Denne siden ble automatisk oversatt og nøyaktigheten av oversettelsen er ikke garantert. Vennligst referer til engelsk versjon for en kildetekst.

3D Foot Scanning and Customized 3D-Printed Foot Orthotics to Reduce Pressure on the Feet of Healthy Adults

19. august 2026 oppdatert av: Universitaire Ziekenhuizen KU Leuven

3D Surface Scanning for the Measurement of the Human Foot and Customized 3D Printed Foot Orthotics for Plantar Off-loading in Healthy Participants

The number of people with diabetes mellitus worldwide is increasing rapidly and is expected to rise to 439 million by 2030, or 7.7% of the total adult world population. The complications that can arise as a result of chronic diabetes represent a major problem in terms of clinical treatment, socio-economic consequences and costs to the health care system. One of the most serious complications is a diabetic foot, which is characterized by neuropathy, ischemia and limited joint mobility and makes the foot vulnerable to foot ulcers and possible amputation. Various interventions are being investigated to prevent foot ulcers, including custom-made foot orthotics (CFOs), also known as foot orthoses. The latter allows the health professional to achieve a number of functional effects, of which the redistribution of the plantar pressure load is the most valuable, especially in patients with so-called risk feet.

The use of integrated computer-aided design and computer-aided manufacturing systems to produce CFOs has become increasingly popular over the past decade. In practice, this digital workflow comprises three different phases. First the (3D) foot shape of the patient is recorded, then the arch support is designed using special software and finally the device is made using a subtractive or additive manufacturing process (3D printing). As a result, it can be concluded that the first two phases are decisive for determining the geometric characteristics of a CFO, while the last phase is more critical for selecting the material properties.

As for the first phase, digital approaches were developed, such as 3D optical scanning that allows the researcher to scan body parts directly, providing a robust base for determining a CFO's geometrical features. The anthropometric foot parameters examined were worth investigating, but exclusively zero-dimensional in nature, providing limited insight when assessing the 3D fit of a custom made foot orthotic. Thus, current knowledge in this area remains scarce and further efforts are needed to better understand the role of 'geometrical features' in dose-response characteristics of custom orthotics.

With regard to the production phase, additive manufacturing or 3D printing is gaining more and more attention and could potentially set a new standard for manufacturing CFOs. Limited research shows that 3D printed CFOs can be used to reduce plantar pressure in healthy and diabetic populations. However, it is important to mention that these studies have not fully exploited the possible complex design options that the additive manufacturing process can provide, as their designs are very similar to those used in less polyvalent subtractive manufacturing processes. In addition, the relief properties of previously described CFOs are not or rarely driven by patient-specific plantar pressure data.

Research design Prospective monocentric observational study with a healthy, asymptomatic population.

Objectives The main aim of this study is to evaluate the pressure distribution principle of custom orthotics in asymptomatic adults.

The study consists of two parts:

  • Reliability study
  • Observational study

Reliability study The methodological part of the current study consists of a reliability study with the focus on scanning the human foot. Since capturing the foot shape is the first step in the manufacturing process of custom insoles, it is important to use a reliable and objective scanning technique. This study aims to test the reliability, more specifically the intra-, inter-rater and test-retest reliability, of a portable, optical 3D scanner. In addition to the traditional zero-dimensional anthropometric measurements of the foot, mainly one-dimensional outcome measures will be studied.

Observational study In the observational part, the pressure distribution mechanism of several 3D-printed CFOs on the plantar pressure in asymptomatic patients with a so-called M2-M3 (metatarsal head of the second and third toe) pressure pattern at the level of the forefoot. There is a limited amount of literature on the effect of custom 3D-printed foot orthotics on plantar pressure distribution in healthy populations. In addition, the currently available literature appears to contain heterogeneous groups of participants with different plantar pressure distribution patterns, which complicates correct interpretation and generalization of the results, as the same orthosis designs are used for different pressure distribution patterns. During this study, several custom 3D-printed insoles, differentiated in padding density, structural architecture and geometric shape, will be applied to participants with M2-M3 forefoot patterns and then documented with a pressure distribution alg. Finally, a durability study will be conducted with the custom sole that provides the best relief from the peak pressure area of the forefoot.

Studieoversikt

Status

Fullført

Forhold

Intervensjon / Behandling

Studietype

Intervensjonell

Registrering (Faktiske)

33

Fase

  • Ikke aktuelt

Kontakter og plasseringer

Denne delen inneholder kontaktinformasjon for de som utfører studien, og informasjon om hvor denne studien blir utført.

Studiesteder

    • West-Flanders
      • Bruges, West-Flanders, Belgia, 8200
        • KU Leuven Campus Bruges

Deltakelseskriterier

Forskere ser etter personer som passer til en bestemt beskrivelse, kalt kvalifikasjonskriterier. Noen eksempler på disse kriteriene er en persons generelle helsetilstand eller tidligere behandlinger.

Kvalifikasjonskriterier

Alder som er kvalifisert for studier

  • Voksen
  • Eldre voksen

Tar imot friske frivillige

Ja

Beskrivelse

Reliability study:

The inclusion criteria:

• Healthy population, age 18-65-year-old

The exclusion criteria:

  • No injury of trauma of the lower limb in the past 6 months
  • No surgical procedures of the lower limbs or back in the past 6 months
  • Not pregnant at the time of testing
  • No (auto) immune system disorders with a possible impact on the feet (e.g., rheumatoid arthritis)
  • No systemic or neurological disorder

Interventional study

The inclusion criteria:

  • Healthy population, age 18-65-year-old
  • Maximum weight of 90 kg
  • In-shoe M2 - M3 or central pattern bilateral or left/right

The exclusion criteria:

  • No injury of trauma of the lower limb in the past 6 months
  • No surgical procedures of the lower limbs or back in the past 6 months
  • Not pregnant at the time of testing
  • No (auto) immune system disorders with a possible impact on the feet (e.g., rheumatoid arthritis)
  • No systemic or neurological disorder
  • Work does not require wearing safety shoes

Studieplan

Denne delen gir detaljer om studieplanen, inkludert hvordan studien er utformet og hva studien måler.

Hvordan er studiet utformet?

Designdetaljer

  • Primært formål: Behandling
  • Tildeling: N/A
  • Intervensjonsmodell: Enkeltgruppeoppdrag
  • Masking: Ingen (Open Label)

Våpen og intervensjoner

Deltakergruppe / Arm
Intervensjon / Behandling
Eksperimentell: Within-Participant Orthotic Comparison
The study still has one experimental arm; the different orthoses are intervention conditions within that arm. It is a single-group, within-participant repeated-measures design.
Foot orthotics

Hva måler studien?

Primære resultatmål

Resultatmål
Tiltaksbeskrivelse
Tidsramme
Effect of custom-made foot orthotics on plantar pressure in people with a M2-3 pressure pattern.
Tidsramme: From enrollment to the end of the of the test at 6 weeks.
The main aim of this study is to evaluate the pressure distribution principle of custom orthotics in asymptomatic adults with a M2-3 pressure pattern.
From enrollment to the end of the of the test at 6 weeks.
Reliability of 3D scanning
Tidsramme: From enrollment to final scanning after 3 days.
To evaluate the inter-, intra-rater and test-retest reliability of 3D surface scanning for measuring and recording human foot shape in a non-weight bearing condition.
From enrollment to final scanning after 3 days.

Samarbeidspartnere og etterforskere

Det er her du vil finne personer og organisasjoner som er involvert i denne studien.

Studierekorddatoer

Disse datoene sporer fremdriften for innsending av studieposter og sammendragsresultater til ClinicalTrials.gov. Studieposter og rapporterte resultater gjennomgås av National Library of Medicine (NLM) for å sikre at de oppfyller spesifikke kvalitetskontrollstandarder før de legges ut på det offentlige nettstedet.

Studer hoveddatoer

Studiestart (Faktiske)

23. oktober 2023

Primær fullføring (Faktiske)

4. juni 2026

Studiet fullført (Faktiske)

19. august 2026

Datoer for studieregistrering

Først innsendt

19. august 2026

Først innsendt som oppfylte QC-kriteriene

19. august 2026

Først lagt ut (Faktiske)

24. august 2026

Oppdateringer av studieposter

Sist oppdatering lagt ut (Faktiske)

24. august 2026

Siste oppdatering sendt inn som oppfylte QC-kriteriene

19. august 2026

Sist bekreftet

1. august 2026

Mer informasjon

Begreper knyttet til denne studien

Andre studie-ID-numre

  • S67786

Plan for individuelle deltakerdata (IPD)

Planlegger du å dele individuelle deltakerdata (IPD)?

UBESLUTTE

Legemiddel- og utstyrsinformasjon, studiedokumenter

Studerer et amerikansk FDA-regulert medikamentprodukt

Nei

Studerer et amerikansk FDA-regulert enhetsprodukt

Nei

Denne informasjonen ble hentet direkte fra nettstedet clinicaltrials.gov uten noen endringer. Hvis du har noen forespørsler om å endre, fjerne eller oppdatere studiedetaljene dine, vennligst kontakt register@clinicaltrials.gov. Så snart en endring er implementert på clinicaltrials.gov, vil denne også bli oppdatert automatisk på nettstedet vårt. .

Abonnere