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Comparative Effects of Task-specific Drawing Exercises and Fine Motor Training on Dexterity and Hand Motor Function After Stroke

31 de agosto de 2026 atualizado por: Foundation University Islamabad

Stroke is a leading cause of long-term disability worldwide and frequently results in persistent upper limb impairment, particularly affecting hand dexterity and motor function. These impairments significantly restrict the performance of activities of daily living, reduce functional independence, and negatively affect quality of life.

Task-oriented rehabilitation has become an important component of stroke management because it promotes motor relearning through repetitive practice of meaningful functional activities. Among these approaches, task-specific drawing exercises and fine motor hand training have demonstrated potential to improve upper limb function; however, evidence directly comparing their effectiveness remains limited.

This randomized controlled trial will compare the effects of task-specific drawing exercises and fine motor hand training on hand dexterity and hand motor function in individuals with subacute stroke. Twenty-six participants will be randomly allocated to one of two intervention groups. Both groups will receive conventional wrist and finger range-of-motion exercises before participating in their assigned intervention. Participants in the task-specific drawing exercise group will perform a progressively graded drawing program, whereas participants in the fine motor hand training group will complete a structured program of functional object-manipulation activities. Both interventions will be administered on alternate days for 30-45 minutes over a four-week period.

The primary outcome will be hand dexterity, and the secondary outcome will be hand motor function. Outcome assessments will be performed at baseline and following completion of the intervention period using standardized assessment tools.

The findings of this study are expected to provide comparative evidence regarding the effectiveness of task-specific drawing exercises and fine motor hand training for improving hand function after stroke. The results may contribute to evidence-based neurological rehabilitation and assist physiotherapists in selecting effective intervention strategies to enhance upper limb recovery, functional independence, and quality of life in individuals with subacute stroke.

Visão geral do estudo

Descrição detalhada

Stroke is a major cause of long-term disability and frequently results in persistent impairment of upper limb function. Hand dysfunction is particularly important because recovery of precise hand and finger movements may remain incomplete even when gross upper limb movements improve. Impairments in dexterity, coordination, motor control, movement precision, and object manipulation can interfere with activities of daily living such as writing, eating, dressing, grooming, and handling everyday objects. Consequently, improving functional hand performance will remain an important component of neurological rehabilitation.

Contemporary stroke rehabilitation will emphasize repetitive, purposeful, and task-oriented practice to facilitate motor relearning and functional recovery. Task-specific interventions will involve repeated practice of meaningful movements using the affected upper limb. Task-specific drawing exercises will provide a structured form of task-oriented training that will require controlled finger movements, visuomotor coordination, movement accuracy, motor planning, and precision. The progressive nature of the drawing activities will allow the demands placed on hand control to increase throughout the intervention period.

Fine motor hand training will provide another structured rehabilitation approach based on repetitive manipulation of objects and performance of coordinated hand activities. Such activities will require controlled finger movements, grasp-and-release ability, precision, object manipulation, and coordination. The progression of activities from relatively simple to more demanding tasks will provide gradually increasing challenges to fine motor control and functional hand use.

This study will be conducted as a Randomized Controlled Trial (RCT) to compare the effectiveness of task-specific drawing exercises and fine motor hand training in individuals with subacute stroke. A total of 26 participants will be randomly allocated into two intervention groups. Group A will receive task-specific drawing exercises, while Group B will receive fine motor hand training. Before receiving their assigned intervention, both groups will receive the same baseline wrist and finger range-of-motion exercises, including wrist circles, wrist flexion and extension, finger abduction and adduction, and thumb opposition. These baseline exercises will be performed for 10 repetitions each.

Task-Specific Drawing Exercise Group Participants allocated to Group A will receive a progressively structured drawing intervention over four weeks. The intervention will be performed on alternate days, with each session lasting 30-45 minutes, and each prescribed activity will be performed for 15 repetitions.

During Week 1 (Module 1), participants will perform geometric shape drawing and shading activities. The illustrated tasks will include parallel vertical lines, horizontal lines, diagonal lines, curved and semicircular lines, concentric circular and oval patterns, spiral patterns, repeated curved patterns, and cone-like forms. Additional geometric patterns will include nested squares, nested rectangular forms, parallelogram-like patterns, and nested triangular forms. These activities will provide the initial level of drawing practice and will require participants to reproduce controlled lines, curves, repeated patterns, and geometric forms with the affected hand. The module will emphasize controlled movement, precision, and coordination while introducing repetitive drawing practice.

During Week 2 (Module 2), the drawing program will progress to combined and more recognizable forms. The illustrated activities will include a house, table, chair, bowl or cup-like form, and bicycle. These drawings will combine multiple lines and geometric components to create more complex forms. Compared with the first week's isolated geometric patterns, these activities will require greater integration of different movement directions and greater motor planning. Participants will therefore progress from relatively simple geometric patterns toward drawings requiring more coordinated and continuous hand movements.

During Week 3 (Module 3), participants will progress to irregular and natural-form drawing activities. The illustrated tasks will include different leaf forms, including a simple leaf with a central vein, a compound or multi-leaf form, and an irregular leaf with a more complex outline. These activities will introduce asymmetrical and less predictable outlines compared with the standardized geometric forms used during the earlier modules. Participants will be required to control curved and variable movements while reproducing the general structure and details of the illustrated forms.

During Week 4 (Module 4), participants will perform freehand drawing activities. The illustrated tasks will include a branching tree, a coniferous or pine-type tree, and human eyes. These activities will require greater independent control of hand movements and greater variation in line direction, curvature, proportion, and detail. The freehand module will represent the final stage of progression and will allow participants to integrate the movement control and coordination practiced during the preceding weeks into more complex representational drawings.

Overall, the drawing intervention will therefore progress from basic lines and geometric patterns, to combined forms, to irregular natural forms, and finally to freehand representational drawings. This progression will provide gradually increasing demands on fine motor control, visuomotor coordination, movement precision, and motor planning.

Fine Motor Hand Training Group Participants allocated to Group B will receive a progressively graded fine motor hand training program over four weeks. The intervention will also be performed on alternate days for 30-45 minutes, with 15 repetitions of each activity.

During Week 1, participants will perform activities including rolling paper pieces into wads, transferring large beads into a small jar, and picking up and rolling a pencil between the thumb and each finger. These activities will provide basic practice in finger coordination, grasp, release, and manipulation.

During Week 2, the program will progress to folding paper into half, picking and stacking medium cubes, flipping and placing cards, opening and closing a jar, twirling a pen between the fingers, and transferring medium-sized beads into a container. These activities will introduce greater demands on coordinated finger movement, object handling, and precision.

During Week 3, participants will perform more challenging activities, including tearing paper into large pieces, paper clip placement, picking and stacking small cubes, transferring small beads, and buttoning and unbuttoning. The reduction in object size and increased precision requirements will provide a greater challenge to fine motor coordination and controlled finger movements.

During Week 4, the intervention will progress to tearing paper into small pieces, picking up coins from a table, opening and closing a bottle cap, opening a lock using a key, and picking up a piece of paper using tweezers. These activities will require increasingly precise finger movements, grasp control, object manipulation, and coordinated use of the hand.

Both intervention programs will therefore follow a four-week progressive structure, with treatment activities becoming increasingly complex as the program advances. The primary focus of the study will be hand dexterity, while hand motor function will be considered the secondary outcome. Changes will be assessed from baseline to completion of the four-week intervention using the standardized outcome measures specified in the study protocol which is nine hole peg test for dexterity and Fugl-meyer assessment for hand motor function after stroke The comparison of these two interventions will provide evidence regarding their relative effectiveness in improving hand function following subacute stroke. The findings are expected to contribute to the evidence base for task-oriented neurological rehabilitation and may assist physiotherapists in selecting structured, progressively graded interventions for improving functional hand performance and promoting greater independence among individuals recovering from stroke.

Tipo de estudo

Intervencional

Inscrição (Estimado)

26

Estágio

  • Não aplicável

Contactos e Locais

Esta seção fornece os detalhes de contato para aqueles que conduzem o estudo e informações sobre onde este estudo está sendo realizado.

Contato de estudo

Locais de estudo

      • Islamabad, Paquistão
        • Recrutamento
        • Foundation University College of Physical Therapy
        • Contato:
          • Muhammad Ehab Azim, PHD
          • Número de telefone: 642 0515788171
          • E-mail: ehab@fui.edu.pk

Critérios de participação

Os pesquisadores procuram pessoas que se encaixem em uma determinada descrição, chamada de critérios de elegibilidade. Alguns exemplos desses critérios são a condição geral de saúde de uma pessoa ou tratamentos anteriores.

Critérios de elegibilidade

Idades elegíveis para estudo

  • Adulto
  • Adulto mais velho

Aceita Voluntários Saudáveis

Não

Descrição

Inclusion Criteria:

  • Adults aged 40-70 years.
  • Diagnosed with MCA ischemic or hemorrhagic stroke, confirmed by medical records.
  • Sub-acute stroke patients and to perform minimal voluntary finger or wrist movement in the affected hand (_>30 pronation supination and wrist flexion)
  • Ability to understand and follow simple verbal instructions.
  • Able to sit without upper limb support.

Exclusion Criteria:

  • Aphasia, cognitive deficits
  • Modified Ashworth Scale >3 in the wrist or fingers of the affected hand.
  • History of Parkinson's disease, multiple sclerosis, traumatic brain injury, or recurrent stroke.
  • Fracture, arthritis, tendon injury, or deformity affecting the upper limb or hand.
  • visuospatial neglect interfering with drawing tasks.

Plano de estudo

Esta seção fornece detalhes do plano de estudo, incluindo como o estudo é projetado e o que o estudo está medindo.

Como o estudo é projetado?

Detalhes do projeto

  • Finalidade Principal: Tratamento
  • Alocação: Randomizado
  • Modelo Intervencional: Atribuição Paralela
  • Mascaramento: Nenhum (rótulo aberto)

Armas e Intervenções

Grupo de Participantes / Braço
Intervenção / Tratamento
Experimental: Task-specific Drawing exercises group

Participants allocated to the task-specific drawing exercise group will receive a structured four-week progressive drawing intervention. Both groups will first perform standardized wrist and finger range-of-motion exercises, including wrist circles, wrist flexion and extension, finger abduction and adduction, and thumb opposition. The drawing intervention will be delivered on alternate days for 30-45 minutes, with 15 repetitions of each activity.

7 Week 1 will include geometric drawing and shading activities, including parallel vertical, horizontal, and diagonal lines, curved and semicircular lines, concentric circles and ovals, spirals, repeated curved patterns, cone-like forms, nested squares, rectangles, parallelogram-like forms, and triangles. Week 2 will progress to combined forms such as a house, table, chair, bowl or cup, and bicycle. Week 3 will include irregular natural forms, particularly leaf patterns. Week 4 will progress to freehand drawings, including trees and human eyes

Comparador Ativo: Fine motor training Group

Participants allocated to the fine motor training group will receive a structured four-week progressive program targeting coordinated finger movements, grasp, release, precision, and object manipulation. Both groups will first perform standardized wrist and finger range-of-motion exercises, including wrist circles, wrist flexion and extension, finger abduction and adduction, and thumb opposition.

Fine motor training will be delivered on alternate days for 30-45 minutes, with 15 repetitions of each activity. Week 1 will include rolling paper pieces into wads, transferring large beads into a small jar, and rolling a pencil between the thumb and fingers. Week 2 will include paper folding, stacking medium cubes, card manipulation, opening and closing a jar, pen twirling, and transferring medium beads. Week 3 will include tearing paper, paper-clip placement, stacking small cubes, transferring small beads, and buttoning. Week 4 will include tearing small paper pieces, coin picking, bottle-c

O que o estudo está medindo?

Medidas de resultados primários

Medida de resultado
Descrição da medida
Prazo
Dexterity
Prazo: 4 weeks
Hand dexterity will be assessed using the Nine-Hole Peg Test (NHPT), a standardized performance-based measure of dexterity. The outcome will be recorded as the time in seconds required to complete the task, with a lower completion time indicating better dexterity. For interpretation, the study protocol will classify completion times as <30 seconds: normal dexterity; 30-60 seconds: mild impairment; 60-120 seconds: moderate impairment; and >120 seconds or inability to complete the test: severe fine motor impairment
4 weeks

Medidas de resultados secundários

Medida de resultado
Descrição da medida
Prazo
Hand motor Function
Prazo: 4 weeks
Hand motor function will be assessed using the Fugl-Meyer Assessment-Hand (FMA-Hand), which evaluates motor control of the paretic hand. The hand section consists of 7 items with a maximum score of 14. It assesses motor control involving finger flexion and extension, thumb adduction, finger opposition, hook grip, cylindrical grip, and spherical grip. Each item is scored from 0 to 2, with higher scores indicating better motor control of the affected hand.
4 weeks

Colaboradores e Investigadores

É aqui que você encontrará pessoas e organizações envolvidas com este estudo.

Datas de registro do estudo

Essas datas acompanham o progresso do registro do estudo e os envios de resumo dos resultados para ClinicalTrials.gov. Os registros do estudo e os resultados relatados são revisados ​​pela National Library of Medicine (NLM) para garantir que atendam aos padrões específicos de controle de qualidade antes de serem publicados no site público.

Datas Principais do Estudo

Início do estudo (Real)

11 de fevereiro de 2026

Conclusão Primária (Estimado)

22 de janeiro de 2027

Conclusão do estudo (Estimado)

22 de fevereiro de 2027

Datas de inscrição no estudo

Enviado pela primeira vez

31 de agosto de 2026

Enviado pela primeira vez que atendeu aos critérios de CQ

31 de agosto de 2026

Primeira postagem (Real)

3 de setembro de 2026

Atualizações de registro de estudo

Última Atualização Postada (Real)

3 de setembro de 2026

Última atualização enviada que atendeu aos critérios de controle de qualidade

31 de agosto de 2026

Última verificação

1 de agosto de 2026

Mais Informações

Termos relacionados a este estudo

Informações sobre medicamentos e dispositivos, documentos de estudo

Estuda um medicamento regulamentado pela FDA dos EUA

Não

Estuda um produto de dispositivo regulamentado pela FDA dos EUA

Não

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