The invention relates to a method for the diagnosis and treatment of aortic aneurysms through representation of the affected area of the aorta by means of an imaging method and measurement of the image for the purpose of fabricating a made-to-measure stent graft which is introduced into the aorta in the folded state and then expanded, and a device for performing said method.
The diagnosis and treatment of aortic aneurysms has increased significantly in importance over the last several years. An aortic aneurysm is a dilatation of the aorta caused by a weakness in the vessel wall. Aortic aneurysm is an atherosclerotic disease. Atherosclerosis is considered the main cause of cardiovascular diseases, which in turn are the most common cause of death in the western world. In den USA, for example, the prevalence of aortic aneurysm is approximately 1.5% in persons over 50 years of age, with an untreated aneurysm carrying a high risk of rupture. For example, the probability of an aortic aneurysm with a diameter greater than 5 cm bursting within a 5-year period is 20%, this being linked in turn to a mortality of approximately 80%.
Even up to a few years ago the diagnosis was performed exclusively by radiologists and the treatment exclusively operatively by surgeons. In more recent times an increasing interest has developed in having diagnosis and treatment carried out in a medical unit by an interdisciplinary medical team. In the optimal case the aim is to perform the treatment, for example the implantation of a stent graft, as minimally invasively as possible, that is to say interventionally using a catheter-based procedure.
According to the current prior art there is no fully integrated solution for diagnosis and treatment, simultaneously or shortly thereafter, of an aortic aneurysm. Either a medical apparatus is suitable for the diagnosis, such as a computer tomograph for example, or else it is suitable for the treatment, such as an angiography system for example.
An apparatus has become known from DE 199 01 482 which permits a patient lying on a movable patient support table to be examined in different imaging systems without changing beds. The German publication Fortschr Röntgenstr 2004: 176:56-61 “Blutflusssimulation mittels Computational-Fluid-Dynamics an aus CT-Daten rekonstruierten Aortenaneurysmata vor und nach Stent-Graft Implantation” (“Blood flow simulation using computational fluid dynamics on aortic aneurysms reconstructed from CT data before and after stent graft implantation”) discusses a solution which performs a blood flow simulation of the abdominal aorta before and after the stent implantation based on multi-detector row datasets. This solution too represents only a partial solution in the area of diagnosis and/or therapy planning.
Previously there has been known, for example, a diagnosis and therapy method wherein the aortic aneurysm is measured directly in the images with the aid of a scale in terms of length, width etc. in order to produce a more or less matching stent graft according to these dimensions and then implant same. Considering that there are located in the area of an aortic aneurysm of said type a plurality of outgoing arteries which must of course be kept free, which is to say that the stent graft must have corresponding cutouts, it is clear that a truly made-to-measure stent graft cannot usefully be manufactured in this way.
The object of the invention is therefore to create a method and a device suitable for performing said method by means of which an integrated treatment of an aortic aneurysm will be possible starting from the diagnosis through to the stent manufacture.
In order to achieve this object, in a method of the type referred to at the beginning it is provided according to the invention that a digital model of the aortic aneurysm is constructed from the images present as 3D volume data, from which digital model of the aortic aneurysm there is produced by means of iterative customizing software a digital model of the stent graft on the basis of which the stent graft is manufactured, the aim here being to manufacture the stent graft by means of an automatic or partially automated system for producing vascular prostheses from digital representations, as is already known in the other context, so that the actual therapeutic treatment can be performed through insertion of the made-to-measure stent graft thus obtained as close as possible in time relative to the diagnosis of the aortic aneurysm.
In a development of the invention it can be provided here that at the time of insertion of the stent graft image data generated during the intervention is fused with the digital model of the stent graft and/or the digital model of the aortic aneurysm in order to enable the actual position and expansion of the stent graft to be compared with the planned position and expansion and so permit an optimal positioning of the stent graft which is introduced for example by way of a catheter.
In this case a CT device, an MR device or an angiography device, as has also already been used for the diagnosis, is used to insert the stent graft.
In order to perform the method according to the invention a device is provided which is characterized by a workstation which is connected to all the imaging systems used as well as to an automatic or partially automated manufacturing station for producing the made-to-measure-stent graft, and which comprises a segmentation program for producing a digital model of the aortic aneurysm and an iterative customizing program for producing a digital model of the stent graft with the aid of the digital model of the aortic aneurysm, as well as a memory device and a display device for visually presenting the images.
The device according to the invention is a system which integrates different imaging subsystems, medical measuring equipment including coordinated user interfaces to form a medical unit in order to allow a complete aortic aneurysm procedure consisting of diagnosis, therapy planning, therapy and progress monitoring. This includes the following subsystems:
After the recording of diagnostic volume data (e.g. MR, CT, 3D rotation angiography, ultrasound), the following steps can occur in different sequences and combinations during the planning of the intervention:
The proposed system possesses the following inventive characteristics:
Following the production or selection of the stent the physician positions the stent in the aortic aneurysm. The proposed system possesses the following inventive characteristics:
The solution proposed here enables an optimal integration of diagnosis, therapy planning, therapeutic treatment, progress monitoring and documentation of the aortic aneurysm procedure.
Further advantages, features and details of the invention will emerge from the following description of an exemplary embodiment and with reference to the drawings, in which:
In order to be able to plan and manufacture a made-to-measure stent graft, there is provided according to the invention a system as indicated schematically in
In order to treat the aortic aneurysm use is made of a computer tomograph 10, a magnetic resonance tomography device 11, an ultrasound device 12 or an angiography device, for example a 2D or 3D rotation angiography device 13, with the preferably 3D volume data of an imaging device of said kind being supplied to a workstation 14, that is to say an integrated workplace. Using segmentation software 15, said workstation comprising memory devices builds a digital model 17 of the aortic aneurysm from the 3D volume data stored in the memory 16, which digital model 17 can be displayed on a display device 18.
A digital model 20 of a stent graft is created from the digital model of the aortic aneurysm by means of iterative customizing software 19, a repetition and iterative customizing being able to take place disposed through the loop 21. Following completion of the digital model of the stent graft the corresponding data can be supplied to an automatic or partially automated system 22 for producing vascular prostheses from digital representations in order to manufacture a made-to-measure stent graft corresponding to the digital model of the stent graft obtained on the basis of the digital model of the aortic aneurysm. An automatic or partially automatic system 22 for producing vascular prostheses can comprise, for example, a metal bending device, a CAD-controlled milling cutter or a plastic injection molding device or suchlike, a device of said kind being preferably arranged in the vicinity of the workstation 14, but where necessary also being networked with the workstation 14 at the premises of a manufacturer that, with the aid of the data obtained in the workstation, takes charge of the actual manufacture and is able to supply the stent graft as quickly as possible and closely linked in time with the diagnosis and planning of the stent graft, thereby ensuring that no further significant changes in the aortic aneurysm will have occurred in the meantime, in which event the stent graft would then possibly no longer fit precisely.
Number | Date | Country | Kind |
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10 2004 044 435.8 | Sep 2004 | DE | national |