Esta página se tradujo automáticamente y no se garantiza la precisión de la traducción. por favor refiérase a versión inglesa para un texto fuente.

Virtual Reality-Assisted Exercise in Pediatric Hematopoietic Stem Cell Transplantation (VR-HSCT)

16 de junio de 2026 actualizado por: Mirsad Alkan, Istinye University

Effects of Virtual Reality-Assisted Video Game-Based Exercise Training on Functional Level, Respiratory Parameters, and Physical Fitness in Pediatric Patients After Hematopoietic Stem Cell Transplantation

This randomized controlled, single-blind clinical trial investigates whether virtual reality (VR)-assisted, video game-based exercise training, added to a conventional pulmonary physiotherapy and rehabilitation program, improves functional level, respiratory parameters, and physical fitness in pediatric patients (5-18 years) following hematopoietic stem cell transplantation (HSCT). Participants attended 24 supervised, face-to-face exercise sessions over 8 weeks (3×/week) under physiotherapist supervision. The Experimental Group received game-based exercise using the Nintendo Wii Fit U platform with the Wii Balance Board and the Breathing Labs Breathing Games software (Slovenia) in addition to the conventional program. Outcomes included the Modified Alpha-Fit Pediatric Test Battery (vertical jump, 6-minute walk test, sit-and-reach, flamingo balance), upper-extremity isometric muscle strength (handheld dynamometry) and handgrip strength (Jamar), pulmonary function tests, maximal inspiratory and expiratory mouth pressures, accessory respiratory muscle architecture by myotonometry (MyotonPro: sternocleidomastoid, upper trapezius, pectoralis major), and ultrasound assessment of pleural thickness, diaphragm thickness, and diaphragm excursion.

Descripción general del estudio

Descripción detallada

Design: A randomized controlled, single-blind (assessor-blinded), parallel-group trial conducted at the Cardiopulmonary Rehabilitation Unit, Department of Physiotherapy and Rehabilitation, Faculty of Health Sciences, Istinye University. Pediatric patients who had undergone HSCT were referred from the Pediatric Bone Marrow Transplantation Unit of Medicalpark Bahçelievler Hospital, Istanbul. Eligible patients (5-18 years) who met clinical-stability criteria and had no history of orthopedic, neurological, or cardiac disease were enrolled after written parental consent and child assent.

Randomization: Stratified by sex using a computer-generated 1:1:1:1 sequence to ensure homogeneous sex distribution across the two arms. Concealment was achieved through computer allocation. Participants were assigned to (1) Control Group (CG): conventional pulmonary physiotherapy and rehabilitation, or (2) Experimental Group (EG): the same conventional program PLUS supervised, virtual reality-assisted, video game-based exercise. The outcomes assessor was blinded to group allocation; participants and treating physiotherapists could not be blinded due to the nature of the intervention.

Conventional pulmonary physiotherapy program (both groups): diaphragmatic breathing; thoracic expansion exercises (chest and bilateral segmental breathing); incentive spirometry (Triflo® or Voldyne®); postural drainage and percussion; cough technique training; breathing control; range-of-motion exercises. Each session lasted 25 minutes and consisted of 2 sets × 5 repetitions with 5-6 tidal-breath rest intervals to avoid respiratory-muscle fatigue. Exercise intensity was titrated using the Modified Borg Scale, targeting perceived dyspnea/fatigue between 4 and 6 (moderate intensity).

VR-assisted, video game-based program (Experimental Group only): delivered concurrently with the conventional program in 24 supervised face-to-face sessions over 8 weeks (3×/week). Two platforms were used in combination. (a) Breathing Labs Breathing Games (Breathing Labs, Slovenia): five games selected per patient preference - Balloon (level 1 weeks 1-4 → level 2 weeks 5-8), Plane (6 s → 8 s), Wolf (easy → moderate), Flowers (sunflower → rose), and Pluto (easy → moderate). Patients were seated on a backless chair to prevent falls; sessions were paused if dizziness or loss of control occurred. Visual score feedback was used to reinforce engagement. (b) Nintendo Wii Fit U with the Wii Balance Board: 8 balance/mobility-targeted games, with 4 of 8 played per session for 5 minutes each. Weight-shifting games (Balance Bubble, Table Tilt, Perfect 10, Super Hula Hoop) required mediolateral and anteroposterior weight shifts on the balance board; stepping/squatting games (Obstacle Course, Advanced Obstacle Course, Ski Jump, Basic Step) required marching, squatting, leg extension, or stepping. Participants stood with or without chair-back hand support depending on tolerance.

Assessments: A blinded assessor performed pre- and post-intervention testing in fixed order across separate days to prevent fatigue. The full battery comprised: sociodemographic and disease-related variables (diagnosis, transplant type, donor type, stem-cell source, time since transplant, conditioning regimen, HLA matching) extracted from the hospital electronic medical record; bioelectrical impedance analysis (Tanita) for body composition; waist and hip circumferences and waist-to-hip ratio; pulmonary function testing on a portable spirometer (Cosmed Pony FX, Italy) per ATS/ERS criteria with single-use mouthpieces and filters (FVC, FEV1, FEV1/FVC, PEF expressed in liters and as % predicted); respiratory muscle strength using a portable electronic mouth-pressure device (Micro Medical Micro RPM, Rochester, UK) recording MIP and MEP in cmH2O (best of three trials, expressed as % age- and sex-predicted); inspiratory muscle endurance with the Powerbreath Plus MR (HaB International, Southam, UK) at 60% MIP for up to 10 minutes; peripheral muscle strength using a handheld dynamometer (Lafayette Model 01165, IN, USA) for shoulder flexors/abductors and elbow flexors/extensors bilaterally; handgrip strength with a Jamar dynamometer (Nottinghamshire, UK) in seated position with elbow at 90° and wrist neutral, best of three trials, recorded in Newtons; respiratory muscle tone of sternocleidomastoid, upper trapezius, and pectoralis major using MyotonPro (Myoton AS, Tallinn, Estonia) with the device perpendicular to the marked muscle belly, recording frequency (Hz), stiffness (N/m), decrement, relaxation time (ms), and creep; diaphragm thickness measured at the 9th intercostal space (anterior axillary line) at end-expiration using B-mode 7 MHz ultrasound (Toshiba Aplio XG, Tokyo, Japan), and right-hemidiaphragm excursion during quiet breathing, deep breathing, and sniff testing using M-mode with a 3.5 MHz curved-array transducer (left hemidiaphragm not assessed due to image-quality limitations); pleural thickness assessed by the same ultrasound system. Functional fitness was assessed via the Modified Alpha-Fit Pediatric Test Battery: 6-minute walk test on a 30 m flat corridor (cardiovascular fitness); standing long jump and Jamar handgrip (musculoskeletal fitness); sit-and-reach test using a 35 × 45 × 32 cm box (flexibility); flamingo balance test on a 50 × 4 × 3 cm beam over 1 minute (balance); waist circumference and BMI (body composition; Turkish pediatric reference values per Neyzi et al., 2015).

Statistical plan: Sample size was calculated a priori with G*Power v3.1 (two-tailed, α=0.05, power=0.80, medium effect size d=0.40), targeting n=40 (20 per group). Given the achieved sample size and the resulting Type II error risk, all variables were analyzed with non-parametric tests. Within-group changes were tested with the Wilcoxon signed-rank test; between-group comparisons used the Mann-Whitney U test for continuous variables and the chi-square test for categorical variables. Descriptive statistics are reported as mean ± standard deviation. Post-hoc power analysis using the primary outcome (vertical jump test) within the Experimental Group yielded an effect size of 0.98 with α=0.05 and power of 0.80. Of 38 enrolled, 22 were withdrawn during the intervention (3 incomplete final assessments due to clinical instability or refusal; 1 scabies; 5 cutaneous GvHD with high-dose steroid therapy; 1 respiratory-tract infection; 6 systemic infections requiring isolation; 3 new psychiatric complications with poor prognosis; 3 relocation precluding follow-up). Sixteen participants completed the trial (CG n=8; EG n=8). Funding: Health Instıtutes of Turkiye (TÜSEB), Project No 31278, Program Code 2022-ACİL-11 Group A. The investigators declared no conflicts of interest.

Tipo de estudio

Intervencionista

Inscripción (Actual)

38

Fase

  • No aplica

Contactos y Ubicaciones

Esta sección proporciona los datos de contacto de quienes realizan el estudio e información sobre dónde se lleva a cabo este estudio.

Ubicaciones de estudio

Criterios de participación

Los investigadores buscan personas que se ajusten a una determinada descripción, denominada criterio de elegibilidad. Algunos ejemplos de estos criterios son el estado de salud general de una persona o tratamientos previos.

Criterio de elegibilidad

Edades elegibles para estudiar

  • Niño
  • Adulto

Acepta Voluntarios Saludables

No

Descripción

Inclusion Criteria:

  • Currently receiving care in a pediatric bone marrow transplantation unit (post-HSCT).
  • Age between 5 and 18 years (inclusive).
  • Able to perform pursed-lip breathing with expiration ≥ 3 seconds.
  • Ambulatory and able to cooperate with verbal instructions.
  • Clinically stable as confirmed by the treating physician at the time of enrollment.
  • No history of orthopedic, neurological, or cardiac disease.

Exclusion Criteria:

  • Facial palsy.
  • Severe visual impairment or visual field defects.
  • Aphasia.
  • History of abdominal or thoracic surgery.
  • During study: medically unstable status; new diagnosis of cutaneous graft-versus-host disease (GvHD) requiring high-dose steroid therapy; respiratory-tract or systemic infection requiring isolation; new psychiatric illness with poor prognosis; relocation precluding follow-up; withdrawal of consent.

Plan de estudios

Esta sección proporciona detalles del plan de estudio, incluido cómo está diseñado el estudio y qué mide el estudio.

¿Cómo está diseñado el estudio?

Detalles de diseño

  • Propósito principal: Tratamiento
  • Asignación: Aleatorizado
  • Modelo Intervencionista: Asignación paralela
  • Enmascaramiento: Único

Armas e Intervenciones

Grupo de participantes/brazo
Intervención / Tratamiento
Comparador activo: Arm 1 - Active Comparator: Control Group (CG)
Conventional pulmonary physiotherapy and rehabilitation program delivered as 24 supervised face-to-face sessions across 8 weeks (3×/week) under physiotherapist supervision. Each session lasted 25 minutes and included diaphragmatic breathing, thoracic expansion exercises (chest and bilateral segmental), incentive spirometry (Triflo® or Voldyne®), postural drainage and percussion, cough technique training, breathing control, and range-of-motion exercises (2 sets × 5 repetitions with 5-6 tidal-breath rest). Intensity targeted Modified Borg Scale 4-6.
Physiotherapist-led pulmonary rehabilitation program (24 sessions; 3×/week × 8 weeks). Components: diaphragmatic breathing, thoracic expansion exercises, incentive spirometry, postural drainage with percussion, cough techniques, breathing control, and range-of-motion exercises. Intensity titrated by Modified Borg Scale (target 4-6).
Game-based exercise sessions delivered concurrently with the conventional program. Breathing Labs games (Balloon, Plane, Wolf, Flowers, Pluto) progressed in difficulty between weeks 1-4 and 5-8. Wii Fit U weight-shifting games (Balance Bubble, Table Tilt, Perfect 10, Super Hula Hoop) and stepping/squatting games (Obstacle Course, Advanced Obstacle Course, Ski Jump, Basic Step) were played 4 per session for 5 minutes each on the Wii Balance Board, with or without chair-back support based on tolerance. Total 24 sessions over 8 weeks.
Experimental: Arm 2 - Experimental: VR-Assisted Game-Based Exercise + Conventional Physiotherapy (EG)
Identical conventional pulmonary physiotherapy program PLUS virtual reality-assisted, video game-based exercise delivered concurrently in 24 supervised face-to-face sessions across 8 weeks (3×/week). Game-based component combined the Breathing Labs Breathing Games (5 games with progressive difficulty) and Nintendo Wii Fit U with the Wii Balance Board (8 balance/mobility games; 4 played per session at 5 minutes each). Intensity titrated by Modified Borg Scale (target 4-6).
Physiotherapist-led pulmonary rehabilitation program (24 sessions; 3×/week × 8 weeks). Components: diaphragmatic breathing, thoracic expansion exercises, incentive spirometry, postural drainage with percussion, cough techniques, breathing control, and range-of-motion exercises. Intensity titrated by Modified Borg Scale (target 4-6).
Game-based exercise sessions delivered concurrently with the conventional program. Breathing Labs games (Balloon, Plane, Wolf, Flowers, Pluto) progressed in difficulty between weeks 1-4 and 5-8. Wii Fit U weight-shifting games (Balance Bubble, Table Tilt, Perfect 10, Super Hula Hoop) and stepping/squatting games (Obstacle Course, Advanced Obstacle Course, Ski Jump, Basic Step) were played 4 per session for 5 minutes each on the Wii Balance Board, with or without chair-back support based on tolerance. Total 24 sessions over 8 weeks.

¿Qué mide el estudio?

Medidas de resultado primarias

Medida de resultado
Medida Descripción
Periodo de tiempo
Vertical Jump Test
Periodo de tiempo: Baseline to Week 8
Component of the Modified Alpha-Fit Pediatric Test Battery. Participant first reaches the maximum standing-reach height with one arm, then jumps vertically to the maximum reachable height; the difference between the two marks is recorded in centimeters. The best of two trials is retained. Higher values indicate greater lower-extremity power. Safety Issue: No.
Baseline to Week 8
Diaphragm Ultrasound
Periodo de tiempo: Baseline to Week 8
Right-hemidiaphragm thickness measured at end-expiration in the 9th intercostal space (anterior axillary line) using B-mode ultrasonography with a 7 MHz transducer (Toshiba Aplio XG, Tokyo, Japan). Right-hemidiaphragm excursion measured by M-mode with a 3.5 MHz curved-array transducer during quiet breathing, deep breathing, and sniff testing. Mean of three respiratory cycles reported in millimeters. Left hemidiaphragm not assessed due to image-quality limitations.
Baseline to Week 8

Medidas de resultado secundarias

Medida de resultado
Medida Descripción
Periodo de tiempo
Six-Minute Walk Test
Periodo de tiempo: Baseline to Week 8
Distance walked at a self-selected pace without running on a 30 m flat corridor for 6 minutes; cardiovascular fitness measure within the Modified Alpha-Fit Pediatric Test Battery. Higher values indicate better cardiovascular endurance. Safety Issue: No.
Baseline to Week 8
Sit-and-Reach Test
Periodo de tiempo: Baseline to Week 8
Flexibility component of the Modified Alpha-Fit Pediatric Test Battery; performed on a 35 × 45 × 32 cm sit-and-reach box. Participant pushes the marker forward as far as possible with both hands; the furthest position reached is recorded in centimeters. Higher values indicate greater hamstring/lower-back flexibility. Safety Issue: No
Baseline to Week 8
Flamingo Balance Test
Periodo de tiempo: Baseline to Week 8
Static balance component of the Modified Alpha-Fit Pediatric Test Battery; performed barefoot on a 50 × 4 × 3 cm wooden/metal beam. The participant stands single-leg with the contralateral leg flexed against the supporting knee for 1 minute; the number of imbalances is recorded. Test is terminated and scored zero if more than 15 imbalances occur within the first 30 seconds. Lower values indicate better balance. Safety Issue: No.
Baseline to Week 8
Upper-Extremity Isometric Muscle Strength
Periodo de tiempo: Baseline to Week 8
Maximal isometric strength of shoulder flexion, shoulder abduction, shoulder adduction, elbow flexion, and elbow extension measured bilaterally with a handheld dynamometer (Lafayette Model 01165, IN, USA) in standardized positions; the best of trials recorded per side in Newtons. Higher values indicate greater muscle strength. Safety Issue: No.
Baseline to Week 8
Handgrip Strength
Periodo de tiempo: Baseline to Week 8
Maximal handgrip force measured bilaterally with a Jamar handheld dynamometer (Nottinghamshire, UK) in seated position with the elbow flexed to 90° and wrist in neutral; the best of three trials per side recorded in Newtons. Higher values indicate greater grip strength. Safety Issue: No.
Baseline to Week 8
Pulmonary Function Test
Periodo de tiempo: Baseline to Week 8
Forced vital capacity (FVC), forced expiratory volume in 1 second (FEV1), FEV1/FVC ratio, and peak expiratory flow (PEF) measured with a portable spirometer (Cosmed Pony FX, Italy) per ATS/ERS criteria, using single-use individualized mouthpieces and filters. Reported in liters and as percent of age- and sex-predicted values. Higher values indicate better pulmonary function. Safety Issue: No.
Baseline to Week 8
Maximal Mouth Pressures
Periodo de tiempo: Baseline to Week 8
Respiratory muscle strength assessed with a portable electronic mouth-pressure device (Micro Medical Micro RPM, Rochester, UK). MIP measured during maximal inspiration against a closed valve following maximal expiration (held 1-3 s); MEP measured during maximal expiration against a closed valve following maximal inspiration. Best of three trials reported in cmH2O and as percent predicted. Higher values indicate greater respiratory muscle strength. Safety Issue: No.
Baseline to Week 8
Accessory Respiratory Muscle Architecture
Periodo de tiempo: Baseline to Week 8
Sternocleidomastoid, upper trapezius, and pectoralis major muscle architecture parameters quantified with a MyotonPro (Myoton AS, Tallinn, Estonia) placed perpendicular to the skin-marked muscle belly: oscillation frequency (Hz; tone), dynamic stiffness (N/m), logarithmic decrement (elasticity), mechanical relaxation time (ms), and creep. Standardized resting position. Safety Issue: No.
Baseline to Week 8
Pleural Thickness
Periodo de tiempo: Baseline to Week 8
Right-sided pleural thickness measured by ultrasonography (Toshiba Aplio XG; B-mode 7 MHz). Reported in millimeters. Safety Issue: No.
Baseline to Week 8

Colaboradores e Investigadores

Aquí es donde encontrará personas y organizaciones involucradas en este estudio.

Patrocinador

Fechas de registro del estudio

Estas fechas rastrean el progreso del registro del estudio y los envíos de resultados resumidos a ClinicalTrials.gov. Los registros del estudio y los resultados informados son revisados ​​por la Biblioteca Nacional de Medicina (NLM) para asegurarse de que cumplan con los estándares de control de calidad específicos antes de publicarlos en el sitio web público.

Fechas importantes del estudio

Inicio del estudio (Actual)

16 de enero de 2025

Finalización primaria (Actual)

30 de agosto de 2025

Finalización del estudio (Actual)

15 de septiembre de 2025

Fechas de registro del estudio

Enviado por primera vez

29 de abril de 2026

Primero enviado que cumplió con los criterios de control de calidad

16 de junio de 2026

Publicado por primera vez (Actual)

17 de junio de 2026

Actualizaciones de registros de estudio

Última actualización publicada (Actual)

17 de junio de 2026

Última actualización enviada que cumplió con los criterios de control de calidad

16 de junio de 2026

Última verificación

1 de junio de 2026

Más información

Términos relacionados con este estudio

Plan de datos de participantes individuales (IPD)

¿Planea compartir datos de participantes individuales (IPD)?

INDECISO

Información sobre medicamentos y dispositivos, documentos del estudio

Estudia un producto farmacéutico regulado por la FDA de EE. UU.

No

Estudia un producto de dispositivo regulado por la FDA de EE. UU.

No

Esta información se obtuvo directamente del sitio web clinicaltrials.gov sin cambios. Si tiene alguna solicitud para cambiar, eliminar o actualizar los detalles de su estudio, comuníquese con register@clinicaltrials.gov. Tan pronto como se implemente un cambio en clinicaltrials.gov, también se actualizará automáticamente en nuestro sitio web. .

Suscribir