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Идёт набор NCT07411391

Supervised Endoscopic Tele-controlled Intelligent Lithotripsy

Без фазы С лечением Renal Stone

Ориентир для пациента и семьи

Простыми словами

Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.

Что изучают
В протоколе указаны: RIRS using the TaloStone T1000 RIRS platform.
Кому может быть актуально
Состояния в реестре: Renal Stone. Базовые параметры: от 19 лет · Все.
Что важно проверить
Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
Где проводится
Гонконг
Следующий шаг
Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
Официальное название

A Feasibility Trial of a Novel Robotic System for Retrograde Intrarenal Surgery

Обзор

This is a phase I feasibility study to investigate the use of a novel intelligent robotic retrograde intrarenal surgery (RIRS) platform. The TaloStone T1000 RIRS system can manipulate the flexible ureteroscope, with remote control of the instruments (laser fibre or basket) and ureteral access sheath movements. Beyond teleoperation, the TaloStone T1000 RIRS system integrates AI perception models and decision-making algorithms to enable the supervised autonomous execution of critical tasks within the RIRS workflow.

Подробное описание

I. Introduction

Retrograde intrarenal surgery (RIRS) has become a preferred method for the diagnosis and treatment of urological diseases, such as kidney stone removal. However, the complex urinary and limited visibility of existing endoscope lead to inefficient manipulation of flexible ureteroscopes. Besides, conventional flexible ureteroscopy requires repetitive manual manipulation, which often results in surgeon fatigue, mucosa injury from respiratory motion, and variable stone clearance rates, particularly in complex calyceal anatomies.

The research focuses on the development of an novel robotic system for RIRS, currently dubbed "TaloStone T1000". The robotic system platform consists of a surgeon control console, a multi-functional video cart, and patient-side robotic arm with fiber-optic-sensitized flexible ureteroscopy as shown in Fig. 1. The surgeon console with optimized design of ergonomics is equipped with haptic master devices for smooth and precise control of the robotic arm to manipulate the flexible ureteroscope as well as instruments, e.g., stone baskets and laser fibers. The system also supports seamless integration of multiple modalities, including pre-operative CT scans, intra-operative endoscopic videos, and fiber-optic sensing. Besides, the self-developed flexible ureteroscope is embedded with fiber optic sensors for real-time shape sensing, force estimation, and simultaneous intrarenal pressure control and temperature monitoring. Shape sensing enables precise navigation of the ureteroscope within the renal collecting system, and force estimation provides accurate feedback of tip contact interaction to the master devices on the surgeon control.

Moreover, AI algorithms are incorporated to assist in diagnostics and higher level of supervised surgical autonomy, thereby improving safety and efficiency. The investigators developed AI-powered diagnostics for stone sensing, laser fiber recognition, depth awareness, and CT-to-endoscopy localization. Based on the sensing results from AI-powered diagnostics, the investigators proposed a supervised framework that can automate repetitive procedures throughout in-sheath and ureter navigation, laser approaching, and laser trajectory planning. The entire operation is under supervision of the surgeon, who can use one trigger on the master device or footswitch to enable or disable the supervised automated features. The foot pedal of laser device remains to trigger laser emission by the surgeon for stone fragmentation, dusting, and pop-corning. The basic safety and essential performance of both hardware and software in the robotic system were developed under clinical standards and medical device regulations.

To date, a total of three cadaveric studies have been conducted using the robotic system. In August 2024, the investigators performed the first cadaver study of the robotic system at Prince of Wales Hospital (PWH), where user study of ergonomic manners and tele-operation control of stone treatment was investigated. The second and third cadaver studies, focusing on the AI-powered features of the robotic system, were completed at PWH in June and December 2025. Synthetic renal stones of around 3mm were retrogradely inserted to the renal collecting systems, with successful fragmentation via the robotic RIRS system using Holmium:YAG laser. Over 10 doctors from PWH and the Chinese University of Hong Kong, participated in the cadaver studies. The current system response, motion speed of the robotic system, and operations with ergonomic control console can satisfy the requirements of the doctors. In addition to the cadaver studies, the investigators have conducted a set of laboratory testing and experiments, validating its robustness and stability of the system.

Subsequent to successful cadaveric experiments, the investigators planned to further validate of the feasibility of the use of the system in clinical cases. In this study, the investigators aim to evaluate the robotic system's safety and feasibility in RIRS in a stage 1, proof of concept study that follows the concepts outlined in the IDEAL framework (Idea, Development, Exploration, Assessment, Long-term Study).

II. Methods

Aim

The aim of this study is to evaluate the feasibility and safety of performing RIRS using the TaloStone T1000 system.

Study Design

This is a prospective, single-arm study that will be conducted by investigators from The Chinese University of Hong Kong/Prince of Wales Hospital in the period from November 2025 to June 2026. The investigators are experts in endo-urological surgery and robot-assisted surgery. The study design follows the guidelines for stage 1 of the IDEAL framework. The study will be carried out in accordance with the Declaration of Helsinki of the World Medical Association and the International Conference on Harmonization - Good Clinical Practice.

The study information will be provided to subjects during a preoperative consultation by the investigators and the research staff. Subjects will be provided with approved informed consent explaining the study procedure, risks, assessments, and required compliance; and will be given ample time to make their decision regarding participation in the study.

Perioperative data and outcomes from all cases of those participating in the study will be reviewed by an independent Data and Safety Monitoring Committee (consisting two senior urologists not involved in this study) for safety and identification of serious perioperative complications (within 30 days after the surgery) as interim to safeguard study subjects. The Committee will make periodic recommendations to the study team on whether to continue, modify, or prematurely terminate the study. Any adverse events will also be immediately reported to the Clinical Research Ethics Committee of the hospital.

Reporting of this stage 1 study will follow the IDEAL Reporting Guidelines.

Вмешательства

  • Процедура RIRS using the TaloStone T1000 RIRS platform
    Retrograde intrarenal surgery (RIRS) will be performed using the TaloStone T1000 RIRS system. Beyond teleoperation, the TaloStone T1000 RIRS system integrates advanced AI perception models and decision-making algorithms to enable the autonomous execution of critical tasks within the RIRS workflow. The AI-based vision models coupled with sensors in the fURS allow real-time scene understanding, depth perception, stone size estimation, pressure and temperature feedback, and object tracking - thus e

Первичные конечные точки

  • Success rate [Срок оценки: Intra-operative]
Вторичные конечные точки (12)
  • Stone free rate [Срок оценки: Within post-operative 1 month]
  • Operative time [Срок оценки: Intra-operative]
  • Total laser energy used [Срок оценки: Intra-operative]
  • Total radiation dose during operation [Срок оценки: Intra-operative]
  • Surgeon radiation exposure [Срок оценки: Intra-operative]
  • Length of hospital stay [Срок оценки: During admission period (up to 30 days)]
  • Post-operative pain [Срок оценки: From immediately post-operatively to discharge (day 0 to day 1)]
  • Post-operative complications [Срок оценки: Within post-operative 30 days]
  • Surgeon questionnaires [Срок оценки: Immediately post-operative, day 0]
  • Surgeon questionnaires [Срок оценки: Immediately post-operative, day 0]
  • Surgeon questionnaires [Срок оценки: Immediately post-operative, day 0]
  • Surgeon questionnaires [Срок оценки: Immediately post-operative, day 0]

Критерии участия

Критерии включения

  • Adult patients >18 years old
  • Renal stone(s) less than 1cm 2cm in maximal length
  • Clinically indicated for RIRS
  • Willingness to participate as demonstrated by giving informed consent

Критерии исключения

  • Patients with no preoperative CT imaging available
  • Patients who are not recommended to receive RIRS
  • Severe concomitant illness that drastically shortens life expectancy or increases risk of therapeutic intervention
  • Untreated active infection
  • Un-corrected coagulopathy
  • Presence of another malignancy or distant metastasis
  • Emergency surgery
  • Vulnerable population (e.g. mentally disabled, pregnant)

Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.

Здоровые добровольцы: Нет

Дизайн исследования

Распределение
Не применимо
Модель
Одна группа
Маскирование
Открытое
Основная цель
Лечение

Центры проведения

Гонконг · 1 центр
  • Prince of Wales Hospital — Гонконг

Публикации

  • Lu Y, Chen W, Lu B, Zhou J, Chen Z, Dou Q, Liu YH. Adaptive Online Learning and Robust 3-D Shape Servoing of Continuum and Soft Robots in Unstructured Environments. Soft Robot. 2024 Apr;11(2):320-337. doi: 10.1089/soro.2022.0158. Epub 2024 Feb 6. PMID 38324014
  • Kuntz A, Emerson M, Ertop TE, Fried I, Fu M, Hoelscher J, Rox M, Akulian J, Gillaspie EA, Lee YZ, Maldonado F, Webster RJ 3rd, Alterovitz R. Autonomous medical needle steering in vivo. Sci Robot. 2023 Sep 20;8(82):eadf7614. doi: 10.1126/scirobotics.adf7614. Epub 2023 Sep 20. PMID 37729421
  • Wei, R., Guo, J., Lu, Y., Zhong, F., Liu, Y., Sun, D. and Dou, Q., 2024. Scale-aware monocular reconstruction via robot kinematics and visual data in neural radiance fields. Artificial Intelligence Surgery, 4(3), pp.187-198.
  • Ross T, Reinke A, Full PM, Wagner M, Kenngott H, Apitz M, Hempe H, Mindroc-Filimon D, Scholz P, Tran TN, Bruno P, Arbelaez P, Bian GB, Bodenstedt S, Bolmgren JL, Bravo-Sanchez L, Chen HB, Gonzalez C, Guo D, Halvorsen P, Heng PA, Hosgor E, Hou ZG, Isensee F, Jha D, Jiang T, Jin Y, Kirtac K, Kletz S, Leger S, Li Z, Maier-Hein KH, Ni ZL, Riegler MA, Schoeffmann K, Shi R, Speidel S, Stenzel M, Twick I PMID 33676097
  • Dupont PE, Degirmenci A. The grand challenges of learning medical robot autonomy. Sci Robot. 2025 Jul 30;10(104):eadz8279. doi: 10.1126/scirobotics.adz8279. Epub 2025 Jul 30. PMID 40737383
  • Long Y, Lin A, Kwok DHC, Zhang L, Yang Z, Shi K, Song L, Fu J, Lin H, Wei W, Chen K, Chu X, Hu Y, Yip HC, Chiu PWY, Kazanzides P, Taylor RH, Liu Y, Chen Z, Wang Z, Samuel Kwok Wai Au, Dou Q. Surgical embodied intelligence for generalized task autonomy in laparoscopic robot-assisted surgery. Sci Robot. 2025 Jul 16;10(104):eadt3093. doi: 10.1126/scirobotics.adt3093. Epub 2025 Jul 16. PMID 40668896
  • Lu, Y., Chen, W., Li, B., Lu, B., Zhou, J., Chen, Z. and Liu, Y.H., 2023. A robust graph-based framework for 3-d shape reconstruction of flexible medical instruments using multi-core fbgs. IEEE Transactions on Medical Robotics and Bionics, 5(3), pp.472-485.
  • Lu, Y., Lu, B., Li, B., Guo, H. and Liu, Y.H., 2021. Robust three-dimensional shape sensing for flexible endoscopic surgery using multi-core FBG sensors. IEEE Robotics and Automation Letters, 6(3), pp.4835-4842.

Идентификаторы

NCT: NCT07411391 · CRE-2025.665 · CRE-2025.665

Первоисточники (государственные реестры)

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