Metabolic Bone Disease Clinical Trial
Official title:
Effect of Physiotherapy on the Promotion of Bone Mineralization in Preterm Infants
Verified date | November 2020 |
Source | Universidad de Murcia |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
To determine whether reflex locomotion therapy is effective for the prevention of osteopenia in preterm infants and compare its effectiveness over other physiotherapeutic methods like passive joint mobilizations and massage
Status | Completed |
Enrollment | 101 |
Est. completion date | July 2020 |
Est. primary completion date | July 2020 |
Accepts healthy volunteers | No |
Gender | All |
Age group | N/A to 34 Weeks |
Eligibility | Inclusion Criteria: - Preterm infants - 26 to 34 weeks of gestational age - Admitted in neonates - Hemodynamically stable - Complete enteral nutrition - Parents or guardians signed an informed consent authorizing the participation of the baby in this study. Exclusion Criteria: - Neurological disorders - Mechanical ventilation - Bronchopulmonary dysplasia - Congenital malformations - Metabolic diseases - Genetic diseases - Intraventricular hemorrhage III-IV, - Diuretic medication or corticosteroids - Bone fractures at the time of inclusion. |
Country | Name | City | State |
---|---|---|---|
Spain | Hospital Torrecárdenas de Almería | Almería | |
Spain | Hospital General Universitario de Elche | Elche | Alicante |
Spain | Hospital Clínico Universitario Virgen de la Arrixaca | Murcia |
Lead Sponsor | Collaborator |
---|---|
Galaad Torró Ferrero |
Spain,
El-shaarawy MK, Rahman SAA, Fakher M, El A, Salah WM. Effect of rolling on oxygen saturation and incubation period in preterm neonates with respiratory distress syndrome. Int J Dev Res. 2017;07(01):11319-11323.
Giannantonio C, Papacci P, Ciarniello R, Tesfagabir MG, Purcaro V, Cota F, Semeraro CM, Romagnoli C. Chest physiotherapy in preterm infants with lung diseases. Ital J Pediatr. 2010 Sep 26;36:65. doi: 10.1186/1824-7288-36-65. — View Citation
Moyer-Mileur L, Luetkemeier M, Boomer L, Chan GM. Effect of physical activity on bone mineralization in premature infants. J Pediatr. 1995 Oct;127(4):620-5. — View Citation
Sanz-Esteban I, Calvo-Lobo C, Ríos-Lago M, Álvarez-Linera J, Muñoz-García D, Rodríguez-Sanz D. Mapping the human brain during a specific Vojta's tactile input: the ipsilateral putamen's role. Medicine (Baltimore). 2018 Mar;97(13):e0253. doi: 10.1097/MD.0000000000010253. — View Citation
Shaw SC, Sankar MJ, Thukral A, Natarajan CK, Deorari AK, Paul VK, Agarwal R. Assisted Physical Exercise for Improving Bone Strength in Preterm Infants Less than 35 Weeks Gestation: A Randomized Controlled Trial. Indian Pediatr. 2018 Feb 15;55(2):115-120. Epub 2017 Dec 14. — View Citation
Vignochi CM, Miura E, Canani LH. Effects of motor physical therapy on bone mineralization in premature infants: a randomized controlled study. J Perinatol. 2008 Sep;28(9):624-31. doi: 10.1038/jp.2008.60. Epub 2008 Jul 17. — View Citation
Vignochi CM, Silveira RC, Miura E, Canani LH, Procianoy RS. Physical therapy reduces bone resorption and increases bone formation in preterm infants. Am J Perinatol. 2012 Sep;29(8):573-8. doi: 10.1055/s-0032-1310520. Epub 2012 Jul 6. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in Tibial Speed of Sound | In order to measure bone mineralization, we used the tibial sound velocity test, using for that purpose a quantitative ultrasound device. It was measured on the left tibia in its lower third, while keeping the knee flexed at a 90 degree angle. The measurement point was made perpendicular to the direction of the bone. Three to five consecutive measurements were made, after which the average of these measurements was calculated to have one unique measure in m/s. | Change measurement: Pre treatment (baseline), at two weeks of treatment and after four weeks of treatment (end of the treatment) | |
Primary | Change in Serum biomarkers of Bone-specific phosphatase markers | N-telopeptides from collagen bonds from serum | Change measurement: Pre treatment (baseline), and after four weeks of treatment (end of the treatment) | |
Primary | Change in Serum biomarkers of osteocalcin markers | osteocalcin markers | Change measurement: Pre treatment (baseline), and after four weeks of treatment (end of the treatment) | |
Primary | Change in Serum biomarkers of Beta-cross Laps. | Beta-cross Laps. | Change measurement: Pre treatment (baseline), and after four weeks of treatment (end of the treatment) | |
Primary | Change in Urine biomarkers of N-telopeptides from collagen bonds | N-telopeptides from collagen bonds | Change measurement: Pre treatment (baseline), at two weeks of treatment and after four weeks of treatment (end of the treatment) | |
Secondary | Change in Height | For anthropometry, height in cm were collected | Change measurement: Pre treatment (baseline), at two weeks of treatment and after four weeks of treatment (end of the treatment) | |
Secondary | Change in Weight | measurements of weight in grams were collected | Change measurement: Pre treatment (baseline), at two weeks of treatment and after four weeks of treatment (end of the treatment) | |
Secondary | Change in Head circumference | For anthropometry, measurements of head circumference in cm were collected | Change measurement: Pre treatment (baseline), at two weeks of treatment and after four weeks of treatment (end of the treatment) |
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