Rehabilitation Program Dedicated to Post-stroke Lateropulsion Including Exoskeleton Assisted Exercises
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: specific lateropulsion rehabilitation program (exoskeleton + specific physiotherapy orientation rehabilitation), Conventional physiotherapy without without exercises dedicated to lateropulsion or verticality representation alleviation.
- Кому может быть актуально
- Состояния в реестре: Stroke, Ischemic. Базовые параметры: 18 лет — 84 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Франция
- Следующий шаг
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Обзор
Lateropulsion is a deficit in the body orientation with respect to the vertical in the coronal plane, defined by the presence of one of the three signs: lateral body tilt, active pushing from the sound limbs, and resistance to passive corrections. The lateral body tilt is the cardinal sign, the frequency of the 2 other signs increasing with lateropulsion severity (most dramatic forms called pusher syndrome in the past). Lateropulsion is frequent after stroke, and represents the main factor underpinning balance and gait disorders at the subacute phase. After hemisphere stroke lateropulsion is caused by a bias in the internal model of the verticality in the frontal plane, individuals unconsciously aligning their body posture on a tilted verticality representation. Pilot studies suggested the possibility to recalibrate the internal model of verticality, biased by stroke, and to improve individuals' uprightness. The investigators expect that a specific rehabilitation program combining technics devoted to lateropulsion, and comprising exoskeleton (Atalante) assisted balance exercises could help recalibrate the internal model of verticality and alleviate lateropulsion. The primary objective is to test the hypothesis that a 3-week specific lateropulsion rehabilitation program (15 sessions of 30 minutes including exoskeleton and a rehabilitation focused on the vertical body orientation in the frontal plane) improves the visual vertical (VV), the most used test to assess verticality perception.
Подробное описание
BACKGROUND To our knowledge, no study has ever assessed the effects of a rehabilitation program specifically devoted to lateropulsion. The investigators expect that such a specific program combining different technics selected on the basis of theoretical rationale, experimental evidence in healthy subjects, or phase I-II randomized clinical studies, and supposed to improve verticality representation or alleviate lateropulsion could improve verticality representation and alleviate lateropulsion. The investigators hypothesize that individuals with moderate to severe lateropulsion after hemisphere stroke could benefit from such a specific lateropulsion rehabilitation program.
OBJECTIVES The primary objective is to test the hypothesis that, in individuals with a first ischemic right hemisphere stroke showing a moderate to severe lateropulsion due to a biased internal model of verticality, a 3-week intensive specific and intensive lateropulsion rehabilitation program (15 physiotherapy sessions of 30 minutes including exoskeleton-assisted lateral balance exercises) improves the visual perception of the verticality as assessed by the Visual Vertical (VV) orientation. This outcome has been selected because it may be repeatedly assessed, which is necessary in a Small-N design Study.
The secondary objectives are to:
* Test the hypothesis that the specific and intensive lateropulsion rehabilitation program also modulates the postural perception of the vertical (PV). This transmodal modulation of verticality perception involving both VV and PV would mean that the internal model of verticality has been recalibrated. This would have a clinical and scientific significance going far beyond a simple change in verticality perception * Test the hypothesis that the specific and intensive lateropulsion rehabilitation program alleviates lateropulsion; * Test the hypothesis that the specific and intensive lateropulsion rehabilitation program improves balance and gait abilities without any effect on the motricity of the paretic upper limb; * Evaluate the participants' perception at the end of this specific rehabilitation program.
HYPOTHESES Considering the main objective, the investigators hypothesize that the specific and intensive lateropulsion rehabilitation program will improve VV orientation of at least 2°, constituting a real change in VV perception.
STUDY DESIGN The study is a monocentric Small-n design study. The experimental plan is a multiple baseline design. This design applies for intervention with slow/delayed changes and no expected washout. Three participants will be included after about the same time post stroke (subacute phase). The VV will be measured daily (except on weekends) for each participant (i.e. 5 VV per week ), and the generalization and control measures measured once each week. All participants will follow a conventional rehabilitation program until they start the intervention.
One participant will start the intervention period 2 weeks after enrolment. Another will start at 3 weeks after enrolment and the last one will start at 3 weeks after enrolment. All participants will be assessed repetitively on the target variables. The sequential introduction of the intervention in 3 participants will allow the visualization of lack of retest effect and of progress unrelated to intervention in the individuals not having the intervention yet.
INTERVENTION
During the baseline and after the 3-week intervention, individuals will follow the conventional rehabilitation program including :
* 2 sessions per day of 30-minutes of "conventional" physiotherapy 5 days a week without exercises specifically devoted to the control of body orientation in frontal plane, or verticality representation * 1 session of 30-min of occupational therapy 5 days a week * speech therapy and neuropsychology if necessary.
During the 3-week intervention, individuals will have:
* 1 session per day of 30-min of physiotherapy specifically focused on the body orientation with respect to gravity in the frontal plane, including exoskeleton-assisted balance and gait exercises 3 times a week, 5 days a week, * 1 session per day of 30-min conventional physiotherapy 5 days a week * 1 session of 30-min of occupational therapy 5 days a week * speech therapy and neuropsychology if necessary. So, the intervention phase lasts 3 weeks, and consists in 15 physiotherapy sessions, focused on the active vertical body orientation in the frontal plane and comprising exoskeleton-assisted balance and gait exercises. Participants have the same dose of rehabilitation in each phase (baseline, during intervention and after intervention), which only differ in the nature of the rehabilitation.
During the specific rehabilitation program, the frame of exercises with the Atalante® exoskeleton comprises verticalization: work in standing position, stepping, walking in different directions including backward, with the help of a mirror or without visual information (eyes closed). Some exercises in the exoskeleton will also be performed when the participant is laterally tilted (in a static position, during active functional tasks, eyes open and closed).
The specific physiotherapy rehabilitation targeting lateropulsion will include: verticality awareness, exercises in front of a mirror to facilitate the awareness of body tilt (or with a video record), posturography with biofeedback, trunk inclination, reaching tasks in sitting and standing position, walking with body-weight support, orientation tasks during sensorial ponderation (eyes open/closed, foam or firm surface, cervical extension...) The investigators chose not to include brain stimulation in this program.
PARTICIPANTS Three patients will be included. The study will be explained to eligible individuals who will be free to participate or not. An informed consent form will then be signed by each participant.
To meet the scientific standards of SCEDs, one required design criteria is to include at least three attempts to demonstrate an intervention effect (i.e. 3 participants in our case). The sequential introduction of the intervention in 3 participants will allow the visualization of effect of the intervention on the VV.
RELEVANCE Regaining independent balance and mobility is a major goal in post-stroke rehabilitation. While lateropulsion due to a biased internal model of verticality is one of the most important detrimental factors affecting balance and gait at the post-stroke subacute phase, no specific lateropulsion rehabilitation program has ever been scientifically validated with a high level of evidence. This study will focus on individuals with moderate to severe lateropulsion caused by a biased internal model of verticality due to a right hemisphere stroke which are known to have lesser recovery and longer hospital length of stay. A specific and intensive lateropulsion rehabilitation program dedicated to the active vertical body orientation in the frontal plan could speed up the mobility recovery and shorten the hospitalization period.
Вмешательства
- Поведенческое specific lateropulsion rehabilitation program (exoskeleton + specific physiotherapy orientation rehabilitation)
5 times a week during 30 minutes sessions = 15 Physiotherapy sessions, focused on the active vertical body orientation in the frontal plane and comprising exoskeleton-assisted balance and gait exercises. \+ 5 times a week during 30 minutes sessions = 15 conventional physiotherapy without exercises dedicated to lateropulsion or verticality representation alleviation The intervention description is more extensive in the study description section - Поведенческое Conventional physiotherapy without without exercises dedicated to lateropulsion or verticality representation alleviation
10 times a week, during 30-minutes
Первичные конечные точки
- Visual Vertical (VV) Orientation [Срок оценки: Daily, from enrollment to the end of treatment at 8 weeks]
Вторичные конечные точки (12)
- Postural Vertical (PV) orientation and uncertainty [Срок оценки: Once a week from enrollment to the end of program at 8 weeks]
- Lateropulsion severity assessed by SCALA [Срок оценки: once a week from enrollment to the end of treatment at 8 weeks]
- Lateropulsion severity assessed by SCP [Срок оценки: once a week from enrollment to the end of treatment at 8 weeks]
- Visual Vertical Uncertainty [Срок оценки: Daily, from enrollment to the end of treatment at 8 weeks]
- specific post-effect of one exoskeleton session on visual vertical [Срок оценки: once a week during the 3 lateropulsion program weeks]
- Lower limb motricity assessed by "Fugl-Meyer Assessment of Motor Recovery after Stroke" [Срок оценки: once a week from enrollment to the end of treatment at 8 weeks]
- Balance assessed by the modified Postural Assessment Scale for Stroke (mPASS) total score [Срок оценки: once a week from enrollment to the end of the study at week 8]
- Gait assessed by Modified Fugl-Meyer Gait Assessment total score [Срок оценки: once a week from enrollment to the end of the study (week 8)]
- Functionnal mobility [Срок оценки: once a week fron enrollment to the end of the study (week 8)]
- Upper limb motricity assessed by "Fugl-Meyer Assessment of Motor Recovery after Stroke" [Срок оценки: once a week from enrollment to the end of the treatment (week 8)]
- Positions (on both anterior and lateral axes) of the center of pression in the exoskeleton while lateraly inclined [Срок оценки: During lateropulsion program, Day 1 and Day 5 of the first week, Day 5 of the second week and Day 5 of the third week.]
- Patient reported discomfort experienced during exoskeleton sessions [Срок оценки: Once, on day 5 of the third week of the specific and intensive lateropulsion rehabilitation program including exercices in the exoskeleton]
Критерии участия
Критерии включения
- Right hemispheric first and unique ischemic stroke between 2 weeks and 6 months old (subacute phase) ;
- Presence of lateropulsion, assessed by the Scale for Contraversive Pushing (2 ≤ SCP < 5)
- Presence of contralesional VV bias (VV > 4°)
- Right handedness defined by a Edinburgh score ≥0,39
- Being hospitalized in a Physical Medicine and Neurological Rehabilitation (PMR) facility.
- Have given a written and informed consent
Критерии исключения
- Medical instability making evaluation impossible,
- Comprehension or cognitive or behavioral disorders, or depressive symptoms that compromise participation in the program
- Postural disorders or body geometry disorders that interfere with balance for a reason that is independant of the stroke
- Morphological contraindications to the use of the Atalante® robot (segment length or joint ranges; height <155cm; weight >100kg),
- Severe spasticity (>3 on the modified Ashworth scale) in the adductors, quadriceps, hamstrings and triceps surae
- Presence of a pressure sore at the areas of contact with the Atalante® robot,
- History of osteoporotic fractures.
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Распределение
- Нерандомизированное
- Модель
- Одна группа
- Маскирование
- Открытое
- Основная цель
- Лечение
Центры проведения
Франция · 2 центра
- Grenoble University Hospital — Échirolles
- Grenoble University Hospital — Grenoble
Публикации
- Yun N, Joo MC, Kim SC, Kim MS. Robot-assisted gait training effectively improved lateropulsion in subacute stroke patients: a single-blinded randomized controlled trial. Eur J Phys Rehabil Med. 2018 Dec;54(6):827-836. doi: 10.23736/S1973-9087.18.05077-3. Epub 2018 Dec 3. PMID 30507899
- Winstein CJ, Stein J, Arena R, Bates B, Cherney LR, Cramer SC, Deruyter F, Eng JJ, Fisher B, Harvey RL, Lang CE, MacKay-Lyons M, Ottenbacher KJ, Pugh S, Reeves MJ, Richards LG, Stiers W, Zorowitz RD; American Heart Association Stroke Council, Council on Cardiovascular and Stroke Nursing, Council on Clinical Cardiology, and Council on Quality of Care and Outcomes Research. Guidelines for Adult Stro PMID 27145936
- Piscicelli C, Perennou D. Visual verticality perception after stroke: A systematic review of methodological approaches and suggestions for standardization. Ann Phys Rehabil Med. 2017 Jun;60(3):208-216. doi: 10.1016/j.rehab.2016.02.004. Epub 2016 Apr 11. PMID 27079584
- Perennou DA, Mazibrada G, Chauvineau V, Greenwood R, Rothwell J, Gresty MA, Bronstein AM. Lateropulsion, pushing and verticality perception in hemisphere stroke: a causal relationship? Brain. 2008 Sep;131(Pt 9):2401-13. doi: 10.1093/brain/awn170. Epub 2008 Aug 4. PMID 18678565
- Perennou DA, Amblard B, Leblond C, Pelissier J. Biased postural vertical in humans with hemispheric cerebral lesions. Neurosci Lett. 1998 Aug 14;252(2):75-8. doi: 10.1016/s0304-3940(98)00501-1. PMID 9756325
- Paci M, Macchioni G, Ferrarello F. Treatment approaches for pusher behaviour: a scoping review. Top Stroke Rehabil. 2023 Mar;30(2):119-136. doi: 10.1080/10749357.2021.2016098. Epub 2022 Feb 14. PMID 35156566
- Odin A, Faletto-Passy D, Assaban F, Perennou D. Modulating the internal model of verticality by virtual reality and body-weight support walking: A pilot study. Ann Phys Rehabil Med. 2018 Sep;61(5):292-299. doi: 10.1016/j.rehab.2018.07.003. Epub 2018 Jul 19. PMID 30031891
- Nolan J, Jacques A, Godecke E, Abe H, Babyar S, Bergmann J, Birnbaum M, Dai S, Danells C, Edwards TG, Gandolfi M, Jahn K, Koter R, Mansfield A, Nakamura J, Pardo V, Perennou D, Piscicelli C, Punt D, Romick-Sheldon D, Saeys W, Smania N, Vaes N, Whitt AL, Singer B. Clinical practice recommendations for management of lateropulsion after stroke determined by a Delphi expert panel. Clin Rehabil. 2023 N PMID 37122265
Идентификаторы
NCT: NCT07023770 · 38RC24.0254 · 2024-A01586-41