Diese Seite wurde automatisch übersetzt und die Genauigkeit der Übersetzung wird nicht garantiert. Bitte wende dich an die englische Version für einen Quelltext.

Application of Super-Resolution Ultrasound (SRUS) in Liver Tumor (SRUS)

12. Juli 2026 aktualisiert von: WenLi Zhang, Eastern Hepatobiliary Surgery Hospital

The macroscopic vascular supply of liver tumors varies considerably according to histological subtype, lesion size, and disease stage. Current clinical imaging modalities primarily characterize liver tumors based on their macroscopic vascular perfusion patterns. Conventional color Doppler ultrasonography enables qualitative assessment of tumor vascularity, facilitates the differentiation of benign from malignant hepatic lesions, delineates the anatomical relationship between tumors and major intrahepatic vessels, and detects vascular invasion. Nevertheless, these macroscopic vascular characteristics arise from complex microvascular architectures, including vascular distribution patterns, microvessel density, vessel morphology and tortuosity, blood flow velocity, and flow direction. Despite the critical role of tumor microcirculation in tumor progression and therapeutic response, the heterogeneity of microvascular hemodynamics among different liver tumors remains inadequately characterized.

The emergence of Super Resolution Ultrasound Imaging (SRUS) has markedly advanced ultrasound imaging by overcoming the acoustic diffraction limit, enabling visualization of microvessels with diameters as small as approximately 20 μm. Unlike conventional ultrasound techniques, SRUS preserves the inherent advantages of ultrasound, including deep tissue penetration and a large field of view, while achieving an approximately tenfold improvement in spatial resolution. This unique combination effectively bridges the long-standing gap between imaging depth and spatial resolution in vascular imaging. Furthermore, by localizing and tracking individual circulating microbubbles,SRUS enables quantitative assessment of microvascular blood flow velocity over a broad dynamic range without Doppler angle dependence. Consequently, super-resolution ultrasound imaging offers an unprecedented opportunity to characterize and compare the microvascular hemodynamic features of benign and malignant liver lesions, thereby improving the accuracy of preoperative differential diagnosis, tumor staging, therapeutic response assessment, and prognostic evaluation.

Studienübersicht

Detaillierte Beschreibung

The macroscopic vascular supply of liver tumors varies considerably according to histological subtype, lesion size, and disease stage. Current clinical imaging modalities primarily characterize liver tumors based on their macroscopic vascular perfusion patterns. Conventional color Doppler ultrasonography enables qualitative assessment of tumor vascularity, facilitates the differentiation of benign from malignant hepatic lesions, delineates the anatomical relationship between tumors and major intrahepatic vessels, and detects vascular invasion. Nevertheless, these macroscopic vascular characteristics arise from complex microvascular architectures, including vascular distribution patterns, microvessel density, vessel morphology and tortuosity, blood flow velocity, and flow direction. Despite the critical role of tumor microcirculation in tumor progression and therapeutic response, the heterogeneity of microvascular hemodynamics among different liver tumors remains inadequately characterized.

The emergence of Super Resolution Ultrasound Imaging (SRUS) has markedly advanced ultrasound imaging by overcoming the acoustic diffraction limit, enabling visualization of microvessels with diameters as small as approximately 20 μm. Unlike conventional ultrasound techniques, SRUS preserves the inherent advantages of ultrasound, including deep tissue penetration and a large field of view, while achieving an approximately tenfold improvement in spatial resolution. This unique combination effectively bridges the long-standing gap between imaging depth and spatial resolution in vascular imaging. Furthermore, by localizing and tracking individual circulating microbubbles,SRUS enables quantitative assessment of microvascular blood flow velocity over a broad dynamic range without Doppler angle dependence. Consequently, super-resolution ultrasound imaging offers an unprecedented opportunity to characterize and compare the microvascular hemodynamic features of benign and malignant liver lesions, thereby improving the accuracy of preoperative differential diagnosis, tumor staging, therapeutic response assessment, and prognostic evaluation.

Studientyp

Beobachtungs

Einschreibung (Geschätzt)

350

Kontakte und Standorte

Dieser Abschnitt enthält die Kontaktdaten derjenigen, die die Studie durchführen, und Informationen darüber, wo diese Studie durchgeführt wird.

Studienkontakt

Studieren Sie die Kontaktsicherung

Teilnahmekriterien

Forscher suchen nach Personen, die einer bestimmten Beschreibung entsprechen, die als Auswahlkriterien bezeichnet werden. Einige Beispiele für diese Kriterien sind der allgemeine Gesundheitszustand einer Person oder frühere Behandlungen.

Zulassungskriterien

Studienberechtigtes Alter

  • Erwachsene
  • Älterer Erwachsener

Akzeptiert gesunde Freiwillige

Ja

Probenahmeverfahren

Wahrscheinlichkeitsstichprobe

Studienpopulation

Liver tumor patients treated in the outpatient and inpatient departments of the Third Affiliated Hospital of the Naval Medical University.

Beschreibung

Inclusion Criteria:

  1. Any gender, 18 years or older;
  2. People newly diagnosed with liver tumors, including:

    ① Hepatocellular carcinoma; ② Cholangiocarcinoma; ③ Liver metastases; ④ Liver hemangioma; ⑤ Focal nodular hyperplasia of the liver.

  3. Need to have a contrast-enhanced ultrasound as part of routine care;
  4. Willing to join this study and sign the informed consent after discussing it with the doctor.

Exclusion Criteria:

  1. During the data collection process, if the participant is unable to cooperate fully, preventing the collection from being completed;
  2. If the skin in the collection area is broken or scabbed, or if there's too much ascites in the abdominal cavity interfering with sound signal penetration, making data collection impossible;
  3. Previous puncture biopsy or other treatments for existing liver malignant tumors;
  4. Patients with a history of allergy, allergic constitution, or severe intolerance to sulfur hexafluoride or other components of the ultrasound contrast agent;
  5. Patients who refuse to participate in this study;
  6. Any uncontrollable comorbidities that could limit the patient's adherence to the study requirements or affect their ability to sign the written informed consent;
  7. Poor overall condition or inability to tolerate relevant examinations;
  8. Participants whom the researcher deems unsuitable for inclusion in the study

Studienplan

Dieser Abschnitt enthält Einzelheiten zum Studienplan, einschließlich des Studiendesigns und der Messung der Studieninhalte.

Wie ist die Studie aufgebaut?

Designdetails

Kohorten und Interventionen

Gruppe / Kohorte
Intervention / Behandlung
Observation group
Patients newly diagnosed with benign or malignant liver tumors
Perform super-resolution ultrasound imaging on the study population, record and calculate characteristic hemodynamic and morphological parameters, and analyze microvascular flow patterns.

Was misst die Studie?

Primäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Vascular parameters in different types of benign and malignant liver tumors
Zeitfenster: At the time of initial diagnostic imaging (baseline), with pathological confirmation from subsequent surgical resection or biopsy obtained during the same hospitalization period.
Assessing the differences in vascular parameters between different types of benign and malignant liver tumors
At the time of initial diagnostic imaging (baseline), with pathological confirmation from subsequent surgical resection or biopsy obtained during the same hospitalization period.

Sekundäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Differences in treatment effectiveness between patient subgroups
Zeitfenster: From date of treatment initiation until the date of first documented pathological or imaging response assessment, assessed up to 12 months

Treatment effectiveness is assessed using two different methods depending on the treatment modality:

Pathological assessment (for patients who undergo surgical resection):

A. Pathological complete response (pCR): no viable tumor cells detected in the postoperative specimen; B. Major pathological response (MPR): ≥50% reduction in the proportion of viable tumor cells compared to the baseline pretreatment specimen;

Imaging assessment based on mRECIST criteria (for patients who do not undergo surgery):

A. Complete Response (CR): disappearance of any intratumoral arterial enhancement in all target lesions B. Partial Response (PR): ≥30% decrease in the sum of diameters of viable target lesion C. Progressive Disease (PD): ≥20% increase in the sum of diameters of viable target lesions, taking as reference the smallest sum of diameters recorded since treatment started D. Stable Disease (SD): insufficient decrease to qualify for PR, and insufficient increase to qualify for PD

From date of treatment initiation until the date of first documented pathological or imaging response assessment, assessed up to 12 months

Mitarbeiter und Ermittler

Hier finden Sie Personen und Organisationen, die an dieser Studie beteiligt sind.

Ermittler

  • Studienstuhl: Hui Liu, Professor, Eastern Hepatobiliary Surgery Hospital

Studienaufzeichnungsdaten

Diese Daten verfolgen den Fortschritt der Übermittlung von Studienaufzeichnungen und zusammenfassenden Ergebnissen an ClinicalTrials.gov. Studienaufzeichnungen und gemeldete Ergebnisse werden von der National Library of Medicine (NLM) überprüft, um sicherzustellen, dass sie bestimmten Qualitätskontrollstandards entsprechen, bevor sie auf der öffentlichen Website veröffentlicht werden.

Haupttermine studieren

Studienbeginn (Geschätzt)

1. Juli 2026

Primärer Abschluss (Geschätzt)

1. Juni 2027

Studienabschluss (Geschätzt)

1. September 2027

Studienanmeldedaten

Zuerst eingereicht

3. Juli 2026

Zuerst eingereicht, das die QC-Kriterien erfüllt hat

12. Juli 2026

Zuerst gepostet (Tatsächlich)

16. Juli 2026

Studienaufzeichnungsaktualisierungen

Letztes Update gepostet (Tatsächlich)

16. Juli 2026

Letztes eingereichtes Update, das die QC-Kriterien erfüllt

12. Juli 2026

Zuletzt verifiziert

1. Juli 2026

Mehr Informationen

Begriffe im Zusammenhang mit dieser Studie

Plan für individuelle Teilnehmerdaten (IPD)

Planen Sie, individuelle Teilnehmerdaten (IPD) zu teilen?

UNENTSCHIEDEN

Arzneimittel- und Geräteinformationen, Studienunterlagen

Studiert ein von der US-amerikanischen FDA reguliertes Arzneimittelprodukt

Nein

Studiert ein von der US-amerikanischen FDA reguliertes Geräteprodukt

Nein

Diese Informationen wurden ohne Änderungen direkt von der Website clinicaltrials.gov abgerufen. Wenn Sie Ihre Studiendaten ändern, entfernen oder aktualisieren möchten, wenden Sie sich bitte an register@clinicaltrials.gov. Sobald eine Änderung auf clinicaltrials.gov implementiert wird, wird diese automatisch auch auf unserer Website aktualisiert .

Abonnieren