Robotic Systems Evaluation for Peripheral Pulmonary Lesions (RISE Trial)
Robotic Systems Evaluation for Peripheral Pulmonary Lesions: A Randomized Trial (RISE Trial)
研究概览
详细说明
Roughly 1.6 million lung nodules are identified every year in the United States. When tissue sampling is required, robotic-assisted bronchoscopy (RAB) systems are increasingly used to reach peripheral targets inaccessible to standard bronchoscopy.
Robotic-assisted bronchoscopy (RAB) has rapidly evolved as a promising modality for sampling PPLs. Two FDA-cleared robotic platforms are currently in clinical use: the ION™ Endoluminal System (Intuitive Surgical, Inc., Sunnyvale, CA) and the Monarch™ Platform (Johnson & Johnson MedTech / Auris Health, Redwood City, CA). Both platforms were cleared through the FDA 510(k) pathway, which requires demonstration of substantial equivalence to predicate devices but does not mandate comparative effectiveness data prior to commercialization.
The ION™ system uses shape-sensing fiber-optic technology to track catheter position with high precision throughout the bronchial tree. It has been shown in multiple studies to achieve diagnostic yields ranging from 67-85%, with enhanced performance when combined with intraprocedural cone-beam computed tomography (CBCT). The recent RELIANT trial (the first cluster-randomized controlled trial in interventional pulmonology) demonstrated that ION™ was non-inferior to electromagnetic navigation bronchoscopy (ENB) with integrated digital tomosynthesis, with diagnostic yields of 77.8% and 75.5% respectively (P for non-inferiority = 0.007).
The Monarch™ platform uses a hybrid approach combining electromagnetic tracking and robotic catheter control with a continuously visualizing bronchoscope (4-way articulation). A key feature of the Monarch™ is direct bronchoscopic vision throughout navigation, enabling real-time assessment of the airways and the target lesion. The Monarch™ has received additional FDA clearance for bronchoscopic transparenchymal nodule access (BTPNA), allowing access to lesions without a direct airway path. Published studies report diagnostic yields of 66-81% for the Monarch™ platform, though most are single-center, non-randomized studies with varying definitions of diagnostic yield, co-intervention use, and did not fully use integrated intraprocedural imaging (including fluoroscopy and CBCT, as available and integrated).
Critically, no randomized or high-quality comparative study has directly compared the ION™ and Monarch™ platforms head-to-head with integrated intraprocedural imaging. As both systems are now available at University Hospitals Cleveland Medical Center and represent substantial capital expenditures, high-quality prospective comparative data are urgently needed to guide clinical decision-making and resource allocation. This trial leverages the existing dual-platform clinical infrastructure at UHCMC to conduct a pragmatic, cluster-randomized, non-inferiority trial embedded within routine clinical care
研究类型
注册 (估计的)
阶段
- 不适用
联系人和位置
学习联系方式
- 姓名:Sameer K Avasarala, MD
- 电话号码:216-844-3201
- 邮箱:Sameer.Avasarala@uhhospitals.org
学习地点
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Ohio
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Cleveland、Ohio、美国、44106
- University Hospitals Cleveland Medical Center, Case Comprehensive Cancer Center
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接触:
- Sameer K Avasarala, MD
- 邮箱:Sameer.Avasarala@uhhospitals.org
-
首席研究员:
- Sameer K Avasarala, MD
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-
参与标准
资格标准
适合学习的年龄
- 成人
- 年长者
接受健康志愿者
描述
Inclusion Criteria:
- Age ≥ 18 years at the time of bronchoscopy.
- Scheduled to undergo navigational bronchoscopy (either ION™ or Monarch™) for the evaluation of a pulmonary lesion at University Hospitals Cleveland Medical Center (UHCMC).
- Able and willing to provide written informed consent.
Exclusion Criteria:
- Enrolled in another clinical trial that requires the use of a specific navigational/robotic bronchoscopy platform.
- Enrolled in another bronchoscopy-related clinical trial.
- Participant or legally authorized representative declines participation.
学习计划
研究是如何设计的?
设计细节
- 主要用途:诊断
- 分配:随机化
- 介入模型:并行分配
- 屏蔽:无(打开标签)
武器和干预
参与者组/臂 |
干预/治疗 |
|---|---|
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其他:Monarch Platform
This study is being conducted at a hospital that has two bronchoscopy procedure rooms (BPRs).
The unit of the randomization is the BPR day.
Each day, one BPR will be randomized to the Monarch platform and the other to the ION platform.
Participants in this arm will have undergone their RAB via the Monarch platform.
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The Monarch™ (Monarch) platform is one of two FDA-cleared robotic platforms currently in clinical use for robotic-assisted bronchoscopy (RAB).
It uses a hybrid approach combining electromagnetic tracking and robotic catheter control with a continuously visualizing bronchoscope (4-way articulation).
A key feature of the Monarch platform is direct bronchoscopic vision throughout navigation, enabling real-time assessment of the airways and the target lesion.
其他名称:
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其他:ION Platform
This study is being conducted at a hospital that has two bronchoscopy procedure rooms (BPRs).
The unit of the randomization is the BPR day.
Each day, one BPR will be randomized to the Monarch platform and the other to the ION platform.
Participants in this arm will have undergone their RAB via the ION platform.
|
The ION™ Endoluminal System (ION) platform is one of two FDA-cleared robotic platforms currently in clinical use for robotic-assisted bronchoscopy (RAB).
It uses shape-sensing fiber-optic technology to track catheter position with high precision throughout the bronchial tree.
其他名称:
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研究衡量的是什么?
主要结果指标
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Diagnostic yield defined as the proportion of procedures that result in the acquisition of lesional tissue
大体时间:Up to Day 14
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Diagnostic yield is defined as the proportion of procedures that result in the acquisition of lesional tissue.
This will be measured for both procedures conducted via the Monarch platform and the ION platform.
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Up to Day 14
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次要结果测量
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Duration of the robotic bronchoscopy procedures
大体时间:Day 0
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The duration of the robotic bronchoscopy procedure will be measured in minutes for both the Monarch platform and the ION platform.
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Day 0
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Safety, measured by the number of complications
大体时间:Up to Day 7
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Safety will be measured by the number of complications that occur within 7 days of the procedure for both the Monarch platform group and the ION platform group.
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Up to Day 7
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Radiation exposure
大体时间:Day 0
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Radiation exposure is defined as the radiation dose delivered to the participant during the study bronchoscopy and is recorded as a dose area product in milligray per centimeters squared (mGy/cm2).
Radiation exposure is measured for both the Monarch platform group and the ION platform group.
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Day 0
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Rate of additional diagnostic procedures required within 12 months
大体时间:Up to 12 months
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The rate of additional diagnostic procedures required within 12 months of the study bronchoscopy will be assess for both the Monarch platform group and the ION group.
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Up to 12 months
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Diagnostic accuracy at 12 months post-biopsy
大体时间:Up to 12 months
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Diagnostic accuracy at 12 months post-biopsy is defined as the number of true positive lesions (malignant) plus true negative lesions (specific benign diagnosis) with no evidence of malignancy at 12-month follow-up (no interval biopsy diagnostic of malignancy, regression on CT or stable size with no plan for repeat diagnostic procedure), divided by the total number of biopsied lesions.
This will be assessed for both the Monarch platform group and the ION platform group.
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Up to 12 months
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合作者和调查者
调查人员
- 首席研究员:Sameer K Avasarala, MD、Case Comprehensive Cancer Center, University Hospitals
研究记录日期
研究主要日期
学习开始 (估计的)
初级完成 (估计的)
研究完成 (估计的)
研究注册日期
首次提交
首先提交符合 QC 标准的
首次发布 (实际的)
研究记录更新
最后更新发布 (实际的)
上次提交的符合 QC 标准的更新
最后验证
更多信息
与本研究相关的术语
其他研究编号
- CASE3526
计划个人参与者数据 (IPD)
计划共享个人参与者数据 (IPD)?
IPD 共享时间框架
IPD 共享访问标准
IPD 共享支持信息类型
- 研究方案
- 树液
药物和器械信息、研究文件
研究美国 FDA 监管的药品
研究美国 FDA 监管的设备产品
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