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Technological Rehabilitation of Distal Sensorimotor Polyneuropathy in Diabetic Patients

21 mars 2014 uppdaterad av: Giovanni Taveggia

Technological Rehabilitation of Distal Sensorimotor Polyneuropathy in Diabetic

The investigators evaluated the effectiveness of the application of analysing treadmill, muscle strengthening and balance training compared to a control intervention in patients with diabetic neuropathy.

Studieöversikt

Detaljerad beskrivning

Recent studies witnessed how physical exercise may interrupt the devastating decrease of muscle performance in DSP and further experiments are underway to find more exercises for the recovery of motor function impairment. In fact the rehabilitation treatment, that aims at reducing motor disability, preserving gait functions and preventing falling risks, is an interesting therapeutic approach. Literature recommends balance re-training exercises, muscle strengthening, selective stretching and retraining of motor activity.

New technologies produced in the recent decades different devices used in strengthening exercises (electromechanical dynamometers), balance recovery (balance platforms) and gait (analyzing treadmills) have visual feedbacks through which the patients may independently monitor accuracy and intensity of their exercises, being therefore strongly motivated and resulting in a high training intensity. These technologies are often used in rehabilitation of different patients, but are rarely employed for DSP.

The purpose of this case control study was to examine the effectiveness of the application of analysing treadmill, muscle strengthening and balance training compared to a control intervention in patients with diabetic neuropathy.

Studietyp

Interventionell

Inskrivning (Förväntat)

36

Fas

  • Inte tillämpbar

Kontakter och platser

Det här avsnittet innehåller kontaktuppgifter för dem som genomför studien och information om var denna studie genomförs.

Studieorter

    • Bergamo
      • Sarnico, Bergamo, Italien, 24067
        • Habilita, Ospedale di Sarnico

Deltagandekriterier

Forskare letar efter personer som passar en viss beskrivning, så kallade behörighetskriterier. Några exempel på dessa kriterier är en persons allmänna hälsotillstånd eller tidigare behandlingar.

Urvalskriterier

Åldrar som är berättigade till studier

18 år till 85 år (Vuxen, Äldre vuxen)

Tar emot friska volontärer

Nej

Kön som är behöriga för studier

Allt

Beskrivning

Inclusion Criteria:

  • The participants need to have a history of diabetes mellitus type 2, >3 years, (i.e., time from the diagnosis or the beginning of first related signs or symptoms),
  • A diagnosis of Distal Sensorimotor Polyneuropathy associated,
  • Able to walk autonomously, eventually with a aid.

Exclusion Criteria:

  • Scoring less than 5 points on the Functional Independence Measure (FIM) (7) locomotion scale,
  • Presenting articular ankyloses, contractures, spasms with important locomotion effects,
  • Presenting bony instability affecting lower limb functionality (unconsolidated fractures, vertebral instability, severe osteoporosis),
  • In presence of attendant clinicopathological conditions contraindicating the rehabilitation treatment (respiratory insufficiency, cardiac/circulatory failure, osteomyelitis, phlebitis and different other conditions),
  • In presence of cutaneous lesions at lower limbs,
  • Scoring less than 22 points on the Mini Mental State Examination (MMSE),
  • Exhibit important behavioural diseases involving aggressivity or psychotic disorders.
  • Had received prior interventions for Distal Sensorimotor Polyneuropathy.

Studieplan

Det här avsnittet ger detaljer om studieplanen, inklusive hur studien är utformad och vad studien mäter.

Hur är studien utformad?

Designdetaljer

  • Primärt syfte: Behandling
  • Tilldelning: Randomiserad
  • Interventionsmodell: Parallellt uppdrag
  • Maskning: Dubbel

Vapen och interventioner

Deltagargrupp / Arm
Intervention / Behandling
Experimentell: Technological Rehabilitation
Experimental group receives a treatment of: 20 minutes of analyzing treadmill with feedback focused on symmetry and length of stride; 20 minutes of isokinetic dynamometric muscle strengthening of flexor and extensor muscles of tibiotarsal joint; 20 minutes of balance retraining on dynamic balance platform. Each patient receives 20 sessions over a period of 4 weeks (5 sessions per week).

The length of stride of reference used during the exercise is personalized and depends on the height of patients. Each patient carries out the feedback for 20 minutes with the aim of generating the most symmetric and regular gait.

Patients, with the dynamometer, work on strengthening of flexor and extensor muscles with ankle speeds at 90°/sec and 120°/sec. The strengthening technique was performed twice for 10 minutes each time with a 1 minute rest between sets.

The session ends with a 20-minute feedback on dynamic balance platform by carrying out exercises in which they need to reach randomly appearing targets. Subjects begin with 12 minutes the first 4 sessions, progress to 16 minutes the next 2 sessions, then 18' (2 sessions), and finally 20', if able, during the last 4 sessions.

Andra namn:
  • Dynamometric isokinetic device: Biodex System 4,
  • Balance device: Biodex Balance System SD,
  • Analyzing treadmill: Biodex Gait Trainer 3.
Aktiv komparator: Control Rehabilitation
Control group receives the same number of treatment sessions of same duration as those in the experimental group: activities targeted to improve the endurance (instead of analyzing treadmill ), manual exercises of lower limb muscle strengthening, stretching exercises (instead of dynamometer), gait retraining on the floor for 20 minutes and static and dynamic balance exercises in upright position (instead of dynamic balance platform).
When needed, more than on e therapist are employed in the intervention for safety reasons.
Andra namn:
  • Manuell rehabilitering med terapeuten.

Vad mäter studien?

Primära resultatmått

Resultatmått
Åtgärdsbeskrivning
Tidsram
Change from Baseline of 6-minute walk test
Tidsram: 1 day after the treatment

All evaluation procedures are performed by the same examiner who was blinded to the aims of the study and to which group the participants are allocated. The 6-minute walk test (6MWT) is used to assess endurance.

The 6MWT quantifies functional mobility based on the distance in meters traveled in six minutes. This outcome is a measure of endurance and is particularly significant to evaluate the possibility to perform continuative tasks, that are particularly important for the rehabilitation of diabetic patients and are relevant for an autonomous life. Subjects are instructed to walk at a comfortable speed and subjects neurological are able to use assistive devices.

1 day after the treatment
Change from Baseline of 10-metres walk test
Tidsram: 1 day after the treatment

All evaluation procedures are performed by the same examiner who was blinded to the aims of the study and to which group the participants are allocated. The 10-metres walking test is used to assess gait speed.

The speed is quantified with the 10-metres walk test (TWT) over the ground. The gait speed measurement is performed over the middle 6 meters of the TWT and patients are asked to walk at their comfortable speed. Subjects are instructed to walk at a comfortable speed and subjects neurological are able to use assistive devices.

1 day after the treatment

Sekundära resultatmått

Resultatmått
Åtgärdsbeskrivning
Tidsram
Followup change from Baseline of 6-minute walk test
Tidsram: 30 days after the treatment

All evaluation procedures are performed by the same examiner who was blinded to the aims of the study and to which group the participants are allocated. The 6-minute walk test (6MWT) is used to assess endurance.

The 6MWT quantifies functional mobility based on the distance in meters traveled in six minutes. This outcome is a measure of endurance and is particularly significant to evaluate the possibility to perform continuative tasks, that are particularly important for the rehabilitation of diabetic patients and are relevant for an autonomous life. Subjects are instructed to walk at a comfortable speed and subjects neurological are able to use assistive devices.

30 days after the treatment
Followup change from Baseline of 10-metres walk test
Tidsram: 30 days after the treatment

All evaluation procedures are performed by the same examiner who was blinded to the aims of the study and to which group the participants are allocated. The 10-metres walking test is used to assess gait speed.

The speed is quantified with the 10-metres walk test (TWT) over the ground. The gait speed measurement is performed over the middle 6 meters of the TWT and patients are asked to walk at their comfortable speed. Subjects are instructed to walk at a comfortable speed and subjects neurological are able to use assistive devices.

30 days after the treatment
Change from Baseline of the Functional Independence Measure (FIM)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Tinetti scale
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Resting Energy Expenditure (REE)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Respiratory Rate (RR)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Heart Rate (HR)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the oxygen saturation (SpO2)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the maximal oxygen consumption (VO2 max)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the expired minute volume (Ve)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the fraction of expired air that is oxygen (FeO2)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Systolic Blood Pressure (SBP)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Diastolic Blood Pressure (DBP)
Tidsram: 1 day after the treatment
1 day after the treatment
Change from Baseline of the Glycated Hemoglobin (HbA1c)
Tidsram: 1 day after the treatment
1 day after the treatment
Followup change from Baseline of the Functional Independence Measure (FIM)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Tinetti scale
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Resting Energy Expenditure (REE)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Respiratory Rate (RR)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Heart Rate (HR)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the oxygen saturation (SpO2)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the maximal oxygen consumption (VO2 max)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the expired minute volume (Ve)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the fraction of expired air that is oxygen (FeO2)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Systolic Blood Pressure (SBP)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Diastolic Blood Pressure (DBP)
Tidsram: 30 days after the treatment
30 days after the treatment
Followup change from Baseline of the Glycated Hemoglobin (HbA1c)
Tidsram: 30 days after the treatment
30 days after the treatment

Samarbetspartners och utredare

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Utredare

  • Huvudutredare: Giovanni Taveggia, MD, Habilita, Ospedale di Sarnico

Publikationer och användbara länkar

Den som ansvarar för att lägga in information om studien tillhandahåller frivilligt dessa publikationer. Dessa kan handla om allt som har med studien att göra.

Allmänna publikationer

Studieavstämningsdatum

Dessa datum spårar framstegen för inlämningar av studieposter och sammanfattande resultat till ClinicalTrials.gov. Studieposter och rapporterade resultat granskas av National Library of Medicine (NLM) för att säkerställa att de uppfyller specifika kvalitetskontrollstandarder innan de publiceras på den offentliga webbplatsen.

Studera stora datum

Studiestart

1 september 2013

Primärt slutförande (Faktisk)

1 november 2013

Avslutad studie (Faktisk)

1 november 2013

Studieregistreringsdatum

Först inskickad

14 augusti 2013

Först inskickad som uppfyllde QC-kriterierna

17 augusti 2013

Första postat (Uppskatta)

21 augusti 2013

Uppdateringar av studier

Senaste uppdatering publicerad (Uppskatta)

24 mars 2014

Senaste inskickade uppdateringen som uppfyllde QC-kriterierna

21 mars 2014

Senast verifierad

1 mars 2014

Mer information

Termer relaterade till denna studie

Nyckelord

Andra studie-ID-nummer

  • Habilita-RAR-02
  • 201206180007491711110 (Annan identifierare: Bioethic board)

Denna information hämtades direkt från webbplatsen clinicaltrials.gov utan några ändringar. Om du har några önskemål om att ändra, ta bort eller uppdatera dina studieuppgifter, vänligen kontakta register@clinicaltrials.gov. Så snart en ändring har implementerats på clinicaltrials.gov, kommer denna att uppdateras automatiskt även på vår webbplats .

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