DE3933459A1 - Biomedical implant production equipment - uses computer tomographic image to generate implant profile for component mfr. - Google Patents
Biomedical implant production equipment - uses computer tomographic image to generate implant profile for component mfr.Info
- Publication number
- DE3933459A1 DE3933459A1 DE3933459A DE3933459A DE3933459A1 DE 3933459 A1 DE3933459 A1 DE 3933459A1 DE 3933459 A DE3933459 A DE 3933459A DE 3933459 A DE3933459 A DE 3933459A DE 3933459 A1 DE3933459 A1 DE 3933459A1
- Authority
- DE
- Germany
- Prior art keywords
- sections
- implant
- converter
- computer
- machine
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
Classifications
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B23/00—Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes
- G09B23/28—Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes for medicine
- G09B23/286—Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes for medicine for scanning or photography techniques, e.g. X-rays, ultrasonics
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- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
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- A61F2/28—Bones
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- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/02—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for mounting on a work-table, tool-slide, or analogous part
- B23Q3/10—Auxiliary devices, e.g. bolsters, extension members
- B23Q3/103—Constructional elements used for constructing work holders
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- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
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- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
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- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
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Abstract
Description
Die rechnergestützte Rekonstruktion biomedizinischer Objekte auf der Basis bildgebender Verfahren der Medizin (insbesondere Computer-Tomographie, CT) ist derzeit noch Gegenstand der Forschung und steht nur teilweise auch bereits kommerziell zur Verfügung. Ziel der Rekonstruktion sind vor der Operation eines Patienten bereits gefertigte, individuell angepaßte Implantate als Ersatze sowie auch individuell gefertigte Modelle zur Operationsplanung. Damit sind dann bessere Paßformen und kürzere Operationszeiten möglich, offenbare Vorteile gegenüber herkömmlichen Verfahren, bei denen individuelle Implantate nicht zur Verfügung stehen, sondern nur grob vorgefertigte oder welche mit Standardmaßen. Die Verwendung des im Rahmen dieser Erfindung gemeinten biokompatiblen Materials soll bewirken, daß der Originalknochen mit der Zeit in das biokompatible Implantat hineinwachsen kann. Im Hinblick auf dieses Ziel ergeben sich ganz neue Aspekte, so daß die Kombination der bekannten Verfahren mit diesen Neuerungen zu der hier verfaßten Erfindung führt.Computer-aided reconstruction of biomedical objects on the basis of imaging Medical procedure (especially computer tomography, CT) is currently still Subject of the research and is only partially commercially available. The aim of the reconstruction is to make individual, already made before the operation of a patient adapted implants as replacements as well as individually made models for Operation planning. This means better fits and shorter operating times possible, obvious advantages over conventional methods in which individual Implants are not available, but only roughly prefabricated or which ones with Standard dimensions. The use of the biocompatible meant in the context of this invention Materials are said to cause the original bone to become biocompatible over time Implant can grow into it. With this goal, completely new aspects arise, so that the combination of the known methods with these innovations to the one written here Invention leads.
Bei der rechnergestützten Herstellung werden die Objekte aus gestapelten Scheiben gefertigt, deren Umrisse den Objektkonturen im Computer-Tomogramm entsprechen. Aus den Grauwertmatrizen der CT-Bilder gewinnt man rechnergestützt durch Kantendetektion die Koordinaten von Konturlinien, die den Übergang von Knochenmaterial zu Weichteilen repräsentieren. Mit einem Graphikeditor werden die Koordinaten im Bedarfsfall ergänzt bzw. geändert, wo beispielsweise ossäre Defekte infolge Trümmerfraktur die ursprüngliche Knochenform verändert haben. Diese Koordinaten werden zur rechnergestützten Ansteuerung von Werkzeug-(NC-)Maschinen verwendet. Vorzugsweise dient hierzu eine Laserschneidmaschine (Scheibenmodellierung). In einem anderen Verfahren dienen die Objektkonturen als Stützdaten für Flächen, denen dann Verfahrwege für Fräsmaschinen abgeleitet werden (Oberflächenmodellierung).In the computer-aided production, the objects are made from stacked disks, whose contours correspond to the object contours in the computer tomogram. From the Grayscale matrices of the CT images are obtained computer-aided by edge detection Coordinates of contour lines that indicate the transition from bone material to soft tissue represent. If necessary, the coordinates are supplemented with a graphic editor or changed where, for example, osseous defects due to comminuted fracture replaced the original Have changed bone shape. These coordinates become computer-aided control used by tool (NC) machines. Preferably one is used for this Laser cutting machine (disk modeling). In another procedure, the serve Object contours as support data for surfaces, which are then traverse paths for milling machines can be derived (surface modeling).
Jüngste Erfahrungen zeigen, daß noch kein biokompatibles Material zur Verfügung steht, das sich problemlos nach dem Verfahren der Oberflächenmodellierung herstellen bzw. nach der Herstellung bearbeiten läßt: Große Blöcke gesinterten Hydroxylapatits beispielsweise sind fast immer im Innern rissig, so daß der Rohling während der Bearbeitung auseinanderbricht. Recent experience shows that there is no biocompatible material available yet that can be easily produced using the surface modeling method or the Manufacturing can be processed: Large blocks of sintered hydroxyapatite are, for example almost always cracked inside so that the blank breaks apart during processing.
Kleinere Blöcke sind dagegen in hinreichender Qualität herstellbar. Sie sind genügend homogen und fest.Smaller blocks, on the other hand, can be produced in sufficient quality. You are enough homogeneous and firm.
Hier setzt die Erfindung ein: Sie verwirft den Ansatz, ein Objekt aus einem Block fertigen zu wolle. Statt dessen werden Bausteine verwendet, die wie ein Mauerwerk zu einem Gesamtobjekt aufgebaut werden. Ein erstes Ziel ist es, eine Rohling wie bisher - jetzt aber aus kleinen Bausteinen und daher in sich fest und nicht rissig - zu erhalten, der wie bislang der Nachbearbeitung zugeführt wird, beispielsweise der spanenden Abtragung, so daß aus dem Rohling ein orginalgetreues Implantat entsteht. Das zweite und mit dieser Erfindung insbesondere verfolgte Ziel ist es, die einzelnen Bausteine gleich so zu fertigen, daß die spätere Nachbearbeitung entfällt. Es wird daher das Prinzip der Scheibenmodellierung verwendet, und die Scheiben werden in sich noch in Bausteine unterteilt, die dann zu einem Gesamtobjekt aufgebaut werden. Der Hauptvorteil des Aufbaus eines biokompatiblen Implantats aus Bausteinen liegt darin, daß auf diese Weise große Objekte ohne innere Risse hergestellt werden können. Es ist dann unerläßlich - und für die Erfindung kennzeichnend - daß der Verband erstens räumlich originalgetreu (d. h. ohne Koordinatenverschiebung der Scheiben zueinander) und zweitens bleibend stabil aufgebaut wird.This is where the invention comes in: it rejects the approach of producing an object from a block wool. Instead, building blocks are used that are like masonry to one Overall object can be built. A first goal is to make a blank as before - but now out small building blocks and therefore inherently solid and not cracked - to get the same as before Post-processing is supplied, for example, the machining removal, so that from the Blank an implant that is true to the original is created. The second and with this invention The main aim is to manufacture the individual building blocks in such a way that the subsequent post-processing is not necessary. It therefore becomes the principle of slice modeling used, and the disks are still divided into building blocks, which then become one Overall object can be built. The main advantage of building a biocompatible Implant from building blocks is that in this way large objects without internal cracks can be produced. It is then essential - and characteristic of the invention - that first, the association is true to the original (i.e. without shifting the coordinates of the Disks to each other) and secondly is built to remain stable.
In der Grundidee der Erfindung lassen sich beide Forderungen unter Zuhilfenahme des Legoprinzips erreichen. Auch Techniken, wie Nut-Feder oder Noppen-Gegennoppen sind Hilfstechniken, damit sich die Scheiben nicht gegeneinander verschieben: Auf der einen Seite einer Scheibe sind parallel verlaufende Federn vorzusehen und auf der anderen Seite die entsprechenden Nuten. Befindet sich die Scheibe in einem kartesischen x, y- Koordinatensystem, dann lassen sich zwei Scheiben, deren Nuten und Federn ineinandergreifen in eine Richtung (beispielsweise x-Richtung) nicht mehr gegeneinander verschieben. Damit die Verschiebung auch in y-Richtung verhindert wird, sind Nuten und entsprechende Federn auch senkrecht zur bereits genannten Federschar vorzusehen. Die Federn degenerieren dann zu viereckigen Noppen (1) (Bild 1).In the basic idea of the invention, both requirements can be achieved with the aid of the Lego principle. Techniques such as tongue-and-groove or dimpled counter-knobs are also auxiliary techniques so that the disks do not move against one another: on one side of a disk, parallel springs are to be provided and the corresponding grooves on the other side. If the disk is in a Cartesian x, y coordinate system, then two disks whose grooves and tongues interlock in one direction (for example x direction) can no longer be shifted against one another. So that the displacement is also prevented in the y-direction, grooves and corresponding springs should also be provided perpendicular to the spring assembly already mentioned. The springs then degenerate into square nubs ( 1 ) ( Fig. 1).
Die so verwendete Technik verhindert ein Verschieben der Scheiben in x- und y-Richtung nach ihrem Zusammenbau. Bei ihrem Zusammenbau wird folgendermaßen, die Erfindung mit kennzeichnend verfahren:The technology used in this way prevents the panes from moving in the x and y directions their assembly. When assembled, the invention is as follows characteristic procedure:
Der Rand eines CT-Bildes mit einer beispielsweise 512 × 512 Grauwertmatrix bildet die Grenzen des lokalen, u, v-Koordinatensystems. Damit sich die lokalen ui, vi der Bildserie nicht im globalen Koordinatensystem x, y, z verschieben, brauchen die Ränder nur zur Deckung gebracht zu werden. Dies gilt dann auch für die entsprechend den CT-Bildern gefertigten Scheiben. Nach dem Schneiden der Kontur (14) liegt dann pro CT-Schicht eine Modellscheibe (2) und eine Rahmenscheibe (3) vor (Bild 2).The edge of a CT image with, for example, a 512 × 512 gray value matrix forms the limits of the local, u, v coordinate system. So that the local u i , v i of the image series do not shift in the global coordinate system x, y, z, the edges need only be made to coincide. This then also applies to the slices produced in accordance with the CT images. After cutting the contour ( 14 ), there is a model disc ( 2 ) and a frame disc ( 3 ) per CT slice ( Fig. 2).
Die Modellscheiben lassen sich ohne weiteres ohne Verschiebung aufbauen, da ihnen ein für das menschliche Auge erkennbares Bezugssystem fehlt. Anders ist dies bei den Rahmenscheiben: Ihre Ränder müssen nur, wie erwähnt, zur Deckung gebracht werden, was hinsichtlich der Handhabbarkeit trivial durchführbar ist.The model panes can be easily assembled without moving, because they are one Reference system recognizable to the human eye is missing. It is different with the Frame panes: Your edges just need to be aligned, as mentioned, what is trivial in terms of manageability.
Der Gesamtaufbau erfolgt dann nach Bild 3 folgendermaßen: Zunächst wird eine aus Bausteinen (13) bestehende Rahmenscheibe r1 (4) mit ihren Nuten auf die Federn einer Grundplatte (5) gedrückt und die entsprechende Modellscheibe m1 eingepaßt. Dann wird die Rahmenscheibe r2 (6) mit ihrem Rand bündig auf die Rahmenscheibe r1 aufgestapelt und darin wieder die entsprechende Modellscheibe m2 eingepaßt. Für die übrigen Scheiben ri, mi bis rn (7), mn (8) wird entsprechend verfahren. Dann ist gewährleistet, daß die aus Bausteinen (13) bestehenden Modellscheiben weder in x- noch in y-Richtung verschoben sind. Bild 3 soll nun das Prinzip darstellen. Eine feinere Unterteilung der Scheiben in Bausteine sowie deren Noppen ist in praxi die Regel.The overall structure is then as shown in Figure 3 as follows: First, a frame disc r 1 ( 4 ) consisting of building blocks ( 13 ) is pressed with its grooves onto the springs of a base plate ( 5 ) and the corresponding model disc m 1 is fitted. Then the frame disc r 2 ( 6 ) is stacked with its edge flush on the frame disc r 1 and the corresponding model disc m 2 is fitted therein again. The same procedure is followed for the other disks r i , m i to r n ( 7 ), m n ( 8 ). Then it is ensured that the model disks consisting of building blocks ( 13 ) are not displaced in either the x or the y direction. Figure 3 is now to illustrate the principle. In practice, a finer division of the disks into building blocks and their knobs is the rule.
Nach dem Entfernen der Rahmenscheiben bleibt das originalgetreue Modell stehen. Die Rahmenscheiben lassen sich beispielsweise durch einen Schmelzvorgang entfernen, wenn die Materialien der Modell- und Rahmenscheiben verschiedene Schmelzpunkte haben. Zwecks späterer Trennbarkeit müssen die Scheiben zweimal gefertigt werden: Erstens aus biokompatiblen Material für die Modellscheibe und zweitens aus entfernbarem (beispielsweise schmelzbarem) Material für die Rahmenscheibe.After removing the frame panes, the original model remains. The Frame panes can be removed, for example, by a melting process when the The materials of the model and frame panes have different melting points. For the purpose of Later separability, the panes have to be made twice: First, from biocompatible material for the model window and secondly made of removable (for example meltable) material for the frame pane.
Nach dem zuvor Gesagten entstehen Implantate nach der Scheibenmodellierung, die an sich bekannt ist /1/. Neu ist die Verwendung des Nut/Feder-Prinzips, das zusammen mit entfernbaren Rahmenscheiben als Hilfstechnik zur Koordinatenkonsistenz verwendet wird. Neben diesen voraussetzenden Hilfstechniken ist der Kern der Erfindung die Unterteilung der Scheiben in Bausteine. Beispielsweise wird eine viereckige Scheibe von 100 × 100 × 3 mm unterteilt in 100 Stück 10 × 10 × 3 mm große Bausteine. Erst auf der Basis dieser Idee wird ein Verfahren möglich, da den Aufbau großer Implantate aus derzeit verfügbarem biokompatiblen Material ermöglicht. Denn kleine Bausteine aus diesem Material sind hinreichend fest, große dagegen nicht.According to what has been said above, implants are created according to disk modeling, which is known per se / 1 /. What is new is the use of the tongue and groove principle, which is used together with removable frame washers as an auxiliary technique for coordinate consistency. In addition to these auxiliary techniques, the core of the invention is the division of the disks into building blocks. For example, a square disk of 100 × 100 × 3 mm is divided into 100 pieces 10 × 10 × 3 mm in size. A method is only possible on the basis of this idea, since it enables large implants to be built from the currently available biocompatible material. Because small building blocks made of this material are sufficiently strong, but large ones are not.
Überraschenderweise ergibt sich ein weiterer Vorteil: Wenn man Bausteine teilweise hohl fertigt, ergibt sich die Möglichkeit der Anpassung des spezifischen Gewichts vom biokompatiblen (Ersatz-) Material zum (Original-) Knochenmaterial. Ein möglichst originalgetreuer Ersatz ist das erstrebte Ziel. Dies gilt für die Geometrie und ebenso für das Material, weshalb auch die Anpassung des spezifischen Gewichts - bei Stirnimplantaten beispielsweise - mit von ausschlaggebender Bedeutung ist. Das biokompatible Hydroxylapatit hat beispielsweise ein höheres spezifisches Gewicht als Knochensubstanz. Die Bausteine können beispielsweise dadurch mit Hohlräumen (9) gefertigt werden, daß man tiefere Nuten vorsieht, als die entsprechenden Federn ausfüllen (Bild 4).Surprisingly, there is another advantage: If you partially manufacture blocks hollow, there is the possibility of adapting the specific weight from the biocompatible (replacement) material to the (original) bone material. The aim is to find a replacement that is as true to the original as possible. This applies to the geometry as well as to the material, which is why the adjustment of the specific weight - for example in the case of end implants - is of crucial importance. The biocompatible hydroxyapatite, for example, has a higher specific weight than bone substance. The blocks can be made with cavities ( 9 ), for example, by providing deeper grooves than filling the corresponding springs ( Fig. 4).
Die Verwendung des Nut-/Feder-Prinzips hat die willkommene Nebenwirkung, daß die Scheiben damit sehr einfach für den Schneidvorgang fixiert und nach dem Schneidvorgang wieder leicht abgenommen werden können, was bisher gerade bei sehr dünnen Scheiben unbefriedigend gelöst gewesen ist, weshalb man auf die Verwendung dickerer Scheiben angewiesen gewesen ist. Sehr dünne Scheiben sind aber für glattere Oberflächen erwünscht und werden durch geringes Schichtinkrement bei der CT-Aufnahme oder durch nachgeschaltete Zwischenschichtinterpolation gewonnen.The use of the tongue and groove principle has the welcome side effect that the Discs are thus very easily fixed for the cutting process and after the cutting process can be easily removed again, which was previously the case with very thin panes has been unsatisfactorily resolved, which is why the use of thicker washers has been instructed. However, very thin disks are desirable for smoother surfaces are caused by a small slice increment in the CT scan or by subsequent Interlayer interpolation won.
Die einzelnen Bausteine (13) werden zu CT-Schichten entsprechenden Scheiben (10) mit ihren Nuten auf die Federn einer Halteplatte (11) gedrückt, so daß sie für den Schneidvorgang fixiert sind. Die Halteplatte selbst wird von den Pratzen (12) des Verfahrtisches einer Laserschneidmaschine festgehalten (Bild 5). Es wird mit solcher Energie und Fokussierung gefahren, daß die Knochenkonturen innerhalb der Scheiben geschnitten, die Halteplatte aber verschont (oder nur leicht angeritzt) wird. Sie darf nicht durchschnitten werden, da sonst ihre Haltefunktion verloren wäre. Die Haltefunktion ist nötig, da die Scheiben sonst unkontrolliert vom Verfahrtisch fallen oder kleine Strukturen bei der Verwendung einer Absaugvorrichtung weggesogen werden.The individual blocks ( 13 ) are pressed with their grooves onto discs ( 10 ) corresponding to CT slices onto the springs of a holding plate ( 11 ), so that they are fixed for the cutting process. The holding plate itself is held in place by the claws ( 12 ) on the travel table of a laser cutting machine ( Fig. 5). It is driven with such energy and focus that the bone contours are cut within the discs, but the holding plate is spared (or only slightly scratched). It must not be cut, otherwise its holding function would be lost. The holding function is necessary, as otherwise the panes fall off the travel table in an uncontrolled manner or small structures are sucked away when using a suction device.
Von Scheibe zu Scheibe versetzte Bausteine können die Stabilität beim späteren Aufbau des 3D-Modells bzw. Implantats erhöhen. Nach dem Schneiden werden die aus Bausteinen bestehenden Scheiben wie oben besprochen gestapelt. Die Stabilität kann in vielen Fällen bereits hinreichen, wenn nur Modelle zur Veranschaulichung oder Operationsplanung nötig sind. Bei Implantaten wird eine noch höhere Stabilität verlangt, was durch eine zusätzliche Verklebung erfolgt. Die zusätzliche Verklebung bewirkt dann eine Haltbarkeit, die die homogenen Materialien sogar übertreffen kann. (Dieser Effekt ist ja beispielsweise von Leimholzplatten her bekannt.) Die Bauteile sind durch ihre Nuten und Federn fest aneinandergepreßt, so daß keine andere, den weiteren zügigen Aufbau des Implantats verzögernde Vorrichtung zur Fixierung der Bauteile während des Abbindens des Klebers vorgesehen werden muß. Hierin liegt ein weiterer Vorteil des Aufbaus nach dem Nut/Federn- Prinzip. Building blocks that are offset from pane to pane can improve the stability when later building the Increase 3D model or implant. After cutting, they are made of building blocks existing disks stacked as discussed above. The stability can in many cases already sufficient if only models for illustration or operation planning are necessary are. Even greater stability is required for implants, which is supported by an additional one Gluing takes place. The additional gluing then brings about a durability that the even surpass homogeneous materials. (This effect is, for example, from Glued wood boards ago.) The components are fixed by their grooves and tongues pressed against each other so that no other, the rapid construction of the implant retarding device for fixing the components during the setting of the adhesive must be provided. This is another advantage of the structure after the tongue and groove Principle.
Überraschend ergibt sich nach den vorangehenden Betrachtungen noch ein weiterer Aspekt:Surprisingly, there is another aspect after the above considerations:
Wurde bislang von künstlichem biokompatiblen Material ausgegangen, so lassen sich die angestellten Betrachtungen mit Vorteil auch auf natürliches Material übertragen. Nämlich immer dann, wenn nicht genügend große Rohlinge aus einem Stück zur Verfügung stehen.So far, if artificial biocompatible material was assumed, the transferred considerations with advantage also to natural material. Namely whenever there are not enough large blanks available from one piece.
Der Aufbau und die Stabilisierung von 3D-Scheibenmodellen ist mit dem dargelegten Verfahren sowie mit der beschriebenen Anordnung gelöst.The construction and stabilization of 3D disc models is with that Method and solved with the arrangement described.
Es wurde allerdings davon ausgegangen, daß der Aufbau manuell erfolgt. Darin liegt der Engpaß des Gesamtverfahrens, das mit seinen Teilkomponenten, nämlich erstens CT, zweitens Konturdetektion, drittens 3D-Scheibenmodellierung, viertens Fertigung aus Bausteinen jeweils rechnergestützt und vollautomatisch erfolgt. Im fünften und letzten Schritt wird die Verfahrenskette durch den Einsatz eines Roboters zu einem integrierten Gesamtsystem geschlossen, in dem keine manuelle Tätigkeit mehr nötig ist. Da das Koordinatensystem rechnerintern bekannt und konsistent ist, benötigt man beim Aufbau mit einem rechnergesteuerten Roboter im Prinzip auch keine Rahmenscheiben. Sie können (und für den Allgemeinfall müssen sie) aber auch hier beim Aufbau sozusagen als Stützmauer dienen. Die Nuten/Federn der Bausteine, die ursprünglich nur als Fixiermöglichkeit der Bausteine untereinander gedacht sind, dienen jetzt auch als Angriffskörper für die Robotergreifer.However, it was assumed that the setup would be done manually. This is where Bottleneck of the overall process, that with its sub-components, namely CT first, second Contour detection, thirdly 3D disk modeling, fourthly production from building blocks computer-based and fully automatic. In the fifth and final step, the Process chain through the use of a robot to form an integrated overall system closed, in which manual activity is no longer necessary. Because the coordinate system Known internally and consistently in the computer, you need it when building with one computer-controlled robots in principle also no frame panes. You can (and for that In general, they must also serve as a retaining wall during the construction. The Grooves / tongues of the blocks, which were originally only used to fix the blocks with each other are now also used as attack bodies for the robot grippers.
Claims (38)
- a) einen Bildgeber zur Erzeugung der das Organ repräsentierenden Primärdaten,
- b) einen Wandler zur Überführung der Primärdaten in Verfahrwegdaten von Werkzeugmaschinen,
- c) eine Werkzeug-(NC-)Maschine, die Teilstücke des Implantats fertigt,
- d) einen Mechanismus zur Zusammenfügung der Teilstücke zu einem Implantat.
- a) an image generator for generating the primary data representing the organ,
- b) a converter for converting the primary data into travel data of machine tools,
- c) a tool (NC) machine that produces sections of the implant,
- d) a mechanism for joining the sections into an implant.
- a) einen Bildgeber zur Erzeugung der das Organ repräsentierenden Primärdaten,
- b) einen Wandler zur Überführung der Primärdaten in Verfahrwegdaten von Werkzeugmaschinen,
- c) eine Werkzeugmaschine, die Teilstücke des Implantats fertigt,
- d) einen Mechanismus zur Zusammenfügung der Teilstücke zu einem Implantat.
- a) an image generator for generating the primary data representing the organ,
- b) a converter for converting the primary data into travel data of machine tools,
- c) a machine tool that produces sections of the implant,
- d) a mechanism for joining the sections into an implant.
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DE3933459A DE3933459A1 (en) | 1989-10-06 | 1989-10-06 | Biomedical implant production equipment - uses computer tomographic image to generate implant profile for component mfr. |
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DE3933459A1 true DE3933459A1 (en) | 1991-04-18 |
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DE3933459A Withdrawn DE3933459A1 (en) | 1989-10-06 | 1989-10-06 | Biomedical implant production equipment - uses computer tomographic image to generate implant profile for component mfr. |
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