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Biomechanical Assessment of Spinal Posture in Girls With Primary Dysmenorrhea

Biomechanical Assessment of Spinal Posture in Girls With Primary Dysmenorrhea

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03802474
Enrollment
100
Registered
2019-01-14
Start date
2019-01-31
Completion date
2019-12-31
Last updated
2019-01-14

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

Conditions

Primary Dysmenorrhea

Brief summary

Dysmenorrhea comes from the Greek word for difficult monthly flow and describes painful menstruation.Primary dysmenorrhea might be caused by spinal misalignment and incompatibility between muscles of the pelvic circumference and soft tissue.Leg Length Discrepancy affects spinal posture. Although, several studies evaluated the relation between spinal alignment, spinal configuration and primary dysmenorrhea, but, there is no previous study investigate the effect of leg length discrepancy on primary dysmenorrhea. So, this study will correlate leg length discrepancy with spinal configuration and primary dysmenorrhea. Statement of the problem: Is there an impact of spinal posture on primary dysmenorrhea in girls? Hypothesis: Null hypothesis: There is no impact of spinal mobility ,spinal configurations and leg length discrepancy on primary dysmenorrhea

Detailed description

Primary dysmenorrhea is defined as painful menses in women with a normal pelvic anatomy. Adolescent girls tend to have a higher prevalence of primary dysmenorrhoea than older women, as primary dysmenorrhoea can improve with age.Asymmetry in upright posture is associated with various outcomes, such as the decreased loading of the affected side in stroke; degenerative changes of the hip, knee, and ankle joints and spine; or a leg length discrepancy.restriction of movement of the lumbosacral vertebrae, body fluid increases within the pelvis as well as contraction of the uterus leading to the intensification of the menstrual pain. Although, several studies evaluated the relation between spinal alignment, spinal configuration and primary dysmenorrhea, but, there is no previous study investigate the effect of leg length discrepancy on primary dysmenorrhea. So, this study will correlate leg length discrepancy with spinal configuration and primary dysmenorrhea. One handred healthy girls with regular menstrual cycle and are not have any pelvic or gynecological disorders will be participated in this study. All subjects will be recruited from student of faculty of physical therapy, Cairo University. 1. Personal data: All data will be recorded in a recording data sheet. 2. Formetric Raster stereography: It will be used to assess spinal configuration (kyphotic angle, lordotic angle, pelvic inclination, trunk inclination and pelvic tilting) during menstruation. 3. Leg length discrepancy Tape measure can be used to measure the true leg length from the anterior superior iliac spine to the medial malleolus. The functional leg length is measured from the umbilicus to medial malleolus. 4. Inclinometer can be used to measure range of motion of lumbar spines.

Interventions

None listed

Sponsors

Cairo University
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
FEMALE
Age
17 Years to 24 Years
Healthy volunteers
Yes

Inclusion criteria

* Healthy girls with regular menstrual cycles with an average of 28:35 days. * Their age will be ranged from 17to 24 years. * Their body mass index will be ranged from 20 to 25kg/m2.

Exclusion criteria

* Girls who have musculoskeletal disorders as low back pain. * Girls who have any pelvic or gynecological disorders. * History of lower limb injury. * Over-weight and obese girls. * Thin and underweight girls. * Girls with spinal deformities as kyphosis and scoliosis.

Design outcomes

Primary

MeasureTime frameDescription
pelvic torsion1 monthpelvic torsion is calculated from the reciprocal torsion of the surface normals on the two lumbar dimples (vertical components). If the difference angle is positive, then the normal on the right dimple (DR) is up more than on the left dimple.
lateral deviation1 monththe total deviation of the spinal midline from the VP-DM line in the frontal plane , i.e the maximum deflection on the right plus the maximum deflection on the left
lordotic angle1 monththis is the maximum lordotic angle measured between the surface tangents of the thoracic-lumbar inflection point ITL and the lower lumbar-sacral inflection point ILS
pelvic inclination1 monththis is calculated as the mean torsion of the DLand DR surface normals
pelvic tilt1 monththe difference in height of the lumbar dimples, based on a horizontal plane (transverse section ). DR is higher than DL if the angle is positive
Trunk inclination1monththe trunk inclination refer to the difference in height between VP and DM based on a vertical plane (sagital section). an angle \>2.8 referred to as Inclination (I), an angle \<2.8 as reclination (R).
Kyphotic angle1 monththis is the maximum kyphotic angle measured between the surface tangents of the upper inflection point ICT in the vicinity of the VP and the thoracic lumbar inflection point ITL.

Secondary

MeasureTime frameDescription
leg lenght discripancy1 monthsTrue leg length is measured from the anterior superior iliac spine to the medial malleolus. The functional leg length is measured from the umbilicus to medial malleolus.

Other

MeasureTime frameDescription
Trunk extention1 monthExtention describes a straightening movement that increases the angle between body parts
trunk lateral flexion1 monthLateral flexion describes bending movement of a body part in the lateral direction, that is to say sidewards. It can be performed either to the right or to the left side.
Trunk flexion1 monthFlexion describes a bending movement that decreases the angle between a segment and its proximal segment

Outcome results

None listed

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