Objective To describe physical function outcomes and modes of physical therapy intervention for a cohort of patients with dysvascular lower extremity amputation (LEA) during the prosthetic training phase of rehabilitation. Design A retrospective cohort study. Setting Physical rehabilitation clinics at a Veterans Affairs Medical Center and a University Hospital. Patients Forty-two patients (38 men, 4 women, age 60.2±8.4 years) who completed outpatient physical therapy rehabilitation with prosthetic training after dysvascular LEA. Methods All patients underwent a prosthetic training phase of rehabilitation, with standardized outcome measures performed at initiation and discharge. Main Outcome Measures Performance-based physical function measures included: Two-Minute Walk (2MW), Timed-Up and Go (TUG), and 5-meter gait speed. Self-report physical function measures included: the Prosthesis Evaluation Questionnaire – Mobility Section (PEQ-MS) and the Patient-Specific Functional Scale (PSFS). Rehabilitation dose was tracked as total number of clinic visits, rehabilitation duration, and specific intervention modes. Results There were significant improvements in 2MW (mean±SD) [67.5±29.9 m (initial) and 103.3±45.8 m (discharge) (p<0.001)], gait speed [0.58±0.27 m/s (initial) and 0.88±0.39 m/s (discharge) (p<0.001)], TUG [34.8±21.3 s (initial) and 18.6±13.9 s (discharge) (p<0.001)], PEQ-MS [2.2±0.9 (initial) and 2.8±0.8 (discharge) (p<0.001)], and PSFS [3.2±2.0 (initial) and 5.9±2.3 (discharge) (p<0.001)]. Performance-based (TUG) and self-report (PEQ-MS) changes in functional mobility from initial exam to discharge had low or no correlations with rehabilitation dose measures. Number of clinic visits was 12.7±13.1 and rehabilitation duration was 13.7±16.8 weeks. Conclusions Significant improvements in performance-based and self-report measures of physical function occurred during the prosthetic training phase of physical rehabilitation following dysvascular major LEA. Despite improvements in function, gait speed and TUG outcomes remained below clinically important thresholds, indicating patients were limited in community ambulation and at risk for falls. Lack of moderate or higher correlation between rehabilitation dose and outcome measures may indicate need for more specific rehabilitation dose measures.
Background: Lower-limb amputation (LLA) due to non-traumatic vascular etiology is linked to extremely low physical activity and high disability. Objective: To test the feasibility of a biobehavioral intervention designed to promote physical activity. Design: A randomized, single-blind feasibility trial with a crossover design. Setting: Veterans Administration Medical Center. Participants: Military veterans (age: 65.7 [7.8] years; mean [standard deviation]) with nontraumatic lower-limb amputation (LLA), randomized to two groups: GROUP1 (n = 16) and GROUP2 (n = 15). Both groups had similar baseline amputation characteristics (level of amputation and time since amputation). Interventions: Twelve weekly, 30-minute telehealth sessions of physical activity behavior-change intervention, with GROUP1 participating in weeks 1-12 and GROUP2 in weeks 13-24. GROUP1 noncontact phase in weeks 13-24 and GROUP2 attention control telehealth phase in weeks 1-12. Main Outcome Measures: Feasibility (participant retention, dose goal attainment, intervention acceptability [Intrinsic Motivation Inventory [IMI] Interest and Enjoyment scale], safety) and signal of efficacy (free-living physical activity [accelerometer-based average daily step count], Late Life Function and Disability Index-Disability Scale [LLFDI-DS]). Results: Participant retention rate was high (90%), with three participants lost to follow-up during the intervention period. Dose goal attainment was low, with only 10% of participants achieving an a priori walking dose goal. Intervention was rated as acceptable, with mean IMI Interest and Enjoyment score (5.8) statistically higher than the null value of 5.0 (P = .002). There were no between-group differences in adverse event rates (falls: P = .19, lower extremity wounds: P = .60). There was no signal of efficacy for change in average daily step count (d = −0.15) or LLFDI-DS (d = −0.22 and 0.17 for frequency and limitations scales, respectively). Conclusions: Telehealth delivered biobehavioral intervention resulted in acceptable participant retention, low dose goal attainment, high participant acceptability, and low safety risk, while having no signal of efficacy (physical activity, disability) for people with nontraumatic LLA.
Introduction Over half of all people with lower limb amputation (LLA) experience at least one fall annually. Furthermore, the majority of LLAs result from dysvascular health complications, contributing to balance deficits. However, fall‐related research specific to dysvascular LLA remains limited. Objective To characterize falls among adults with dysvascular LLA, using an existing Fall‐Type Classification Framework and to describe the functional characteristics of participants across the framework categories. Design Secondary data analysis from two randomized controlled trials. Setting Outpatient setting. Participants People (n = 69) 6 months to 5 years from dysvascular lower extremity amputation, who were ≥50 years of age and independently ambulatory using a prosthesis. Intervention None. Outcome Descriptions of self‐reported falls were collected on a weekly basis for 12 weeks, and analyzed using an existing Fall‐Type Classification Framework. Fall frequencies, estimated count, and estimated proportions were compared across all framework categories, with 95% confidence intervals. Functional measures (Timed Up and Go, Two Minute Walk, Five Meter Walk, and average step count) were collected, and averages for each participant who experienced a fall were calculated. Results Thirty participants (43.5%) reported 42 falls within 12 weeks. A variety of fall types were described. Incidence of falls was highest for intrinsic destabilization sources, from incorrect weight shift patterns during transfer activities. Conclusion Patients with dysvascular LLAs experience a variety of fall types. The high frequency of intrinsically sourced, incorrect weight‐shift falls during transfer activities emphasizes the need to focus rehabilitation efforts on improving postural control in patients with dysvascular LLAs during activities such as reaching, turning, and transferring.
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