Volume Fluctuations in Active and Nonactive Transtibial Prosthetics Users.

Biomed Res Int

Department of Mechanical Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur, Malaysia.

Published: September 2022

AI Article Synopsis

  • The study assesses the reliability of the Biosculptor's Bioscanner for measuring volume changes in transtibial amputees' residual limbs during walking activities.
  • Both active and nonactive amputees showed significant variations in circumferences after walking, particularly an initial increase at the limb's distal end, which then decreased over time.
  • Results indicate a strong correlation between the Bioscanner and traditional tape measure methods, suggesting the Bioscanner could be a valid alternative for monitoring limb volume changes.

Article Abstract

This study aims to evaluate the validity and reliability of the Biosculptor's Bioscanner system in capturing transtibial residual limb volume fluctuations in active and nonactive amputees during walking activity. Residual limb volume was obtained by measuring the limb circumference after amputees walked for 5 to 25 minutes for five consecutive days. The comparison of mean circumference between Bioscanner and manual measurements (i.e., tape measure) showed that the Bioscanner gave a higher estimation of circumference for the different amputees. Short-term changes in girth and volume due to an activity such as walking do not fluctuate uniformly. The results reflected as such as nonconsistence circumference change identified at different locations of the circumference profiles. Both amputees experienced a significant increase in circumference at the distal end of the limbs after 5 minutes of walking (7.35% change in nonactive and 8.83% in active amputees), and the measurement decreased as amputees walked longer. At 4-8 cm below the mid-patella tendon (pressure tolerant areas), both amputees experienced minor changes in the size of their circumference. The residual limb volume calculation resulted in the percentage difference between the two methods ranging from 2.4% to 9.3%. Pearson coefficient correlation obtained showed a high correlation between the two techniques, ranging from 0.97 to 1. The analysis of the limit of agreements showed that the majority of measurements were closed to the mean, suggesting that Bioscanner and manual techniques may be interchangeable and agree with one another. This study has implied that Bioscanner is comparable to the standard measurement method and may serve as an alternative tool in managing daily residual limb volume change.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9484881PMC
http://dx.doi.org/10.1155/2022/2669484DOI Listing

Publication Analysis

Top Keywords

residual limb
16
limb volume
16
volume fluctuations
8
fluctuations active
8
active nonactive
8
circumference amputees
8
amputees walked
8
bioscanner manual
8
amputees experienced
8
amputees
7

Similar Publications

What's the bug?: An unusual cause of bacterial meningitis in a patient with history of transsphenoidal surgery.

Am J Emerg Med

January 2025

Department of Emergency Medicine, University of Michigan, 1500 E. Medical Center Drive, Ann Arbor, MI 48109, United States of America. Electronic address:

Bacterial meningitis is an increasingly rare disease that carries significant morbidity and mortality. We describe the case of a 38-year-old male with a past medical history of pituitary macroadenoma with prior endonasal surgeries on prednisone therapy daily for resultant hypopituitarism and juvenile myoclonic epilepsy on lamotrigine daily who was transferred to an academic tertiary emergency department due to concern for developing pituitary apoplexy. At the outside emergency department, the patient presented complaining of sudden onset severe headache.

View Article and Find Full Text PDF

Ledged Beam Walking Test Automatic Tracker: Artificial intelligence-based functional evaluation in a stroke model.

Comput Biol Med

January 2025

Neurological Sciences and Cerebrovascular Research Laboratory, Department of Neurology and Stroke Centre, Neurology and Cerebrovascular Disease Group, Neuroscience Area La Paz Institute for Health Research (idiPAZ), (La Paz University Hospital- Universidad Autónoma de Madrid), Spain. Electronic address:

The quantitative evaluation of motor function in experimental stroke models is essential for the preclinical assessment of new therapeutic strategies that can be transferred to clinical research; however, conventional assessment tests are hampered by the evaluator's subjectivity. We present an artificial intelligence-based system for the automatic, accurate, and objective analysis of target parameters evaluated by the ledged beam walking test, which offers higher sensitivity than the current methodology based on manual and visual counting. This system employs a residual deep network model, trained with DeepLabCut (DLC) to extract target paretic hindlimb coordinates, which are categorized to provide a ratio measurement of the animal's neurological deficit.

View Article and Find Full Text PDF

: Tactile gnosis derives from the interplay between the hand's tactile input and the memory systems of the brain. It is the prerequisite for complex hand functions. Impaired sensation leads to profound disability.

View Article and Find Full Text PDF

: Up to 27% of anterior cruciate ligament (ACL) reconstruction cases result in a residual positive pivot shift sign, indicating anteroposterior and rotational instability. This instability can compromise returning to sports and increase the risk of further injuries. The biomechanical role of the anterolateral ligament (ALL) in controlling internal knee rotation is well known.

View Article and Find Full Text PDF

Curative and preemptive treatment of amputee pain by targeted muscle reinnervation: experience from a French military trauma center.

Eur J Trauma Emerg Surg

January 2025

Department of Orthopedic, Trauma and Reconstructive Surgery, Percy Military Hospital, 101 Avenue Henri Barbusse, Clamart, 92140, France.

Introduction: Targeted muscle reinnervation (TMR) is a technique that has proven effective for the treatment and prevention of chronic pain following amputation, though its adoption remains limited. The authors report on their initial experience using TMR.

Methods: A prospective study was conducted in a military trauma center involving traumatic amputees treated with either curative or preemptive TMR.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!