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Pilot Study on the Feasibility of High-energy Collimation With Optimized Geometry on a VERITON™ CZT Camera (HELIOS)

6. mai 2026 oppdatert av: Pierre Yves MARIE, Central Hospital, Nancy, France

Functional imaging using scintigraphy plays a major role in the diagnosis and monitoring of many diseases, particularly thanks to its ability to perform whole-body examinations with high contrast. The indications and use of scintigraphy have increased in recent years, particularly in connection with the development of internal vectorized radiotherapy. This therapeutic approach is based on the administration of radiotracers that enable targeted irradiation of tumor cells, whose biodistribution throughout the body can be analyzed and quantified using scintigraphy, particularly with iodine-131 and lutetium-177.

The recent boom in scintigraphy is also linked to the development of new 360° geometry CZT-SPECT cameras, which enable rapid tomographic acquisitions of the entire body with significantly improved image quality compared to conventional cameras. These systems use mobile CZT semiconductor detectors that dynamically scan the anatomical regions of interest.

CZT detectors are combined with a collimation system consisting of tungsten septa, which are essential for the directional filtering of gamma photons. Unlike conventional scintigraphic cameras, where collimators can be changed or adjusted according to the energy of the detected photons, CZT-SPECT 360° cameras generally rely on fixed collimation, which cannot be changed.

Studieoversikt

Detaljert beskrivelse

Functional imaging using scintigraphy plays a major role in the diagnosis and monitoring of many diseases, particularly thanks to its ability to perform whole-body examinations with high contrast. The indications and use of scintigraphy have increased in recent years, particularly in connection with the development of internal vectorized radiotherapy. This therapeutic approach is based on the administration of radiotracers that enable targeted irradiation of tumor cells, whose biodistribution throughout the body can be analyzed and quantified using scintigraphy, particularly with iodine-131 and lutetium-177.

The recent boom in scintigraphy is also linked to the development of new 360° geometry CZT-SPECT cameras, which enable rapid tomographic acquisitions of the entire body with significantly improved image quality compared to conventional cameras. These systems use mobile CZT semiconductor detectors that dynamically scan the anatomical regions of interest.

CZT detectors are combined with a collimation system consisting of tungsten septa, which are essential for the directional filtering of gamma photons. Unlike conventional scintigraphic cameras, where collimators can be changed or adjusted according to the energy of the detected photons, CZT-SPECT 360° cameras generally rely on fixed collimation, which cannot be changed.

Studietype

Intervensjonell

Registrering (Antatt)

18

Fase

  • Ikke aktuelt

Kontakter og plasseringer

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

Studiekontakt

  • Navn: Anne-Sophie Hue Project Manager, MSc
  • Telefonnummer: +33.3.83.15.34.75
  • E-post: a.hue@chru-nancy.fr

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

Nei

Beskrivelse

Inclusion Criteria:

  • patients with multiple known lesions (≥ 2 metastases or lesions of other types) who, as part of their clinical management, require either (i) a 99mTc-HDP bone scan, or (ii) a post-therapeutic 177Lu-PSMA scan, or (iii) a post-therapeutic 131I scintigraphy.
  • Person who has undergone a preliminary clinical examination appropriate for clinical research.
  • Adult subject who has received complete information about the research and has signed the informed consent form.
  • General condition, WHO ≤ 2, and ability to remain lying down without moving for nearly an hour.

Exclusion Criteria:

  • Subjects with a contraindication, according to the target examination group, to injection of 99mTc-HDP (Technescan HDP, Curium Pharma), 177Lu-PSMA (Pluvicto®, Novartis), or 131I (131I sodium iodide for therapy, Curium Pharma) .
  • Subjects covered by Articles L. 1121-5, L. 1121-7, and L1121-8 of the Public Health Code.
  • Pregnant women, women in labor, or breastfeeding mothers.
  • Subjects subject to legal protection measures (guardianship, curatorship, judicial protection).
  • Subjects unable to give their consent.
  • Subjects deprived of their liberty by a judicial or administrative decision, persons receiving psychiatric care pursuant to Articles L. 3212-1 and L.3213-1.

Studieplan

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

Hvordan er studiet utformet?

Designdetaljer

  • Primært formål: Diagnostisk
  • Tildeling: Randomisert
  • Intervensjonsmodell: Parallell tildeling
  • Masking: Ingen (Open Label)

Våpen og intervensjoner

Deltakergruppe / Arm
Intervensjon / Behandling
Eksperimentell: VERITON-CT New
Optimized collimators for the CZT detectors of the VERITON™ 400 wide-field camera (Spectrum Dynamics Medical) enabling better selection of incident photons
- Whole-body 3D recording on the VERITON™ 400 camera equipped with conventional collimators for technetium-99m and lutetium-177.
Aktiv komparator: Référence
  • Full-body 3D recording on the VERITON™ 400 camera equipped with conventional collimators for technetium-99m and lutetium-177.
  • 2D whole-body and 3D cervicothoracic recordings on an Anger camera (SYMBIA camera, Siemens Healthineers) for iodine-131 images.
Full-body 3D recording on the VERITON™ 400 camera
Whole-body 2D and cervicothoracic 3D recordings using an Anger camera (SYMBIA camera, Siemens Healthineers) for iodine-131 images.

Hva måler studien?

Primære resultatmål

Resultatmål
Tiltaksbeskrivelse
Tidsramme
Feasability of whole-body SPECT/CT imaging with iodine-131 using the optimized collimator
Tidsramme: 1 month
Data analysis obtained with optimized collimator and with conventional collimator
1 month
Perform quantitative analysis of technetium-99m and lutetium-177 with feasability results
Tidsramme: 1 month
Image sharpness improvment
1 month

Sekundære resultatmål

Resultatmål
Tiltaksbeskrivelse
Tidsramme
Overall quality of whole-body CZT acquisitions with iodine-131
Tidsramme: 1 month
For iodine-131, the overall quality of images acquired using the CZT-SPECT camera with the new collimator will be described based on an ordinal score for stellar artifacts (absent, present but not interfering, present and interfering), assessed independently by two experienced readers. The frequency and severity of artifacts will be reported, as well as their association with the interpretable or non-interpretable nature of the examinations defined in the primary endpoint. Inter-reader agreement will also be described.
1 month
Quantify the detectability and contrast of lesions visualized on whole-body CZT imaging with iodine-131.
Tidsramme: 1 month
Sharpness, defined as the maximum slope of the intensity profile at the edge of the lesions and the contrast-to-noise ratio
1 month

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 (Antatt)

1. mai 2026

Primær fullføring (Antatt)

1. september 2026

Studiet fullført (Antatt)

1. mai 2027

Datoer for studieregistrering

Først innsendt

24. februar 2026

Først innsendt som oppfylte QC-kriteriene

6. mai 2026

Først lagt ut (Faktiske)

7. mai 2026

Oppdateringer av studieposter

Sist oppdatering lagt ut (Faktiske)

7. mai 2026

Siste oppdatering sendt inn som oppfylte QC-kriteriene

6. mai 2026

Sist bekreftet

1. mai 2026

Mer informasjon

Begreper knyttet til denne studien

Ytterligere relevante MeSH-vilkår

Andre studie-ID-numre

  • 2026-A00456-45

Plan for individuelle deltakerdata (IPD)

Planlegger du å dele individuelle deltakerdata (IPD)?

NEI

Legemiddel- og utstyrsinformasjon, studiedokumenter

Studerer et amerikansk FDA-regulert medikamentprodukt

Nei

Studerer et amerikansk FDA-regulert enhetsprodukt

Nei

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