Traitements4programmes
Essais2liés
Publications0liées
SourceDBlocale

Traitements

4
MoléculeIndication / populationPhaseObjectifPaysRésultat
Cognitve rehabilitation with virtual reality and robotic armThe OPERA Clinical Study is an interventional, single-arm, open-label pilot clinical study that aims to evaluate the usability of an innovative bio-cooperative robotic platform (PRoBio) for cognitive rehabilitation in patients with Parkinson's Disease (PD) and Mild Cognitive Impairment (MCI). The study focuses on assessing the effectiveness and acceptability of the system in a pilot study involving patients undergoing a structured cognitive rehabilitation program. PRoBio is an advanced rehabilitation platform that integrates the TIAGo robotic system, developed by PAL Robotics, with the VRRS COMPACT virtual reality rehabilitation system, designed by Khymeia. TIAGo is provided by a robotic arm and RGB-D camera that allow the collection of biomechanical and psychophysiological data, which are then used to personalize the treatment through the cognitive tasks provided by the VRRS COMPACT. The pilot study involves patients with PD-MCI, who will undergo a four-week rehabilitation program with ProBio, consisting of three weekly sessions of virtual cognitive training. The primary objective is to assess the usability and compliance of the system by evaluating user experience, ease of interaction, and engagement levels among both patients and rehabilitation professionals, as well as evaluating its ability to monitor biomechanical and psychophysiological parameters during treatment. This assessment will be conducted using a multimodal sensor system, which includes an RGB-D camera integrated into the UCBM TIAGo robot and wearable sensors designed to measure heart rate, respiratory rate, and galvanic skin response. The data collected through these sensors will be analyzed offline to personalize cognitive rehabilitation treatments in subsequent sessions. Additionally, the study aims to evaluate the accuracy and response times of patients while performing cognitive exercises, as recorded by the VRRS system. Furthermore, the study will explore the potential effects of PRoBio treatment on the cognitive functions of patients with Parkinson's Disease and Mild Cognitive Impairment (PD-MCI) as a possible future rehabilitation to include in the clinical practice. Parkinson Non applicable À vérifier Italy À vérifier
FAST — Effect of High Intensity Training on Motor and Cognitive FunctionsFatigability is one of the most prevalent disorder in MS followed by walking, balance and cognitive disorders. However, there are few experimental studies on the effects of fatigability on balance and gait hampering the knowledge of causal fatigue-related changes of walking, balance and cognition. Nowadays, instrumented systems such as wearable devices and optoelectronic systems are available and can be used to provide quantitative and objective indexes useful to monitor the changes of gait parameters during a fatiguing performance. (Moreover), instrumented assessment of patients' performances in dual task paradigms can reveal the possible impact of fatigability on cognitive functions. So far, high intensity functional training has been already used in MS to reduce fatigability. However, the true impact of reduced fatigability on walking, balance and cognition has not been assessed after a fatiguing task making impossible to understand the real impact of treatments focusing on fatigability on these functions. Thus, the aims of the present proposal are to assess the: 1) the acute effect of experimentally induced motor fatigability on walking, balance and cognitive functions using an objective instrumented assessment before, during, and after an overground fatiguing walking test. 2) to investigate the effect of high intensity multimodal functional training to improve motor and cognitive disorders. SEP Non applicable Traitement symptomatique Italy À vérifier
FAST — Effect of High Intensity Training on Motor and Cognitive FunctionsFatigability is one of the most prevalent disorder in MS followed by walking, balance and cognitive disorders. However, there are few experimental studies on the effects of fatigability on balance and gait hampering the knowledge of causal fatigue-related changes of walking, balance and cognition. Nowadays, instrumented systems such as wearable devices and optoelectronic systems are available and can be used to provide quantitative and objective indexes useful to monitor the changes of gait parameters during a fatiguing performance. (Moreover), instrumented assessment of patients' performances in dual task paradigms can reveal the possible impact of fatigability on cognitive functions. So far, high intensity functional training has been already used in MS to reduce fatigability. However, the true impact of reduced fatigability on walking, balance and cognition has not been assessed after a fatiguing task making impossible to understand the real impact of treatments focusing on fatigability on these functions. Thus, the aims of the present proposal are to assess the: 1) the acute effect of experimentally induced motor fatigability on walking, balance and cognitive functions using an objective instrumented assessment before, during, and after an overground fatiguing walking test. 2) to investigate the effect of high intensity multimodal functional training to improve motor and cognitive disorders. SEP Non applicable Traitement symptomatique Italy À vérifier
Cognitve rehabilitation with virtual reality and robotic armThe OPERA Clinical Study is an interventional, single-arm, open-label pilot clinical study that aims to evaluate the usability of an innovative bio-cooperative robotic platform (PRoBio) for cognitive rehabilitation in patients with Parkinson's Disease (PD) and Mild Cognitive Impairment (MCI). The study focuses on assessing the effectiveness and acceptability of the system in a pilot study involving patients undergoing a structured cognitive rehabilitation program. PRoBio is an advanced rehabilitation platform that integrates the TIAGo robotic system, developed by PAL Robotics, with the VRRS COMPACT virtual reality rehabilitation system, designed by Khymeia. TIAGo is provided by a robotic arm and RGB-D camera that allow the collection of biomechanical and psychophysiological data, which are then used to personalize the treatment through the cognitive tasks provided by the VRRS COMPACT. The pilot study involves patients with PD-MCI, who will undergo a four-week rehabilitation program with ProBio, consisting of three weekly sessions of virtual cognitive training. The primary objective is to assess the usability and compliance of the system by evaluating user experience, ease of interaction, and engagement levels among both patients and rehabilitation professionals, as well as evaluating its ability to monitor biomechanical and psychophysiological parameters during treatment. This assessment will be conducted using a multimodal sensor system, which includes an RGB-D camera integrated into the UCBM TIAGo robot and wearable sensors designed to measure heart rate, respiratory rate, and galvanic skin response. The data collected through these sensors will be analyzed offline to personalize cognitive rehabilitation treatments in subsequent sessions. Additionally, the study aims to evaluate the accuracy and response times of patients while performing cognitive exercises, as recorded by the VRRS system. Furthermore, the study will explore the potential effects of PRoBio treatment on the cognitive functions of patients with Parkinson's Disease and Mild Cognitive Impairment (PD-MCI) as a possible future rehabilitation to include in the clinical practice. Parkinson Non applicable À vérifier Italy À vérifier

Essais cliniques

2
MoléculeIndication / populationPhaseNCTTitreStatut
Cognitve rehabilitation with virtual reality and robotic arm Parkinson Non applicable NCT06920511 OPERA — Cognitive Rehabilitation With Virtual Reality in Parkinson Disease COMPLETED
FAST — Effect of High Intensity Training on Motor and Cognitive Functions SEP Non applicable NCT06219304 FAST — Effect of High Intensity Training on Motor and Cognitive Functions COMPLETED

Publications

0
MoléculeIndication / populationTitreJournalDate
Aucune publication.