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Boston Scientific

United States·US-MF-000004702

Last updated September 17, 2026

Information

Country
United States
Address
300, Boston Scientific Way, Marlborough, United States
Website
www.bsci.com
LinkedIn
—
Facebook
—
Phone
001 508-683-4000
PRRC Contact
—
EUDAMED SRN
US-MF-000004702
FDA FEI Number
3005099803
DUNS Number
—

Catalogue (12354)

Page 10 of 248
DeviceModel / ReferenceRegistriesClassStatus
Ekos™ + H74939605106200
FDA UDI
Class IIActive
StoneSmart™ Connect M006793300R0
FDA UDI
Class IIActive
Flextome® Cutting Balloon® H749CBM3275100
FDA UDI
Class IIIUnknown
Impulse™ H749165992200
FDA UDI
Class IIActive
Impulse™ H749163915051
FDA UDI
Class IIActive
Maverick® H7492062025200
FDA UDI
Class IIActive
Charger™ H74939206031510
FDA UDI
Class IIActive
Quantum™ Maverick™ H7493808130250
FDA UDI
Class IIActive
Polaris™ Loop M006155235010
FDA UDI
Class IIUnknown
Compliance EndoKit™ CEK-4001
FDA UDI
Class IActive
Synergy™ H7493926032350
FDA UDI
Class IIIActive
Idc™ M0013614120
FDA UDI
Class IIActive
Woven M004200587E0
FDA UDI
Class IIActive
Expel™ Ureteral Stent System H7493936106160
FDA UDI
Class IIActive
Polaris™ Ultra M006192144060
FDA UDI
Class IIUnknown
Emerge™ H7493918915400
FDA UDI
Class IIActive
iLab Ultrasound Imaging System H749ILAB100CART0
FDA UDI
Class IIActive
Apex™ H7493895830220
FDA UDI
Class IIUnknown
Athletis™ H74939347080270
FDA UDI
Class IIActive
Contour™ SureDrive™ M0061458680
FDA UDI
Class IIActive
Ion™ H7493902424220
FDA UDI
Class IIIUnknown
Percuflex™ Plus M006175262070
FDA UDI
Class IIUnknown
Wiseguide™ H74919500520
FDA UDI
Class IIUnknown
Agile™ Esophageal M00517260
FDA UDI
Class IIActive
Percuflex™ M006145382190
FDA UDI
Class IIUnknown
EMBOLD™ Packing M001394260000300
FDA UDI
Class IIActive
Impulse™ H74916599980
FDA UDI
Class IIActive
Tria™ Soft M0061903350
FDA UDI
Class IIActive
Wiseguide ™ H749198154980
FDA UDI
Class IIUnknown
Compliance EndoKit™ CEK-222
FDA UDI
Class IActive
Percuflex™ Plus M006175571180
FDA UDI
Class IIActive
NC Emerge® H7493926812320
FDA UDI
Class IIActive
Coyote™ H74939185250810
FDA UDI
Class IIActive
Visual-ICE® Cryoablation System - Evaluation FPRCH6000-02D
FDA UDI
Class IIActive
Sterling™ H74939032150410
FDA UDI
Class IIActive
LATITUDE® Communicator 6498
FDA UDI
Class IIIActive
Imager™ Ii M001315320
FDA UDI
Class IIActive
Percuflex Locking Loop M0064102060
FDA UDI
Class IActive
Coyote™ H74939185350610
FDA UDI
Class IIActive
Journey™ M001391290
FDA UDI
Class IIUnknown
Contour ERCP Cannula M00530850
FDA UDI
Class IIActive
RX Biliary M00545680
FDA UDI
Class IIActive
RunWay™ H749389697300
FDA UDI
Class IIActive
NC Emerge® H7493926812550
FDA UDI
Class IIActive
Mustang™ H74939171031040
FDA UDI
Class IIActive
Polaris™ Loop M006155224170
FDA UDI
Class IIUnknown
Polaris™ Loop M006155222170
FDA UDI
Class IIUnknown
Mach1™ H749343574430
FDA UDI
Class IIActive
Incepta™ Icd E162
FDA UDI
Class IIIActive
LATITUDE™ Programming System 3300
FDA UDI
Class IIIActive

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FDA Recalls (100)

Recalls reported by this firm to the FDA. Listed at company level — FDA recall records don't identify a specific catalogue device.

DateRecall No.ClassStatusReason
Mar 30, 2026Z-2048-2026—open, classified

For some patients upgraded from a LUX-Dx M301 device to a new Model M302 or M312, the new ICM device is not collecting PVC Burden data (both M302/M312) or monitoring for Bradyarrhythmia and Pause (M312 only). In addition, for these devices that are not being monitored, the LATITUDE Clarity programming screens have discrepant information, indicating that the monitoring is enabled for these features in one location and not enabled in another location.

Mar 30, 2026Z-2049-2026—open, classified

For some patients upgraded from a LUX-Dx M301 device to a new Model M302 or M312, the new ICM device is not collecting PVC Burden data (both M302/M312) or monitoring for Bradyarrhythmia and Pause (M312 only). In addition, for these devices that are not being monitored, the LATITUDE Clarity programming screens have discrepant information, indicating that the monitoring is enabled for these features in one location and not enabled in another location.

Mar 19, 2026Z-1770-2026—open, classified

Updated software, Brady software maintenance release 6 (SMR6), is now available for the ACCOLADE" family of pacemakers and cardiac resynchronization therapy pacemakers (CRT-Ps)1 and the advisory population is expanding to include all CRT-P and dual-chamber extended life (DR-EL) devices. Dual chamber modes are specifically indicated for treatment of the following: " Conduction disorders that require restoration of AV synchrony, including varying degrees of AV block " VVI intolerance (i.e., pacemaker syndrome) in the presence of persistent sinus rhythm " Low cardiac output or congestive heart failure secondary to bradycardia

Mar 19, 2026Z-1771-2026—open, classified

Updated software, Brady software maintenance release 6 (SMR6), is now available for the ACCOLADE" family of pacemakers and cardiac resynchronization therapy pacemakers (CRT-Ps)1 and the advisory population is expanding to include all CRT-P and dual-chamber extended life (DR-EL) devices. Dual chamber modes are specifically indicated for treatment of the following: " Conduction disorders that require restoration of AV synchrony, including varying degrees of AV block " VVI intolerance (i.e., pacemaker syndrome) in the presence of persistent sinus rhythm " Low cardiac output or congestive heart failure secondary to bradycardia

Feb 10, 2026Z-1551-2026—open, classified

Recall of kits which utilized ChloraPrep Triple Swabsticks from BD. Open or compromised seals on the sterile swabstick packaging, which could result in loss of sterility or drying of the antiseptic solution. This component is placed outside of the sterile barrier of the tray manufactured by Boston Scientific, which contains the majority of the kit components. As such, inclusion of the affected ChloraPrep Triple Swabsticks does not degrade the integrity of the other components within the PEG kit.

Dec 19, 2025Z-1163-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 19, 2025Z-1159-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 19, 2025Z-1161-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 19, 2025Z-1162-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 19, 2025Z-1158-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 19, 2025Z-1160-2026—open, classified

Increased reports of stent deployment and expansion issues. The most common outcome reasonably foreseeable resulting from difficulty deploying the stent is prolongation of the procedure to exchange the device for a new one. The most serious reasonably foreseeable outcome in cases where the first flange is unable to deploy or expand would be a cascade of events resulting in additional intervention, either endoscopic or surgical, to remove the stent and close the puncture site.

Dec 3, 2025Z-1042-2026—open, classified

Boston Scientific is initiating the removal of certain batches of Coyote" Over-the-Wire (OTW) Percutaneous Transluminal Angioplasty (PTA) Balloon Dilatation Catheter devices due to the potential for inflation/deflation difficulty during use in the peripheral vasculature. An internal investigation found that a manufacturing process variation resulted in catheters that may not properly inflate/deflate. This was limited to Coyote OTW batches manufactured from 12Sep2025 through 13Oct2025. The processing variation has since been addressed. No other material numbers or batches are impacted by this removal.

Sep 11, 2025Z-0143-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0144-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0142-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0140-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0138-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0139-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Sep 11, 2025Z-0141-2026—open, classified

The potential for devices to experience inflation and/or deflation performance issues or difficulties.

Aug 28, 2025Z-2618-2025—open, classified

The product in incorrectly labeled. The label indicates that the skive hole should be above the balloon, while it is actually positioned below, and vice versa.

Aug 20, 2025Z-0095-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0100-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0093-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0088-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0089-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0084-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0090-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0081-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0083-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0098-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0082-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0101-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0094-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0103-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0102-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0096-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0091-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0086-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0097-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0092-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0105-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0079-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0087-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0085-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0080-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0104-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 20, 2025Z-0099-2026—open, classified

Software to enhance Safety Architecture is available and designed to prevent initiation of Safety Mode in an ambulatory setting due to a high battery impedance state for the ACCOLADE family of devices which includes ACCOLADE, PROPONENT, ESSENTIO, and ALTRUA 2 dual chamber (DR) standard life (SL) and DR extended life (EL) pacemakers; and VISIONIST and VALITUDE cardiac resynchronization therapy pacemakers (CRT-Ps).

Aug 18, 2025Z-2551-2025—open, classified

Certain desiccant tube subassemblies were built with end caps that were not correctly tightened.

Aug 18, 2025Z-2550-2025—open, classified

Certain desiccant tube subassemblies were built with end caps that were not correctly tightened.

Aug 5, 2025Z-2535-2025—open, classified

The Encore 26 Inflation Device is used with balloon dilation catheters to create and monitor pressure in the balloon and to deflate the balloon. An internal investigation determined that during use, foreign material particles could migrate from affected Encore 26 Inflation Devices into a balloon dilatation catheter.

Aug 5, 2025Z-2536-2025—open, classified

The Encore 26 Inflation Device is used with balloon dilation catheters to create and monitor pressure in the balloon and to deflate the balloon. An internal investigation determined that during use, foreign material particles could migrate from affected Encore 26 Inflation Devices into a balloon dilatation catheter.

Aug 5, 2025Z-2533-2025—open, classified

The Encore 26 Inflation Device is used with balloon dilation catheters to create and monitor pressure in the balloon and to deflate the balloon. An internal investigation determined that during use, foreign material particles could migrate from affected Encore 26 Inflation Devices into a balloon dilatation catheter.

Aug 5, 2025Z-2534-2025—open, classified

The Encore 26 Inflation Device is used with balloon dilation catheters to create and monitor pressure in the balloon and to deflate the balloon. An internal investigation determined that during use, foreign material particles could migrate from affected Encore 26 Inflation Devices into a balloon dilatation catheter.

Jul 29, 2025Z-2431-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2429-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2426-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2434-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2436-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2433-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2430-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2428-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2435-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2427-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 29, 2025Z-2432-2025—open, classified

Boston Scientific has identified a higher likelihood of air embolism events when procedures are performed without positive pressure-controlled ventilation. According to published literature and clinical data, in percutaneous procedures requiring transseptal access to the left atrium when conscious or deep sedation is used, patients have an approximately three-times higher risk (U.S. study) of negative left atrium pressure and air ingress. This risk is especially prevalent in patients with pre-existing low left atrial pressure, hypovolemia, and partial upper airway collapse.

Jul 24, 2025Z-2325-2025—open, classified

Affected lead models may experience gradually rising LVSI measurements in association with calcification of the defibrillation lead coils. The issue may lead to early lead replacement. Most serious harm is death or need for cardiac resuscitation.

Jul 24, 2025Z-2327-2025—open, classified

Affected lead models may experience gradually rising LVSI measurements in association with calcification of the defibrillation lead coils. The issue may lead to early lead replacement. Most serious harm is death or need for cardiac resuscitation.

Jul 24, 2025Z-2326-2025—open, classified

Affected lead models may experience gradually rising LVSI measurements in association with calcification of the defibrillation lead coils. The issue may lead to early lead replacement. Most serious harm is death or need for cardiac resuscitation.

Jul 7, 2025Z-2273-2025—open, classified

Certain batches are being removed due to an increase in complaints received in which physicians encountered greater than anticipated resistance while attempting to withdraw the stent delivery system (SDS) from the guidewire or embolic protection device (EPD) after successful stent deployment. The most serious potential adverse health consequence is stroke. Other risks include delay to procedure, vessel injury, vessel spasm, or stent disruption/damage necessitating additional intervention.

Jun 25, 2025Z-2278-2025—open, classified

The potentially impacted units were manufactured using specific equipment that may have caused cracks in the electrode bands on the catheter's distal end.

Jun 10, 2025Z-2106-2025—open, classified

Potential for hole in the Tyvek layer of the sterile barrier pouch, which may compromise device sterility. Issue could potentially lead to systemic infection and sepsis in worst case scenario. Potential punctures may go undetected in clinical settings due to small size and variable location.

Jun 10, 2025Z-2103-2025—open, classified

Potential for hole in the Tyvek layer of the sterile barrier pouch, which may compromise device sterility. Issue could potentially lead to systemic infection and sepsis in worst case scenario. Potential punctures may go undetected in clinical settings due to small size and variable location.

Jun 10, 2025Z-2105-2025—open, classified

Potential for hole in the Tyvek layer of the sterile barrier pouch, which may compromise device sterility. Issue could potentially lead to systemic infection and sepsis in worst case scenario. Potential punctures may go undetected in clinical settings due to small size and variable location.

Jun 10, 2025Z-2104-2025—open, classified

Potential for hole in the Tyvek layer of the sterile barrier pouch, which may compromise device sterility. Issue could potentially lead to systemic infection and sepsis in worst case scenario. Potential punctures may go undetected in clinical settings due to small size and variable location.

Mar 24, 2025Z-1689-2025—open, classified

Boston Scientific has identified that IceSeedTM CX needles manufactured between April 2024 and February 2025 have been programmed with DEMO settings instead of Commercial settings (see Affected Product Listing). Upon initial connection of an IceSeed CX needle to the Cryoablation System, the user will be prompted to perform the Needle Integrity and Functionality Test (NIT) per standard protocols. The affected needles perform as intended unless they are disconnected and reconnected to any channel after testing. In this case, the Cryoablation System will prompt re-execution of the NIT.

Mar 24, 2025Z-1686-2025—open, classified

Boston Scientific has identified that IceSeedTM CX needles manufactured between April 2024 and February 2025 have been programmed with DEMO settings instead of Commercial settings (see Affected Product Listing). Upon initial connection of an IceSeed CX needle to the Cryoablation System, the user will be prompted to perform the Needle Integrity and Functionality Test (NIT) per standard protocols. The affected needles perform as intended unless they are disconnected and reconnected to any channel after testing. In this case, the Cryoablation System will prompt re-execution of the NIT.

Mar 24, 2025Z-1687-2025—open, classified

Boston Scientific has identified that IceSeedTM CX needles manufactured between April 2024 and February 2025 have been programmed with DEMO settings instead of Commercial settings (see Affected Product Listing). Upon initial connection of an IceSeed CX needle to the Cryoablation System, the user will be prompted to perform the Needle Integrity and Functionality Test (NIT) per standard protocols. The affected needles perform as intended unless they are disconnected and reconnected to any channel after testing. In this case, the Cryoablation System will prompt re-execution of the NIT.

Mar 24, 2025Z-1688-2025—open, classified

Boston Scientific has identified that IceSeedTM CX needles manufactured between April 2024 and February 2025 have been programmed with DEMO settings instead of Commercial settings (see Affected Product Listing). Upon initial connection of an IceSeed CX needle to the Cryoablation System, the user will be prompted to perform the Needle Integrity and Functionality Test (NIT) per standard protocols. The affected needles perform as intended unless they are disconnected and reconnected to any channel after testing. In this case, the Cryoablation System will prompt re-execution of the NIT.

Dec 20, 2024Z-1027-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1024-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1034-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1035-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1030-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1029-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1032-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1036-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1037-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1026-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1025-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1031-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1028-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 20, 2024Z-1033-2025—open, classified

Reported Outer sheath distal black tip detaching from the device can remain around the stent saddle, preventing proper expansion, resulting in prolongation of the procedure to exchange the device for a new one.

Dec 12, 2024Z-0825-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Dec 12, 2024Z-0822-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Dec 12, 2024Z-0826-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Dec 12, 2024Z-0823-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Dec 12, 2024Z-0824-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Dec 12, 2024Z-0827-2025—open, classified

A subset of devices from the ACCOLADE Family of Pacemakers and CRT-Ps, built before September 2018, have an increased potential to initiate Safety Mode during telemetry or other normal, higher-power operations due to latent high battery impedance.

Oct 28, 2024Z-0531-2025—open, classified

Potential for mislabeled packaging in which a device labeled as a Pressure Regulating Balloon (UPN 72400024) which instead contained a Control Pump (UPN 72400098)

Oct 28, 2024Z-0530-2025—open, classified

Potential for mislabeled packaging in which a device labeled as a Pressure Regulating Balloon (UPN 72400024) which instead contained a Control Pump (UPN 72400098)

Oct 10, 2024Z-0303-2025—open, classified

Boston Scientific is updating the instructions for use of their POLARx and POLARx FIT Cryoablation Balloon Catheters related to Atrio-esophageal Fistula Risk.

FDA Establishments (1)

Establishments registered with the FDA under this company group, matched by name.

  • Boston Scientific Corporation Mississauga Ontario · CA FEI 3019751610