-
公开(公告)号:US20240359023A1
公开(公告)日:2024-10-31
申请号:US18683963
申请日:2022-08-18
发明人: Thomas DOERR , Ingo WEISS
CPC分类号: A61N1/39622 , A61N1/3621 , A61N1/37217 , A61N1/3925
摘要: An implantable system for providing anti-tachycardia and/or shock therapy, comprising an implantable pacing device, in particular an implantable leadless pacemaker, and an implantable cardioverter defibrillator, in particular a non-transvenous implantable cardioverter defibrillator, wherein the implantable pacing device is configured to detect a tachycardia and to provide anti-tachycardia pacing, wherein the implantable pacing device is further configured to signal an unavailability of anti-tachycardia pacing to the implantable cardioverter defibrillator, and wherein the implantable cardioverter defibrillator is configured, in response to the signal of the implantable pacing device, to adjust predetermined shock therapy parameters and/or to send a message to a remote monitoring system. A computer implemented method for providing anti-tachycardia and/or shock therapy, a computer program and a computer readable data carrier are also provided.
-
公开(公告)号:US20240281396A1
公开(公告)日:2024-08-22
申请号:US18570162
申请日:2022-06-09
发明人: Thomas DOERR , Ulrich FEESE
CPC分类号: G06F13/382 , A61N1/37229 , A61N1/37254 , A61N1/3787 , G06F13/4282 , H04M1/0274 , G06F2213/0042
摘要: A communication adapter and a computer implemented method for use with an implantable medical device, in particular a pacemaker, a defibrillator and/or a neuro-stimulator, for transferring data between the implantable medical device and a mobile device, in particular a smartphone or tablet computer. In addition, the invention relates to a protective case, a cable and a connector each comprising the communication adapter.
-
3.
公开(公告)号:US20240280377A1
公开(公告)日:2024-08-22
申请号:US18572015
申请日:2022-07-12
CPC分类号: G01C22/006 , A61B5/112 , A61B5/7239 , A61B5/725 , A61B2562/0219
摘要: A medical device for a patient's body includes an accelerometer unit and a processor which are electrically interconnected. The patient's body has two orthogonal axes (YP, ZP). The first orthogonal axis (YP) is given by the craniocaudal or similar axis of the patient's body and the second orthogonal axis (ZP) is given by the dorsoventral or similar axis of the patient's body. The accelerometer unit is configured to determine at least 2-dimensional acceleration data (YD-data, ZD-data) over time along the first orthogonal axis (YP) and the second orthogonal axis (ZP).
There is also a respective method for determining the number of steps made by a patient using a medical device, a computer program product and a computer readable data carrier.-
公开(公告)号:US12068075B2
公开(公告)日:2024-08-20
申请号:US17284254
申请日:2019-09-23
发明人: James Horton , Hans-Juergen Wildau , Juergen Koeppel , Uwe Kamenz , Thomas Trenz , Enrico Stephan , Thomas Spiller , Thorsten Wenzlaff
CPC分类号: G16H40/67 , A61N1/37252 , G16H40/63
摘要: In a method for initiating a data transfer from an implantable medical device a relay data request is generated at a remote device, the relay data request containing an implant interrogation request representing a request for the implantable medical device to create an interrogation data set. The relay data request is transferred to a patient device, and a communication link between the patient device and the implantable medical device is established to transmit said implant interrogation request to the implantable medical device. An implant interrogation response is transferred from the implantable medical device to the patient device, the implant interrogation response representing a response from the implantable medical device containing said interrogation data set. The implant interrogation response is transferred from the patient device to the remote device.
-
公开(公告)号:US20240252832A1
公开(公告)日:2024-08-01
申请号:US18560494
申请日:2022-06-02
发明人: Thomas DOERR
IPC分类号: A61N1/372
CPC分类号: A61N1/37254 , A61N1/37217 , A61N1/37235 , A61N1/37264 , A61N1/37276
摘要: The invention relates to an implantable medical device, in particular a diagnostic monitoring device, a pacemaker, a defibrillator and/or a neuro-stimulator, comprising a diagnostic and/or therapeutic control unit, a wireless communication interface, operating in a frequency band and/or using a communication protocol supported by consumer mobile communications devices, in particular smartphones and/or tablet computing devices, a first memory area, in which executable code for controlling the diagnostic and/or therapy control unit is stored, and a second memory area, in which executable code for controlling the wireless communication interface is stored, wherein the software and/or hardware of the wireless communication interface is configured to update the executable code of the wireless communication interface via the wireless communication interface. The invention further relates to an implant communication system, a method for updating an executable code of an implantable medical device and a computer program.
-
6.
公开(公告)号:US20240226577A1
公开(公告)日:2024-07-11
申请号:US18572886
申请日:2022-06-08
发明人: Joachim ELSNER , Juergen KOEPPEL , Emanuel BIERSCHNEIDER , Wolfgang GARTZ , Uwe KAMENZ , Uwe STUERMER , Enrico STEPHAN , Gunnar GORECKI
IPC分类号: A61N1/372 , H04B17/309
CPC分类号: A61N1/37223 , H04B17/309
摘要: A communication system for wireless data transmission between an implantable medical device (IMD) and an external device and a respective communication method are disclosed aiming at the increase of longevity of an IMD energy source. The communication system comprises a communication unit and a processor. The IMD is configured to monitor a bodily parameter of a patient and/or is configured to deliver a therapy signal to the patient, wherein the IMD comprises a transceiver module configured to exchange the data with the communication unit of the external device in an uplink direction from the transceiver module to the communication unit and in a downlink direction from the communication unit to the transceiver module. Further, a respective computer program product and computer readable data carrier is described.
-
公开(公告)号:US20240194357A1
公开(公告)日:2024-06-13
申请号:US18286817
申请日:2022-04-07
发明人: James Horton , Lauren Kraiter , Andrew B. Kibler , Andreas Gute , Adrian Kimber , Brian Hills , Warren Dabney , Sean Slee
摘要: The present invention relates to a system for remote patient monitoring. The system comprises at least one medical device, a patient remote device, a remote monitoring server device (RMS), and a health care professional (HCP) remote device. The at least one medical device is configured to automatically collect physiological data of a patient and transmit the collected physiological data of the patient to the RMS via the patient remote device. The RMS is configured to interface with the HCP remote device via a healthcare professional interface comprising a web-based portal and/or an app-based portal to allow a health care professional to access the collected physiological data of the patient on the RMS. In this way, it is possible to provide continuous remote monitoring of physiological data from a medical implant with no patient interaction required. The monitoring data is available to physicians via web-based and/or app-based user portal on-demand. The RMS may provide frequent (e.g. daily) automatic reporting of physiologic measurements e.g. sleep impairment, activity levels, core temperature for fever (e.g. potential infections).
-
8.
公开(公告)号:US20240185996A1
公开(公告)日:2024-06-06
申请号:US18285066
申请日:2022-03-30
发明人: Rainer Joerg Grosskopf , James Horton , Thorsten Wenzlaff , Dirk Kleeblatt , Lauren Kraiter , Andrew B. Kibler
摘要: A system includes at least one medical device, a remote monitoring server (RMS), at least one patient remote device (PR) and at least one health care professional (HCP) remote device (CP). The system is configured such that one CP establishes a communication session connecting the one CP via the RMS and the PR with the chosen medical device by establishing a first bidirectional communication connection of the one CP and the RMS, triggering the RMS to establish a second bidirectional communication connection of the RMS and the PR corresponding to the chosen medical device and to establish a third bidirectional communication connection of the PR and the chosen medical device. The system is configured to provide real-time remote programming and/or interrogation of the chosen medical device using the one CP via the RMS and the corresponding PR, and to maintain continuous communication connections.
-
9.
公开(公告)号:US20240165415A1
公开(公告)日:2024-05-23
申请号:US18552573
申请日:2022-03-14
CPC分类号: A61N1/37282 , G06F9/5061 , G16H40/67
摘要: The invention is generally directed to a system having a network of connected elements comprising a remote monitoring server (RMS), at least one patient remote device (PR), at least one health care professional (HCP) remote device (CP), and at least one medical device, wherein each of the elements of the system comprises a dedicated communication module, wherein the communication modules of the RMS, the at least one PR and the at least one CP are configured to establish and maintain a communication connection between each other, wherein the communication modules of the at least one medical device and of the at least one PR are configured to establish and maintain a communication connection between each other, wherein each of the system's elements comprises a dedicated processing unit, a dedicated data memory module, and a dedicated energy storage.
-
公开(公告)号:US20240156411A1
公开(公告)日:2024-05-16
申请号:US18550361
申请日:2022-02-16
发明人: Joachim ELSNER , Olaf SKERL , Franziska WEGERICH
IPC分类号: A61B5/00 , A61B5/02 , A61B5/0205 , A61B5/021 , A61B5/024 , A61B5/0245 , A61B5/029 , A61B5/053 , A61B5/08 , A61B5/11 , A61B5/145 , A61B5/369
CPC分类号: A61B5/7235 , A61B5/0205 , A61B5/7271 , A61B5/02028 , A61B5/021 , A61B5/02416 , A61B5/0245 , A61B5/029 , A61B5/053 , A61B5/08 , A61B5/1102 , A61B5/14542 , A61B5/369 , A61B5/6801 , A61B5/6846
摘要: A medical device for determining an extremum of a periodic physiologic signal, comprising a computing unit, a memory unit, and a detecting unit configured to detect a periodic physiologic signal of a human or animal. In operation, the device performs the following steps: detecting a periodic physiologic signal with the detecting unit; dividing the periodic physiologic signal into a plurality of equally long intervals having an interval length, wherein the interval length is chosen such that it is longer than an expected maximum periodic time of the periodic physiologic signal; determining an absolute maximum and/or an absolute minimum of the periodic physiologic signal within each interval; calculating an average value of the determined absolute maxima and/or an average value of the determined absolute minima; storing or outputting the calculated average values of the determined absolute maxima and/or the determined absolute minima as extremum of the periodic physiologic signal.
-
-
-
-
-
-
-
-
-