not visually located or palpated with ease and require a good level of underpinning anatomical knowledge. Moreover, the level of accuracy in goniometer alignment can be further reduced when observing intertester measurements. Consequently, challenges with goniometer alignment and stabilisation, alongside intertester variability, may lead to errors in measurement. Using a standard universal goniometer in combination with a spirit level to establish the isometric wall squat position requires a baseline weight bearing position to be maintained while correct limb positions and knee joint angle are established, and squat height measurements recorded. This may be time consuming, uncomfortable, and difficult to maintain for untrained populations, particularly within the more acute degree angles, leading to difficulties in determining accurate baseline measurements. Therefore, an alternative method to determine squat position would be beneficial for the development and standardisation of the protocol. As linear bone growth typically ceases at \ 18 yrs for females, and \ 21yrs for males, limb length in the healthy adult population remains relatively consistent. Recent research has explored the use of artificial intelligence algorithms to predict overall height from femoral and tibial bone lengths. Therefore, based on this principle, this study aims to explore if using a squat height calculator algorithm, utilising lower limb bone lengths, agrees with gold standard universal goniometer measurements to ascertain positioning for an isometric wall squat at specific knee joint angles

Interventions

None listed

Sponsors

Northumbria University
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
21 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* \>21 years * Written informed consent provided

Exclusion criteria

* Orthopaedic problems or injury affecting the hip, knee, or ankle joints * Inability to stand unaided and hold a static position for \>5 minutes

Design outcomes

Primary

MeasureTime frameDescription
Level of agreementBaselineLevel of agreement between standard long arm goniometer and squat height calculator algorithm will be determined at each squat stage for knee joint angle (degrees).

Countries

United Kingdom

Contacts

PRINCIPAL_INVESTIGATORGabriel Cucato, PhD

Northumbria University

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 7, 2026