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RF Surgical Sponge-Detecting System on the Function of Pacemakers and Implantable Cardioverter Defibrillators

Compatibility of Radiofrequency Detection Technology With Cardiac Internal Electronic Devices (RF Assure Study)

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02111980
Acronym
RF
Enrollment
50
Registered
2014-04-11
Start date
2014-03-31
Completion date
2015-05-31
Last updated
2019-12-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiac Arrhythmia, Cardiomyopathy, Chronic Thromboembolic Pulmonary Hypertension, Heart Failure

Keywords

CIED, pacemaker, implantable cardioverter defibrillator, ICD, radiofrequency, cardiac device programming, RF sponge detection, RF assure, cardiac internal electronic devices, temporary pacing, pulmonary thromboendarterectomy, pacing interference, Arrhythmia

Brief summary

If a surgical sponge is mistakenly left inside a patient's body after a surgical procedure, it can cause a serious infection. To prevent this from happening, a new device has been developed that uses radiofrequency (RF) signals to detect the presence of surgical sponges inside the body. The device is now being used routinely to make sure that no sponges are left inside a patient at the end of an operation. However, the RF device has not been implemented in procedures for patients with cardiac implantable electronic devices (CIEDs). While the device is FDA approved for use, there is a theoretical concern that the radiofrequency signals used to detect the sponges will change the settings on the pacemaker or the defibrillator. Changing the settings on a pacemaker might make it pace the heart too quickly or too slowly, while changing the settings on a defibrillator might cause unnecessary shocks or prevent it from shocking the heart if the patient were to have cardiac arrest. The purpose of this study is to test whether the radiofrequency device used to detect sponges can cause a clinically significant change to the settings on pacemakers and defibrillators. To minimize potential risk, the device will be tested only on patients who are having the pacemaker or defibrillator removed or replaced as part of their regular medical care, either because it is infected or because the battery has worn out. Before the pacemaker or defibrillator is removed, the settings will be carefully and completely recorded and the radiofrequency device will be used to scan the body for sponges as it would be done during normal operation. After the pacemaker or defibrillator is taken out, the settings will again be recorded and compared to the settings before the scan. In a standard device removal procedure, no clinically significant change in CIED settings would be expected. If a new pacemaker or defibrillator is implanted in the patient, it will not be exposed to the detection device at all. We will also test whether the RF device has any effect on temporary pacemakers that patients may receive after open heart surgery. We plan to perform testing in a total of 50 patients, 40 with permanent pacemakers or defibrillators and 10 with temporary pacemakers.

Detailed description

Retained surgical items (e.g., sponges, needles, and instruments) are among the most frequently reported medical errors and occur in an estimated 1 in 5000 operations. A retained surgical item frequently causes a serious negative outcome, including re-operation (70-80% of cases), readmission or prolonged hospital stay (30-60% of cases), sepsis (43% of cases), or death (2% of cases). Retained surgical items are classed as never events by the Centers for Medicare and Medicaid Services (CMS), and CMS does not reimburse for additional medical care related to the treatment for such a complication. Sponges are by far the most common retained items and are estimated to account for 50-70% of cases. The standard method to ensure that no sponge is left inside the body is manual counting. Manual counting, however, carries a sensitivity and specificity of only about 77% and 99%, respectively. In one study 62% of retained items were detected after the count was reported as normal. If the manual count suggests that a sponge has been retained, the standard method to detect it is by taking a radiograph. Radiographs, however, are time-consuming and in one large retrospective study failed to detect retained items in 33% of cases. The standard methods of detecting retained surgical sponges are clearly suboptimal. Radiofrequency (RF) technology has recently been employed to improve the detection of retained surgical sponges. A radiofrequency chip is sewn into the fabric of the sponge, and a circular wand that emits a radiofrequency signal is passed over the patient. The wand also serves as an antenna that detects a return signal from the chip in the sponge. If a chip is detected it triggers an audio and a visual alarm on a console attached to the wand. In a study involving 210 patients, RF detection systems had 100% sensitivity and specificity for detecting retained sponges, even in morbidly obese patients. To minimize human error during the scanning process, a new system has been developed where the patient lies on a mat that emits the RF signal and serves as the antenna. In a separate study involving 203 patients, the system using the RF mat had a sensitivity and specificity of 98.5% and 100% respectively. To carry out these studies, sponges were placed underneath patients in a blinded manner. Although it would seem that RF detection systems are superior to manual counting, it should be emphasized that an RF detection system is not a substitute for manual counting, but rather an adjunct to manual counting. The RF Assure ® Detection System manufactured by RF Surgical System Inc. is now routinely used to detect retained sponges in the operating rooms at the University of California, San Diego (UCSD) and at \ 200 other hospitals. There has been some concern that the radio frequency signals emitted by the RF Assure® device might reprogram the settings on CIED such as pacemakers and internal cardiac defibrillators (ICDs), since CIEDs are commonly programmed remotely using RF signals. For this reason, the technology is not commonly used in surgeries with patients with CIEDs. In vitro testing was done in a controlled setting to assess the compatibility of the RF Surgical Detection Technology with permanent pacemakers and ICDs as well as temporary pacemakers, specifically the Boston Scientific Cognis, St. Jude Medical Promote, and Medtronic Virtuoso devices, finding no interference between the RF Assure® system and these devices. Although anecdotal experience and in vitro testing has indicated that the RF Assure® system does not affect CIEDs, it has not been established whether the RF Assure® system is suitable to use in patients with CIEDs in a clinical setting. The purpose of this study is to determine whether the RF Assure® device actually can reprogram CIEDs or cause them to malfunction when used in routine clinical practice. This question is of particular importance because of the rising number of surgical patients, especially cardiac patients, that have an implanted CIED.

Interventions

DEVICERF Assure Scanning

CIED and temporary pacemaker patients will be scanned with RF surgical sponge detection wand and mat as well as with and without the RF sponge. The scanning will only be conducted on the device scheduled for removal. Patients will have device interrogated before and after scanning (for CIEDs) to determine if there have been any clinically significant changes in programming or settings due to scanning with RF technology. Vitals will be monitored and recorded before, during, and after scanning.

Sponsors

RF Surgical Systems, Inc.
CollaboratorINDUSTRY
University of California, San Diego
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Patients must be at least 18 years of age * Patients must be willing and able to provide consent * Patients must be eligible for pacemaker/ICD removal or temporary pacemaker

Exclusion criteria

* Pregnancy * Inability or unwillingness to comply with the protocol * Medical condition that would limit study participation

Design outcomes

Primary

MeasureTime frameDescription
Pacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe Pacing Mode on the CIED was measured prior to RF scanning (with sponge) and after the scanning (after sponge removal) in order to evaluate if any significant changes in the pacing mode setting resulted. The following CIED modes were evaluated: DDD (dual chamber pacing, sensing, triggered and inhibited mode), VVI (ventricular pacing, sensing, and inhibited mode), DDI (dual pacing, sensing, and inhibited mode), AAI (atrial pacing, sensing, and inhibited mode). The number of patients' device mode switched between these settings was tabulated and is shown in the below table. Multiple post-scan assessments were not made.
Pacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe patient's pacing polarity was measured prior to scanning with sponge and after scanning with sponge via device interrogation. The following pacing polarity measurements were evaluated: right atrium/right ventricle (RA/RV) bipolar polarity, left ventricle (LV) bipolar polarity, and left ventricle (LV) unipolar polarity. Note that not all study patients had LV leads implanted. Multiple post-scan assessments were not made.
Base Rate Measurement Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned w/ RF AssureBaseline and 15 minutesThe base rate on patients' devices was measured before scanning with sponge and after RF scanning with sponge. The median was determined and is presented below with standard deviation for both times. Multiple post-scan assessments were not made.
Max Tracking Rate Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe max tracking rate on the CIEDs was measured prior to scanning with the sponge and post scanning with sponge. The max tracking rate is the maximum atrial rate at which a pacemaker will deliver a ventricular pacing stimulus following each sensed atrial beat. Below, the median and standard deviation are presented. Please note that multiple post-scan assessments were not made for any patient.
Atrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe atrio-ventricular delay was measured prior to scanning with sponge and post RF scanning with sponge. Please note that multiple post-scan assessments were not made for any of the patients presented here.
Battery Capacity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesOf the patients enrolled, battery capacity changes were measured prior to and post RF scanning with sponge. Multiple post-scan assessments were not made for any of the patients presented here.
Pacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe impedance values of right ventricle (RV), right atrium (RA), and left ventricle (LV) leads was measured prior to RF scanning with sponge and post RF scanning with sponge. Multiple post-scan assessments were not made for any patient represented here.
Shock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe shock impedance changes were measured (right ventricle (RV) coil and superior vena cava (SVC) coil) prior to and post RF scanning with sponge. This was measured by performing a device interrogation in the electrophysiology (EP) lab. Multiple post-scan measurements were not taken for any of the patients presented here.
Changes in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesThe P and R waves were measured via device interrogation prior to and post RF scanning with sponge. Multiple post-scan measurements were not made for any of the participants represented here.
Capture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureBaseline and 15 minutesVia device interrogation, capture threshold changes (the minimum amount of electricity that the box has to emit to pace the heart) were measured prior to and post RF Scanning with sponge. Multiple post-scan measurements were not taken for any participants presented here.

Countries

United States

Participant flow

Recruitment details

Patients that required a pacemaker/ICD generator change or device implant were approached for participation in this study in both the Sulpizio Cardiovascular Center Clinic and Pre-procedural Unit. Patients undergoing PTE Surgery were also approached in these settings.

Participants by arm

ArmCount
RF Assure Scanning
Cardiac implantable electronic device (CIED) (implantable cardiac defibrillator (ICD) and permanent pacemakers (PPM)) and temporary pacemaker patients (during pulmonary thromboendartectomy (PTE) surgery) were scanned with the Radiofrequency (RF) surgical sponge detection wand and mat as well as with and without the RF sponge. The scanning was conducted on the device scheduled for removal. Patients had device interrogated before and after scanning (for CIEDs) to determine if there were any clinically significant changes in programming or settings due to scanning with RF technology.
50
Total50

Baseline characteristics

CharacteristicRF Assure Scanning
Age, Continuous
ICD
64 years
STANDARD_DEVIATION 17.4
Age, Continuous
Pacemaker
74.5 years
STANDARD_DEVIATION 17
Age, Continuous
PTE
54.9 years
STANDARD_DEVIATION 13.1
Body Mass Index (BMI)
ICD
29.8 kg/m^2
STANDARD_DEVIATION 6.1
Body Mass Index (BMI)
Pacemaker
26.3 kg/m^2
STANDARD_DEVIATION 3.6
Body Mass Index (BMI)
PTE
30.8 kg/m^2
STANDARD_DEVIATION 3.9
History of Atrial Fibrillation (AF)
ICD
5 participants
History of Atrial Fibrillation (AF)
Pacemaker
14 participants
History of Atrial Fibrillation (AF)
PTE
2 participants
History of Coronary Artery Disease (CAD)
ICD
6 participants
History of Coronary Artery Disease (CAD)
Pacemaker
6 participants
History of Coronary Artery Disease (CAD)
PTE
1 participants
History of Diabetes Mellitus (DM)
ICD
6 participants
History of Diabetes Mellitus (DM)
Pacemaker
3 participants
History of Diabetes Mellitus (DM)
PTE
3 participants
History of Hypertension (HTN)
ICD
10 participants
History of Hypertension (HTN)
Pacemaker
15 participants
History of Hypertension (HTN)
PTE
5 participants
Measured Ejection Fraction (EF) (%)
ICD
37 percentage
STANDARD_DEVIATION 17
Measured Ejection Fraction (EF) (%)
Pacemaker
56.2 percentage
STANDARD_DEVIATION 17
Measured Ejection Fraction (EF) (%)
PTE
67.6 percentage
STANDARD_DEVIATION 10
Region of Enrollment
United States
50 participants
Sex: Female, Male
Female
16 Participants
Sex: Female, Male
Male
34 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
0 / 50
serious
Total, serious adverse events
0 / 50

Outcome results

Primary

Atrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The atrio-ventricular delay was measured prior to scanning with sponge and post RF scanning with sponge. Please note that multiple post-scan assessments were not made for any of the patients presented here.

Time frame: Baseline and 15 minutes

Population: 31 patients were evaluated of the 40 in this analysis of the AV Delay 9 paced AV Delays were either not measured or unable to be measured during this study. The PTE participants were not included in this analysis because temporary devices do not have capabilities for interrogation (ie: recording AV Delay Changes).

ArmMeasureGroupValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureAtrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureSensed AV Delay230 msStandard Deviation 69.3
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureAtrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePaced AV Delay250 msStandard Deviation 68.3
Post-Scan Measures for PPM/ICDs Scanned With RF AssureAtrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureSensed AV Delay230 msStandard Deviation 69.3
Post-Scan Measures for PPM/ICDs Scanned With RF AssureAtrio-ventricular (AV) Delay Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePaced AV Delay250 msStandard Deviation 68.3
Primary

Base Rate Measurement Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned w/ RF Assure

The base rate on patients' devices was measured before scanning with sponge and after RF scanning with sponge. The median was determined and is presented below with standard deviation for both times. Multiple post-scan assessments were not made.

Time frame: Baseline and 15 minutes

Population: The PTE temporary pacing participants were not included in this analysis because temporary devices do not have capabilities for interrogation (ie: recording base rate measurement changes).

ArmMeasureValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureBase Rate Measurement Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned w/ RF Assure60 bpmStandard Deviation 10.27
Post-Scan Measures for PPM/ICDs Scanned With RF AssureBase Rate Measurement Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned w/ RF Assure60 bpmStandard Deviation 10.27
Primary

Battery Capacity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

Of the patients enrolled, battery capacity changes were measured prior to and post RF scanning with sponge. Multiple post-scan assessments were not made for any of the patients presented here.

Time frame: Baseline and 15 minutes

Population: Of all participants, only 24 were analyzed in this outcome, as their devices reported battery life in millivolts (while other devices reported battery life in % or years). The PTE temporary pacing participants weren't included in this analysis because temporary devices do not have capabilities for interrogation.

ArmMeasureValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureBattery Capacity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure2.745 mVStandard Deviation 0.23
Post-Scan Measures for PPM/ICDs Scanned With RF AssureBattery Capacity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure2.744 mVStandard Deviation 0.23
Primary

Capture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

Via device interrogation, capture threshold changes (the minimum amount of electricity that the box has to emit to pace the heart) were measured prior to and post RF Scanning with sponge. Multiple post-scan measurements were not taken for any participants presented here.

Time frame: Baseline and 15 minutes

Population: Because not all devices are equipped with RA, RV, and LV leads, note the population values in the below table for each group: right atrium (RA) thresholds, right ventricle (RV) thresholds, and left ventricle (LV) thresholds. The PTE participants were not included in this analysis because temporary devices do not have capabilities for interrogation.

ArmMeasureGroupValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Threshold0.955 VStandard Deviation 0.49
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA Threshold0.806 VStandard Deviation 0.35
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV Threshold2.616 VStandard Deviation 1.16
Post-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA Threshold0.819 VStandard Deviation 0.36
Post-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Threshold0.972 VStandard Deviation 0.5
Post-Scan Measures for PPM/ICDs Scanned With RF AssureCapture Threshold Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV Threshold2.320 VStandard Deviation 1.16
Primary

Changes in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The P and R waves were measured via device interrogation prior to and post RF scanning with sponge. Multiple post-scan measurements were not made for any of the participants represented here.

Time frame: Baseline and 15 minutes

Population: 32 of the 40 participants were evaluated in this study for P and R measurements. 8 patients' devices either didn't have the P or R measured or they was unable to be measured. The PTE temporary pacing participants were not included in this analysis because temporary devices do not have capabilities for interrogation.

ArmMeasureGroupValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureChanges in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureP Wave2.5 mVStandard Deviation 1.38
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureChanges in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureR Wave10.73 mVStandard Deviation 5.25
Post-Scan Measures for PPM/ICDs Scanned With RF AssureChanges in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureP Wave2.469 mVStandard Deviation 1.37
Post-Scan Measures for PPM/ICDs Scanned With RF AssureChanges in P & R Wave Measurements in Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureR Wave10.76 mVStandard Deviation 5.29
Primary

Max Tracking Rate Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The max tracking rate on the CIEDs was measured prior to scanning with the sponge and post scanning with sponge. The max tracking rate is the maximum atrial rate at which a pacemaker will deliver a ventricular pacing stimulus following each sensed atrial beat. Below, the median and standard deviation are presented. Please note that multiple post-scan assessments were not made for any patient.

Time frame: Baseline and 15 minutes

Population: 34 of 40 participants' Max Tracking Rate was measured. 6 MTRs were not measured or unable to be measured during testing. The PTE temporary pacing participants were not included in this analysis because temporary devices do not have capabilities for interrogation (ie: recording max tracking rate changes).

ArmMeasureValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureMax Tracking Rate Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure130 bpmStandard Deviation 14.51
Post-Scan Measures for PPM/ICDs Scanned With RF AssureMax Tracking Rate Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure130 bpmStandard Deviation 14.51
Primary

Pacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The impedance values of right ventricle (RV), right atrium (RA), and left ventricle (LV) leads was measured prior to RF scanning with sponge and post RF scanning with sponge. Multiple post-scan assessments were not made for any patient represented here.

Time frame: Baseline and 15 minutes

Population: 40 subjects were analyzed. Note that not all had both RA, RV, and LV leads. Therefore, the number of leads (and therefore their impedance values reported below) does not match for each group. The PTE temporary pacing participants were not included in this analysis because temporary devices do not have capabilities for interrogation.

ArmMeasureGroupValue (MEDIAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA Impedance500.1 ohmsStandard Deviation 161.18
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Impedance531.9 ohmsStandard Deviation 135.96
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV Impedance592.8 ohmsStandard Deviation 255.19
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA Impedance495.1 ohmsStandard Deviation 161.48
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Impedance530.6 ohmsStandard Deviation 135.08
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Impedance Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV Impedance610.1 ohmsStandard Deviation 236.89
Primary

Pacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The Pacing Mode on the CIED was measured prior to RF scanning (with sponge) and after the scanning (after sponge removal) in order to evaluate if any significant changes in the pacing mode setting resulted. The following CIED modes were evaluated: DDD (dual chamber pacing, sensing, triggered and inhibited mode), VVI (ventricular pacing, sensing, and inhibited mode), DDI (dual pacing, sensing, and inhibited mode), AAI (atrial pacing, sensing, and inhibited mode). The number of patients' device mode switched between these settings was tabulated and is shown in the below table. Multiple post-scan assessments were not made.

Time frame: Baseline and 15 minutes

Population: The PTE participants were not included in this analysis because temporary devices do not have capabilities for interrogation (ie: recording pacing mode changes).

ArmMeasureGroupValue (NUMBER)
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - DDD29 participants
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - VVI8 participants
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - DDI2 participants
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - AAI1 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - AAI1 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - DDD29 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - DDI2 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Mode Changes Between Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssurePacing Mode - VVI8 participants
p-value: 1t-test, 2 sided
Primary

Pacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The patient's pacing polarity was measured prior to scanning with sponge and after scanning with sponge via device interrogation. The following pacing polarity measurements were evaluated: right atrium/right ventricle (RA/RV) bipolar polarity, left ventricle (LV) bipolar polarity, and left ventricle (LV) unipolar polarity. Note that not all study patients had LV leads implanted. Multiple post-scan assessments were not made.

Time frame: Baseline and 15 minutes

Population: The PTE participants were not included in this analysis because temporary devices do not have capabilities for interrogation (ie: recording pacing polarity changes).

ArmMeasureGroupValue (NUMBER)
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA/RV (bipolar)40 participants
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV (bipolar)5 participants
Pre-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV (unipolar)3 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRA/RV (bipolar)40 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV (bipolar)5 participants
Post-Scan Measures for PPM/ICDs Scanned With RF AssurePacing Polarity Changes With Permanent Pacemakers (PPMs)/Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureLV (unipolar)3 participants
Primary

Shock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF Assure

The shock impedance changes were measured (right ventricle (RV) coil and superior vena cava (SVC) coil) prior to and post RF scanning with sponge. This was measured by performing a device interrogation in the electrophysiology (EP) lab. Multiple post-scan measurements were not taken for any of the patients presented here.

Time frame: Baseline and 15 minutes

Population: SVC and RV Coils are specific to ICDs, and therefore, PPMs and Temporary Pacemakers were not included in this analysis.

ArmMeasureGroupValue (MEAN)Dispersion
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureShock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Coil51.30 ohmsStandard Deviation 18.36
Pre-Scan Measures for PPM/ICDs Scanned With RF AssureShock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureSVC Coil53.45 ohmsStandard Deviation 17.53
Post-Scan Measures for PPM/ICDs Scanned With RF AssureShock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureRV Coil51.5 ohmsStandard Deviation 18.14
Post-Scan Measures for PPM/ICDs Scanned With RF AssureShock Impedance Changes With Implantable Cardiac Defibrillators (ICDs) Scanned With RF AssureSVC Coil53.70 ohmsStandard Deviation 17.13

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026