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Sacroiliac joint (SIJ) dysfunction is a common cause of lumbopelvic instability, often linked to altered load transfer between the spine and lower limbs. Although various therapeutic interventions are used to restore joint alignment and improve neuromuscular control, the immediate effects of chiropractic manipulation on core stabilization in asymptomatic individuals remain unclear. This randomized controlled study aimed to examine the acute impact of bilateral sacroiliac joint high-velocity, low-amplitude (HVLA) manipulation on trunk stability in healthy adults. Sixty participants aged 18-40 years were randomly assigned to either a manipulation group or a control group. Core stabilization performance and postural control were evaluated using standardized tests including the Centaur Trunk Training (CTT) biofeedback system, plank, sit-ups endurance, and flexibility assessments. The findings demonstrated significant short-term improvements in trunk stability and flexibility following manipulation, suggesting that sacroiliac joint adjustments may positively influence neuromuscular activation and motor control in healthy individuals.
Full description
SIJ is recognized as a key anatomical structure responsible for transmitting mechanical loads between the spine and the lower extremities. Even minor restrictions in SIJ mobility have the potential to alter lumbopelvic alignment, modify core muscle activation patterns, and influence postural stability. Although these alterations may occur in symptomatic and asymptomatic populations alike, the precise neuromuscular mechanisms through which SIJ mobility affects trunk control remain an area of ongoing scientific inquiry.
Manual therapy techniques-particularly HVLA manipulation-are frequently employed to restore joint mobility, regulate proprioceptive input, and optimize neuromuscular coordination within the lumbopelvic region. HVLA manipulation has been proposed to facilitate rapid mechanical and neurophysiological responses, including improved segmental motion, enhanced afferent feedback, and short-term modifications in motor unit recruitment. Despite these proposed mechanisms, empirical evidence concerning the acute effects of SIJ-directed HVLA manipulation in healthy adults is limited.
Core stabilization constitutes another critical component of lumbopelvic rehabilitation. This approach emphasizes the activation, endurance, and coordinated function of deep trunk musculature-particularly the transversus abdominis, multifidus, and associated stabilizer groups-which collectively contribute to spinal alignment and postural equilibrium. Core stabilization strategies are widely supported in theory; however, their interaction with manual therapy techniques, especially in terms of immediate biomechanical and neuromuscular responses, has not been thoroughly examined in healthy individuals.
This randomized controlled trial was designed to investigate the immediate effects of bilateral SIJ HVLA manipulation on trunk stability and postural control in healthy adults. The study was conducted at Ataşehir Florence Nightingale Hospital and included participants aged 18-40 years who met predefined eligibility criteria. After completing baseline assessments, participants were randomly assigned to one of two groups:(1) the SIJ Manipulation Group, which received bilateral HVLA manipulation at the posterior superior iliac spines (PSIS) in a side-lying position, and (2) the Control Group (No Treatment), which completed the same assessment procedures without receiving any therapeutic intervention.
A comprehensive set of outcome measures was selected to evaluate multiple dimensions of lumbopelvic function. Pelvic alignment patterns were examined using the Derifield-Thompson leg check, while lumbar spine mobility was assessed with the Modified Schober Test. Core endurance and trunk muscle performance were measured using standardized sit-up and plank tests. The most detailed assessment was performed with the CTT biofeedback system, an objective device capable of analyzing postural control across 22 angular positions ranging from 0° to ±180°, thereby providing multidimensional insight into trunk stability.
The HVLA manipulation procedure involved a brief, controlled thrust delivered bilaterally to the SIJ region following established clinical guidelines. All post-intervention assessments were performed immediately after the procedure according to the predefined protocol. Ethical approval for the study was obtained from the Istanbul Yeni Yüzyıl University Clinical Research Ethics Committee (Decision No: 24.03.2022/14), and written informed consent was obtained from all participants prior to enrollment.
This trial was designed to explore the theoretical mechanisms through which SIJ manipulation may influence trunk stability, neuromuscular activation, and early postural adjustments in asymptomatic individuals. The findings and statistical outcomes of the study will be reported separately in the Results section of this clinical trial record. The present protocol description is intended solely to outline the scientific rationale, methodological framework, and procedural details of the study, without including any data-driven conclusions.
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60 participants in 2 patient groups
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Data sourced from clinicaltrials.gov
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