- ICH GCP
- USA klinikai vizsgálatok nyilvántartása
- Klinikai vizsgálat NCT07620379
Evaluation of Materials for the Distribution of Pressure in the Treatment of Neuroischemic Ulcers
The hypothesis of this study is based on the premise that pressure-distributing materials with superior biomechanical and tissue response properties will be capable of improving the healing rate of neuropathic ulcers.
The overarching objective of the present project is to assess the influence of the nature and method of application of the materials under study on tissue response, the reduction of pressure on the sole of the foot, and the healing of neuropathic ulcers in patients with diabetes mellitus.
A tanulmány áttekintése
Állapot
Körülmények
Beavatkozás / kezelés
Részletes leírás
The study is divided into two distinct phases:
The following analysis is concerned with the characteristics of materials that are employed for the purpose of the distribution of pressure. This will entail the meticulous analysis of the response exhibited by the materials, with the objective of ascertaining their true biomechanical behaviour in volunteers devoid of active ulcers.
The materials selected in the first part will be applied for the treatment of revascularised neuroischaemic ulcers. This will determine which of the materials is the most suitable for treating the lesion.
Tanulmány típusa
Beiratkozás (Becsült)
Fázis
- Nem alkalmazható
Kapcsolatok és helyek
Tanulmányi kapcsolat
- Név: IVAN JULIAN ROCHINA, PhD
- Telefonszám: +34 639687251
- E-mail: ivan.julian@uv.es
Tanulmányi helyek
-
-
Valencia
-
Valencia, Valencia, Spanyolország
- Toborzás
- Hospital Universitario y Politécnico La Fe
-
Kapcsolatba lépni:
- IVAN JULIAN ROCHINA
- Telefonszám: +34639687251
- E-mail: ivan.julian@uv.es
-
-
Részvételi kritériumok
Jogosultsági kritériumok
Tanulmányozható életkorok
- Felnőtt
- Idősebb felnőtt
Egészséges önkénteseket fogad
Leírás
Inclusion Criteria:
- Aged between 55 and 75.
- Diagnosis of diabetes mellitus.
- Patients with an ankle-brachial index of >0.8 and <1.2.
- Signature of the informed consent form
Exclusion Criteria:
- Leg or foot injuries or ulcers that cause pain and prevent normal movement in both lower limbs.
- Foot trauma within the last month.
- Inability to adhere to the full schedule of measurements required by the study.
- Participants who do not sign the informed consent form.
- Known contact dermatitis to any of the study materials
Tanulási terv
Hogyan készül a tanulmány?
Tervezési részletek
- Elsődleges cél: Megelőzés
- Kiosztás: N/A
- Beavatkozó modell: Egyetlen csoportos hozzárendelés
- Maszkolás: Nincs (Open Label)
Fegyverek és beavatkozások
Résztvevő csoport / kar |
Beavatkozás / kezelés |
|---|---|
|
Kísérleti: felt padding
The 5 mm and 10 mm felt pads are applied for 4 days.
|
The 5 mm felt pad is applied for 4 days and then removed.
After allowing the skin at least 48 hours to recover, the 10 mm felt pad is applied, also for 4 days.
|
Mit mér a tanulmány?
Elsődleges eredményintézkedések
Eredménymérő |
Intézkedés leírása |
Időkeret |
|---|---|---|
|
Near-infrared perfusion index (NIR perfusion)
Időkeret: Baseline and 4 days
|
Hyperspectral imaging was performed using the TIVITA® 2.0 camera (Diaspective Vision GmbH, Germany).
This non-contact, non-invasive device captures images across multiple wavelengths within the visible and near-infrared spectrum (500-1000 nm), enabling assessment of microcirculatory parameters up to a tissue depth of approximately 8 mm.
The device provides an image resolution of 640 × 480 pixels, with an acquisition time of 6.4 seconds.
Images were analyzed using TIVITA® Suite software by selecting a circular region of interest adjusted to the metatarsal head and offloading area under study.
|
Baseline and 4 days
|
Másodlagos eredményintézkedések
Eredménymérő |
Intézkedés leírása |
Időkeret |
|---|---|---|
|
Thermography
Időkeret: Baseline and 4 days
|
The images will be captured using the FLIR C8 thermal imaging camera.
The camera in question features a true thermal resolution of 320 × 240 pixels (76,800 measurement points) and MSX® technology, which combines visual and thermal details into a single image, thereby facilitating the detection of anatomical abnormalities.
Thermographic variables of interest included differences in absolute temperature values (maximum and mean temperature) within the region of interest corresponding to the offloading area.
|
Baseline and 4 days
|
|
Peak pressure (Pmax)
Időkeret: Baseline and 4 days
|
Peak pressure (Pmax) measured at the metatarsal head corresponding to the highest dynamic pressure. Plantar pressures were assessed using the EPS+R platform (Loran Engineering®, Bologna, Italy). The platform measures 50 × 70 × 4 mm, weighs 7 kg, and incorporates 2304 resistive sensors measuring 9 × 9 mm each. The pressure range is 50-350 kPa, with a maximum acquisition frequency of 100 Hz. Biomech® Studio 2019 software (LetSense Srl, Loran Engineering®) was used for data analysis. |
Baseline and 4 days
|
|
Tissue oxygen saturation (StO₂)
Időkeret: Baseline and 4 days
|
Hyperspectral imaging was performed using the TIVITA® 2.0 camera (Diaspective Vision GmbH, Germany).
This non-contact, non-invasive device captures images across multiple wavelengths within the visible and near-infrared spectrum (500-1000 nm), enabling assessment of microcirculatory parameters up to a tissue depth of approximately 8 mm.
The device provides an image resolution of 640 × 480 pixels, with an acquisition time of 6.4 seconds.
Images were analyzed using TIVITA® Suite software by selecting a circular region of interest adjusted to the metatarsal head and offloading area under study.
|
Baseline and 4 days
|
|
Tissue hemoglobin index (THI)
Időkeret: Baseline and 4 days
|
Hyperspectral imaging was performed using the TIVITA® 2.0 camera (Diaspective Vision GmbH, Germany).
This non-contact, non-invasive device captures images across multiple wavelengths within the visible and near-infrared spectrum (500-1000 nm), enabling assessment of microcirculatory parameters up to a tissue depth of approximately 8 mm.
The device provides an image resolution of 640 × 480 pixels, with an acquisition time of 6.4 seconds.
Images were analyzed using TIVITA® Suite software by selecting a circular region of interest adjusted to the metatarsal head and offloading area under study.
|
Baseline and 4 days
|
|
Tissue wáter index (TWI)
Időkeret: Baseline and 4 days
|
Hyperspectral imaging was performed using the TIVITA® 2.0 camera (Diaspective Vision GmbH, Germany).
This non-contact, non-invasive device captures images across multiple wavelengths within the visible and near-infrared spectrum (500-1000 nm), enabling assessment of microcirculatory parameters up to a tissue depth of approximately 8 mm.
The device provides an image resolution of 640 × 480 pixels, with an acquisition time of 6.4 seconds.
Images were analyzed using TIVITA® Suite software by selecting a circular region of interest adjusted to the metatarsal head and offloading area under study.
|
Baseline and 4 days
|
|
Tissue lipid index (TLI)
Időkeret: Baseline and 4 days
|
Hyperspectral imaging was performed using the TIVITA® 2.0 camera (Diaspective Vision GmbH, Germany).
This non-contact, non-invasive device captures images across multiple wavelengths within the visible and near-infrared spectrum (500-1000 nm), enabling assessment of microcirculatory parameters up to a tissue depth of approximately 8 mm.
The device provides an image resolution of 640 × 480 pixels, with an acquisition time of 6.4 seconds.
Images were analyzed using TIVITA® Suite software by selecting a circular region of interest adjusted to the metatarsal head and offloading area under study.
|
Baseline and 4 days
|
|
Mean pressure (Pmean)
Időkeret: Baseline and 4 days
|
Mean pressure (Pmean) measured at the metatarsal head corresponding to the highest dynamic pressure. Plantar pressures were assessed using the EPS+R platform (Loran Engineering®, Bologna, Italy). The platform measures 50 × 70 × 4 mm, weighs 7 kg, and incorporates 2304 resistive sensors measuring 9 × 9 mm each. The pressure range is 50-350 kPa, with a maximum acquisition frequency of 100 Hz. Biomech® Studio 2019 software (LetSense Srl, Loran Engineering®) was used for data analysis. |
Baseline and 4 days
|
Együttműködők és nyomozók
Szponzor
Együttműködők
Tanulmányi rekorddátumok
Tanulmány főbb dátumok
Tanulmány kezdete (Tényleges)
Elsődleges befejezés (Becsült)
A tanulmány befejezése (Becsült)
Tanulmányi regisztráció dátumai
Először benyújtva
Először nyújtották be, amely megfelel a minőségbiztosítási kritériumoknak
Első közzététel (Tényleges)
Tanulmányi rekordok frissítései
Utolsó frissítés közzétéve (Tényleges)
Az utolsó frissítés elküldve, amely megfelel a minőségbiztosítási kritériumoknak
Utolsó ellenőrzés
Több információ
A tanulmányhoz kapcsolódó kifejezések
Kulcsszavak
További vonatkozó MeSH feltételek
Egyéb vizsgálati azonosító számok
- 2020-672-1
Terv az egyéni résztvevői adatokhoz (IPD)
Tervezi megosztani az egyéni résztvevői adatokat (IPD)?
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