Read this first: MAUDE report counts cannot be used to compute incidence rates or compare device safety. Reporting is incomplete, duplicated, and spikes with publicity; there is no denominator of devices in use. The peer line shows reporting volume for the average device in the same FDA product code — a reporting baseline, not a risk measure.
| Month | This device (reports) | Product-code average (reports per device) |
|---|---|---|
| 2019-02 | 0 | 1 |
| 2019-03 | 0 | 2.29 |
| 2019-04 | 0 | 3.05 |
| 2019-05 | 0 | 1 |
| 2019-06 | 0 | 1 |
| 2019-07 | 0 | 2.13 |
| 2019-10 | 0 | 1.42 |
| 2019-11 | 0 | 1 |
| 2019-12 | 0 | 1 |
| 2020-02 | 0 | 1 |
| 2020-03 | 0 | 1.25 |
| 2020-07 | 0 | 1.69 |
| 2020-08 | 0 | 4 |
| 2020-09 | 0 | 1 |
| 2020-10 | 0 | 1 |
| 2020-12 | 0 | 1.36 |
| 2021-01 | 0 | 1 |
| 2021-02 | 0 | 1 |
| 2021-03 | 0 | 1 |
| 2021-04 | 0 | 3 |
| 2021-05 | 0 | 1 |
| 2021-07 | 0 | 1 |
| 2021-08 | 0 | 1 |
| 2021-09 | 0 | 1.29 |
| 2021-10 | 0 | 1.38 |
| 2021-11 | 0 | 1 |
| 2021-12 | 0 | 1 |
| 2022-01 | 0 | 1 |
| 2022-02 | 0 | 1.43 |
| 2022-03 | 0 | 1.14 |
| 2022-04 | 0 | 1 |
| 2022-05 | 0 | 1 |
| 2022-06 | 0 | 1.29 |
| 2022-07 | 0 | 1 |
| 2022-08 | 0 | 1 |
| 2022-09 | 0 | 1.33 |
| 2022-10 | 0 | 1.2 |
| 2022-11 | 0 | 1 |
| 2022-12 | 0 | 1.31 |
| 2023-01 | 0 | 1 |
| 2023-02 | 0 | 1.25 |
| 2023-03 | 1 | 2.81 |
| 2023-04 | 0 | 1.57 |
| 2023-05 | 0 | 1.77 |
| 2023-06 | 0 | 1.43 |
| 2023-07 | 0 | 1.39 |
| 2023-08 | 0 | 2.33 |
| 2023-09 | 0 | 2 |
| 2023-10 | 0 | 1.79 |
| 2023-11 | 0 | 2.22 |
| 2023-12 | 0 | 1.17 |
| 2024-01 | 0 | 1.17 |
| 2024-02 | 0 | 1 |
| 2024-03 | 0 | 1.25 |
| 2024-04 | 0 | 1.25 |
| 2024-05 | 0 | 1 |
| 2024-06 | 0 | 1 |
| 2024-07 | 0 | 1.4 |
| 2024-08 | 0 | 1.69 |
| 2024-09 | 0 | 1.25 |
| 2024-10 | 0 | 1.33 |
| 2024-11 | 0 | 1.89 |
| 2024-12 | 0 | 1.22 |
| 2025-01 | 0 | 4.67 |
| 2025-02 | 0 | 3.29 |
| 2025-03 | 0 | 2.41 |
| 2025-04 | 0 | 2 |
| 2025-05 | 0 | 2.36 |
| 2025-06 | 0 | 4.95 |
| 2025-07 | 0 | 5.46 |
| 2025-08 | 0 | 7.53 |
| 2025-09 | 0 | 4.34 |
| 2025-10 | 0 | 5.1 |
| 2025-11 | 0 | 3.92 |
| 2025-12 | 0 | 7 |
| 2026-01 | 0 | 6.47 |
| 2026-02 | 0 | 3.8 |
| 2026-03 | 0 | 3.44 |
| 2026-04 | 0 | 3.62 |
| 2026-05 | 0 | 6.38 |
| 2026-06 | 0 | 3 |
1 linked report narrative available — no AI summary generated yet.
| Initiated | Recall # | Class | Status | Reason | Quantity | Link basis |
|---|---|---|---|---|---|---|
| 2025-08-28 | Z-2661-2025 | Class I | Open, Classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room.Distribution: Worldwide distribution - US Nationwide and the countries of United Arab Emirates, Armenia, Angola, Argentina, Austria, Australia, Azerbaijan, Bosnia and Herzegovina, Bangladesh, Belgium, Bulgaria, Bahrain, Brunei Darussalam, Brazil, Botswana, Belarus, Canada, Switzerland, Chile, China, Colombia, Cyprus, Czechia, Germany, Denmark, Algeria, Ecuador, Estonia, Egypt, Spain, Ethiopia, Finland, Faroe Islands, France, United Kingdom of Great Britian and Northern Ireland, Georgia, Greece, Hong Kong, Croatia, Hungary, Canary Islands, Indonesia, Ireland, Israel, India, Iran, Iceland, Italy, Jordan, Japan, Kenya, Korea, Kuwait, Kazakhstan, Lebanon, Sri Lanka, Lithuania, Luxembourg, Latvia, Morocco, Monaco, Moldova, Montenegro, Republic of North Macedonia, Myanmar, Mongolia, Macao, Malta, Maldives, Mexico, Malaysia, Mozambique, Nigeria, Netherlands, Norway, Nepal, New Zealand, Oman, Panama, Peru, Philippines, Pakistan, Poland, Portugal, Paraguay, Qatar, Reunion, Romania, Serbia, Russian Federation, Saudi Arabia, Sweden, Singapore, Slovenia, Slovakia, Senegal, Syrian Arab Republic, Thailand, Turkmenistan, Tunisia, Turkey, Trinidad and Tobago, Taiwan, Tanzania, Ukraine, Uganda, Uzbekistan, Viet Nam, Kosovo, South Africa. | 56 units | code info di |
| 2025-08-28 | Z-2660-2025 | Class I | Open, Classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room.Distribution: Worldwide distribution - US Nationwide and the countries of United Arab Emirates, Armenia, Angola, Argentina, Austria, Australia, Azerbaijan, Bosnia and Herzegovina, Bangladesh, Belgium, Bulgaria, Bahrain, Brunei Darussalam, Brazil, Botswana, Belarus, Canada, Switzerland, Chile, China, Colombia, Cyprus, Czechia, Germany, Denmark, Algeria, Ecuador, Estonia, Egypt, Spain, Ethiopia, Finland, Faroe Islands, France, United Kingdom of Great Britian and Northern Ireland, Georgia, Greece, Hong Kong, Croatia, Hungary, Canary Islands, Indonesia, Ireland, Israel, India, Iran, Iceland, Italy, Jordan, Japan, Kenya, Korea, Kuwait, Kazakhstan, Lebanon, Sri Lanka, Lithuania, Luxembourg, Latvia, Morocco, Monaco, Moldova, Montenegro, Republic of North Macedonia, Myanmar, Mongolia, Macao, Malta, Maldives, Mexico, Malaysia, Mozambique, Nigeria, Netherlands, Norway, Nepal, New Zealand, Oman, Panama, Peru, Philippines, Pakistan, Poland, Portugal, Paraguay, Qatar, Reunion, Romania, Serbia, Russian Federation, Saudi Arabia, Sweden, Singapore, Slovenia, Slovakia, Senegal, Syrian Arab Republic, Thailand, Turkmenistan, Tunisia, Turkey, Trinidad and Tobago, Taiwan, Tanzania, Ukraine, Uganda, Uzbekistan, Viet Nam, Kosovo, South Africa. | 586 units | code info di |
| 2025-08-28 | Z-2664-2025 | Class I | Open, Classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room.Distribution: Worldwide distribution - US Nationwide and the countries of United Arab Emirates, Armenia, Angola, Argentina, Austria, Australia, Azerbaijan, Bosnia and Herzegovina, Bangladesh, Belgium, Bulgaria, Bahrain, Brunei Darussalam, Brazil, Botswana, Belarus, Canada, Switzerland, Chile, China, Colombia, Cyprus, Czechia, Germany, Denmark, Algeria, Ecuador, Estonia, Egypt, Spain, Ethiopia, Finland, Faroe Islands, France, United Kingdom of Great Britian and Northern Ireland, Georgia, Greece, Hong Kong, Croatia, Hungary, Canary Islands, Indonesia, Ireland, Israel, India, Iran, Iceland, Italy, Jordan, Japan, Kenya, Korea, Kuwait, Kazakhstan, Lebanon, Sri Lanka, Lithuania, Luxembourg, Latvia, Morocco, Monaco, Moldova, Montenegro, Republic of North Macedonia, Myanmar, Mongolia, Macao, Malta, Maldives, Mexico, Malaysia, Mozambique, Nigeria, Netherlands, Norway, Nepal, New Zealand, Oman, Panama, Peru, Philippines, Pakistan, Poland, Portugal, Paraguay, Qatar, Reunion, Romania, Serbia, Russian Federation, Saudi Arabia, Sweden, Singapore, Slovenia, Slovakia, Senegal, Syrian Arab Republic, Thailand, Turkmenistan, Tunisia, Turkey, Trinidad and Tobago, Taiwan, Tanzania, Ukraine, Uganda, Uzbekistan, Viet Nam, Kosovo, South Africa. | 154 units | clearance family |
| 2025-08-28 | Z-2666-2025 | Class I | Open, Classified | There is a potential for an ice blockage to form or currently exist within the magnet venting system. In the event of a quench, helium gas may be unable to escape through the designed venting paths, leading to a pressure build-up within the helium containment system. This pressure build-up could ultimately rupture the helium containment system, potentially resulting in a helium leak into the scanning room.Distribution: Worldwide distribution - US Nationwide and the countries of United Arab Emirates, Armenia, Angola, Argentina, Austria, Australia, Azerbaijan, Bosnia and Herzegovina, Bangladesh, Belgium, Bulgaria, Bahrain, Brunei Darussalam, Brazil, Botswana, Belarus, Canada, Switzerland, Chile, China, Colombia, Cyprus, Czechia, Germany, Denmark, Algeria, Ecuador, Estonia, Egypt, Spain, Ethiopia, Finland, Faroe Islands, France, United Kingdom of Great Britian and Northern Ireland, Georgia, Greece, Hong Kong, Croatia, Hungary, Canary Islands, Indonesia, Ireland, Israel, India, Iran, Iceland, Italy, Jordan, Japan, Kenya, Korea, Kuwait, Kazakhstan, Lebanon, Sri Lanka, Lithuania, Luxembourg, Latvia, Morocco, Monaco, Moldova, Montenegro, Republic of North Macedonia, Myanmar, Mongolia, Macao, Malta, Maldives, Mexico, Malaysia, Mozambique, Nigeria, Netherlands, Norway, Nepal, New Zealand, Oman, Panama, Peru, Philippines, Pakistan, Poland, Portugal, Paraguay, Qatar, Reunion, Romania, Serbia, Russian Federation, Saudi Arabia, Sweden, Singapore, Slovenia, Slovakia, Senegal, Syrian Arab Republic, Thailand, Turkmenistan, Tunisia, Turkey, Trinidad and Tobago, Taiwan, Tanzania, Ukraine, Uganda, Uzbekistan, Viet Nam, Kosovo, South Africa. | 78 units | code info di |
| 2012-09-12 | Z-2464-2012 | Class II | Terminated | When positioning the Flex Large 4 Coil (part No. 8625761) off-center in left-right direction as it is used for example for hip and shoulder imaging and, in addition at an off-center position with respect to the head-foot direction, the coil can heat up in the area of the electronic housing (white plastic lids).Distribution: Nationwide Distribution - USA including Washington, DC and AL, AK, AZ, AR, CA, CO, CT, FL, GA, HI, ID, IL, IN, IA, KS, KY, LA, MD, MA, MI, MN, MS, MO, MT, NE, NV, NH, NJ, NM, NY, NC, OH, OK, OR, PA, RI, SC, SD, TN, TX, UT, VA, WA, WV, WI and Puerto Rico. | 370 | clearance family |
| 2012-03-26 | Z-1364-2012 | Terminated | During product monitoring, Siemens has discovered that the gradient cable connections on a few systems did not meet their specifications after installation. The cable connections overheated, leading to the emission of smoke and possible material damage. | — | clearance family | |
| 2011-01-10 | Z-1401-2011 | Terminated | On some systems the gradient cable connections did not meet firm's specifications after installation | — | clearance family |
| Date | Report # | Type | Narrative | Link basis |
|---|---|---|---|---|
| 2023-03-16 | 3002808157-2023-66766 | Injury | Available | exact di |
Predicate lineage
Cited as predicate by: K123510, K123920, K123938, K130262, K130749, K132831, K132951, K133692, K140666, K141977, K143020, K152602, K163234, K170396, K170840, K181613, K191050, K220018
Lineage each submission cites, walked transitively (indented = the cited device's own predicates). Extracted from public 510(k) summary text — heuristic, and includes reference devices mentioned alongside true predicates.
| Date | Type | Outcome | Facility | Citations |
|---|---|---|---|---|
| 2014-09-25 | NAI | No action indicated | Siemens AG/Siemens Healthcare GmbH | 0 |
| 2011-06-09 | VAI | Voluntary action indicated | Siemens Healthcare GmbH | 1 |
| 2010-09-14 | NAI | No action indicated | Siemens AG/Siemens Healthcare GmbH | 0 |
- Achieva Philips Medical Systems Nederland B.V.
- Base Plate Miyabi Noras MRI products GmbH
- Breast Pad Insert H SatPad™ Sat Pad Inc.
- Breast Pad Insert SatPad™ Sat Pad Inc.
- Screw for C-Arc Noras MRI products GmbH
- Variety 16-Channel Multipurpose Coil 1.5T Noras MRI products GmbH
- "Brainlab Interface Rotating, with Marking ""51""" Noras MRI products GmbH
- "MR compatible tweezers 4,5""" Noras MRI products GmbH
- "MRI Integral ""T"" with Check Valve for MEDRAD® Spectris MR Injector" BAYER MEDICAL CARE INC.
- "MRI Integral ""T"" with Check Valve for MEDRAD® Spectris MR Injector" BAYER MEDICAL CARE INC.
- "MRI Integral ""T"" with Check Valve for MEDRAD® Spectris MR Injector" BAYER MEDICAL CARE INC.
- "MRI Integral ""T"" with Check Valve for MEDRAD® Spectris MR Injector" BAYER MEDICAL CARE INC.