NCT07714434

Brief Summary

The term equilibrium is related to Newton's first law and, as used in mechanics, describes the state where the effect of the forces acting on an object is zero. Equilibrium is divided into two types: static and dynamic. Static equilibrium is the ability to maintain posture without any external forces. This type of equilibrium requires the center of gravity to be kept within the support base. Dynamic equilibrium, on the other hand, is the equilibrium maintained during motion. It requires a controlled shift of the center of gravity. Equilibrium is controlled by the proprioceptive, visual, and vestibular systems. The perception of one's own motion and balance is encoded by proprioceptive and visual signals, along with the vestibular system's perception of inertial motion. Connections between the vestibular nuclei and the cerebellum, hippocampus, prefrontal and parietal cortices provide information for cognitive functions such as spatial functions, navigation, and memory. Adaptation to postural changes in complex environments is known to be achieved through the coordinated and seamless functioning of these structures. In addition to these main systems, spatial orientation has been shown to be a crucial component for balance and posture control. Information from these systems is integrated and processed depending on the task and environment. The interaction and processing of sensory components can also be influenced by ongoing body movements, anticipation, prediction, or instructions. This sensory processing process can depend on many factors. The integration process can also go through a process involving inhibition. For example, standing on the deck of a station, a moving train may cause a person to perceive their own movement. The visual inputs that produce this sensation need to be excluded or blocked from the integration process. Like reweighting, inhibition is a dynamic process. While sensory information continuously flows into the brain, incompatible sensory channel(s) must be identified and blocked from integration. Visual-spatial skills are of great importance for functional independence; they enable us to interact with our environment in 2 and 3 dimensions, perceive the shapes of objects in space, understand the location of objects in space, and understand the spatial orientation of our body. Visual-spatial abilities also include responses to scanning space, reaction speed, visualization, orientation, and sustained or focused attention. Visual stimuli provide individuals with information about the environment. Since visual-spatial codes are three-dimensional, the environment can be perceived in three dimensions. Visual-spatial attention, a component of visual-spatial components, selects relevant sensory information and supports the preparation of responses to this information. It is defined in the Lifelong Development Dictionary published by the APA as 'the way an individual distributes their attention to the visual field'. It selects relevant sensory information and supports the preparation of responses to this information. It allows for selective processing of visual information by prioritizing a specific visual field section. Visual-spatial attention can be directed from one direction to another voluntarily or involuntarily. It is known that cognitive and motor skills develop in a coordinated manner in both children and older adults and that there is a significant relationship between them. There are studies in the literature that address balance and visual-spatial skills and indicate a relationship between them. In their study investigating the relationship between these two functions in stroke patients, Embrechts et al. revealed that reduced visuospatial skills can cause balance and posture problems. It has been suggested that visuospatial input is essential for proactive planning and adjustments to maintain stability in dynamic and complex environments and allows for preventive regulation of movement patterns that provide safe movement and postural control.

Trial Health

65
Monitor

Trial Health Score

Automated assessment based on enrollment pace, timeline, and geographic reach

Enrollment
40

participants targeted

Target at P25-P50 for all trials

Timeline
3mo left

Started Aug 2026

Shorter than P25 for all trials

Status
not yet recruiting

Health score is calculated from publicly available data and should be used for screening purposes only.

Trial Relationships

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Study Timeline

Key milestones and dates

Study Progress1%
Aug 2026Oct 2026

First Submitted

Initial submission to the registry

July 15, 2026

Completed
5 days until next milestone

First Posted

Study publicly available on registry

July 20, 2026

Completed
12 days until next milestone

Study Start

First participant enrolled

August 1, 2026

Completed
3 months until next milestone

Primary Completion

Last participant's last visit for primary outcome

October 15, 2026

Expected
15 days until next milestone

Study Completion

Last participant's last visit for all outcomes

October 30, 2026

Last Updated

July 22, 2026

Status Verified

July 1, 2026

Enrollment Period

3 months

First QC Date

July 15, 2026

Last Update Submit

July 20, 2026

Conditions

Outcome Measures

Primary Outcomes (1)

  • Balance Assessment

    This assessment will be applied using BeCure Balance System. The measurement will be taken on an electronic balance board with eyes open for 30 seconds. Individuals will position themselves 1 meter away from a wall and will be asked to stand and maintain their balance while focusing on the '+' sign on the wall. The software will record the change in the center of gravity in centimeters over 30 seconds.

    At the beginning of the study

Secondary Outcomes (1)

  • Visuospatial Attention Assessment

    At the beginning of the study

Eligibility Criteria

Age18 Years - 35 Years
Sexall
Healthy VolunteersYes
Age GroupsAdult (18-64)
Sampling MethodNon-Probability Sample
Study Population

Yougn adult

You may qualify if:

  • Being between the ages of 18-35
  • being right-handed

You may not qualify if:

  • having a syndrome that affects balance (such as vertigo)
  • Having a neuropsychiatric diagnosis
  • using neuropsychiatric medication,
  • having undergone lower extremity surgery, or having an orthopedic, neurological, or musculoskeletal problem.

Contact the study team to confirm eligibility.

Sponsors & Collaborators

Study Design

Study Type
observational
Observational Model
OTHER
Time Perspective
CROSS SECTIONAL
Sponsor Type
OTHER
Responsible Party
PRINCIPAL INVESTIGATOR
PI Title
assistant proffessor

Study Record Dates

First Submitted

July 15, 2026

First Posted

July 20, 2026

Study Start

August 1, 2026

Primary Completion (Estimated)

October 15, 2026

Study Completion (Estimated)

October 30, 2026

Last Updated

July 22, 2026

Record last verified: 2026-07

Data Sharing

IPD Sharing
Will not share