BR102017011688A2 - manufacturing process and vascular dissection and anastomosis simulator - Google Patents
manufacturing process and vascular dissection and anastomosis simulator Download PDFInfo
- Publication number
- BR102017011688A2 BR102017011688A2 BR102017011688-3A BR102017011688A BR102017011688A2 BR 102017011688 A2 BR102017011688 A2 BR 102017011688A2 BR 102017011688 A BR102017011688 A BR 102017011688A BR 102017011688 A2 BR102017011688 A2 BR 102017011688A2
- Authority
- BR
- Brazil
- Prior art keywords
- silicone
- vessels
- dissection
- simulator
- manufacturing process
- Prior art date
Links
Landscapes
- Prostheses (AREA)
- Materials For Medical Uses (AREA)
Abstract
pertencente ao setor técnico de processos e artigos médico-hospitalares para treinamento e idealizado para profissionais da área médica treinar dissecção e anastomose vascular simulando a pele humana, é composto por três camadas de silicone de cura por platina (para simular a pele, tecido subcutâneo e muscular), tendo vasos com espessuras entre 0,6 mm e 3 cm, embebidos em vaselina ou outra substância igualmente adequada, imersos na camada de silicone que simula o tecido celular subcutâneo. estando os vasos embebidos em vaselina ou outra substância igualmente adequada, os mesmos não se fundem ao silicone da camada do simulador aonde estão imersos, sendo possível a dissecção dos vasos de forma semelhante ao realBelonging to the technical field of medical-hospital processes and articles for training and designed for medical professionals to train dissection and vascular anastomosis simulating human skin, it consists of three layers of platinum-curing silicone (to simulate skin, subcutaneous tissue and vessels having thicknesses between 0.6 mm and 3 cm, soaked in petroleum jelly or another equally suitable substance, immersed in the silicone layer that simulates the subcutaneous cellular tissue. the vessels being soaked in petroleum jelly or other similarly suitable substance, they do not fuse with the silicone of the simulator layer where they are immersed, making it possible to dissect the vessels similarly to the actual one.
Description
PROCESSO DE FABRICAÇÃO E SIMULADOR DE DISSECÇÃO E ANASTOMOSE VASCULAR.MANUFACTURING PROCESS AND DISSECTION SIMULATOR AND VASCULAR ANASTOMOSIS.
[01] Refere-se a presente patente de invenção ao processo de fabricação e simulador de dissecção e anastomose vascular. Pertence ao setor técnico de processos e artigos médico-hospitalares para treinamento.[01] Refers to the present invention patent to the manufacturing process and simulator of dissection and vascular anastomosis. It belongs to the technical sector of medical-hospital processes and articles for training.
[02] Em pesquisa realizada foram encontrados dois documentos de n°s US2017018206 e CA2943197 que aproximamse do presente objeto de patente, contudo nenhum deles apresenta caracteristicas idênticas ao presente processo e simulador, conforme será demonstrado.[02] In the research carried out, two documents of numbers US2017018206 and CA2943197 were found that approximate the present patent object, however none of them presents characteristics identical to the present process and simulator, as will be demonstrated.
[03] O documento US2017018206 é diferente, pois trata-se de uma estrutura composta por duas camadas de silicone tendo entre elas uma camada de fibra de poliéster, fazendo com que as três camadas se fundam. O presente invento compreende vasos de silicone e um novo processo para introduzir e desmoldar esses vasos de silicone dentro de outra camada igualmente de silicone, com a utilização de vaselina outra substância igualmente adequada, evitando que as estruturas se fundam. O documento CA2943197 refere-se a uma cápsula de silicone que envolve alguma estrutura anatômica composta de silicone em gel onde se acrescenta álcool ou outros agentes para amolecê-la e permitir a dissecção. O presente invento trata-se de um novo processo para permitir que uma estrutura feita de silicone, no caso um vaso simulado embebido em vaselina ou outra substância igualmente adequada, seja introduzido diretamente em outra estrutura também de silicone e posteriormente dissecável dessa outra estrutura, dispensando a confecção[03] The document US2017018206 is different, as it is a structure composed of two layers of silicone having between them a layer of polyester fiber, making the three layers merge. The present invention comprises silicone vessels and a new process for introducing and demolding those silicone vessels within another layer of silicone as well, with the use of petroleum jelly another equally suitable substance, preventing the structures from melting. CA2943197 refers to a silicone capsule that involves some anatomical structure composed of silicone gel where alcohol or other agents are added to soften it and allow dissection. The present invention is a new process to allow a structure made of silicone, in this case a simulated vessel soaked in petroleum jelly or another equally suitable substance, to be introduced directly into another structure also made of silicone and subsequently dissectable from that other structure, dispensing the making
Petição 870170037166, de 01/06/2017, pág. 12/19Petition 870170037166, of 06/01/2017, p. 12/19
2/3 de camadas adicionais de silicone para a proteção dos vasos .2/3 additional layers of silicone to protect the vessels.
[04] Nos dois documentos de patentes supracitados, as fibras que simulam os vasos humanos fundem-se nas camadas de silicone, podendo provocar o rompimento desses vasos no momento da simulação da dissecção. Quando não rompidos, os vasos saem com resíduos da camada de silicone onde estão imersos, dificultando o procedimento da dissecção, tornando os objetos daqueles requerimentos muito menos práticos e com maior custo de produção que o objeto da presente patente. Devido a técnica inovadora com a utilização de vaselina na superfície do vaso sintético, a dissecção dos tecidos adjacentes e do vaso simula melhor a realidade.[04] In the two aforementioned patent documents, the fibers that simulate human vessels merge into the layers of silicone, which may cause the rupture of these vessels at the time of simulation of dissection. When not broken, the vessels leave with residues of the silicone layer where they are immersed, making the dissection procedure difficult, making the objects of those requirements much less practical and with a higher production cost than the object of the present patent. Due to the innovative technique with the use of petroleum jelly on the surface of the synthetic vessel, the dissection of adjacent tissues and the vessel better simulates reality.
[05] O simulador, objeto do presente pedido de patente é composto por três camadas de silicone de cura por platina (para simular a pele, tecido subcutâneo e muscular), tendo vasos com espessuras entre 0,6 mm e 3 cm, embebidos em vaselina ou outra substância igualmente adequada, imersos na camada de silicone que simula o tecido celular subcutâneo. Estando os vasos embebidos em vaselina ou outra substância igualmente adequada, os mesmos não se fundem ao silicone da camada do simulador e é possível a dissecção dos vasos de forma semelhante ao real.[05] The simulator, object of the present patent application, consists of three layers of platinum-curing silicone (to simulate the skin, subcutaneous and muscular tissue), having vessels with thicknesses between 0.6 mm and 3 cm, embedded in petroleum jelly or another equally suitable substance, immersed in the silicone layer that simulates the subcutaneous cellular tissue. Since the vessels are soaked in petroleum jelly or another equally suitable substance, they do not fuse with the silicone in the simulator layer and it is possible to dissect the vessels in a similar way to the real one.
[06] Os vasos sintéticos são produzidos através do pincelamento do material de silicone em um molde de superfície cilíndrica. Para realizar os vasos artificiais de diversas espessuras, são utilizadas quantidades diferentes de silicone, sendo que quanto mais silicone[06] Synthetic vessels are produced by brushing the silicone material in a mold with a cylindrical surface. To make artificial vessels of different thicknesses, different amounts of silicone are used, the more silicone
Petição 870170037166, de 01/06/2017, pág. 13/19Petition 870170037166, of 06/01/2017, p. 13/19
3/3 for despendido em cada molde, mais espesso será o vaso. Dependendo do diâmetro do molde utilizado é possível realizar vasos de calibres diversos o que amplia as possibilidades de treinamento de dissecção entre outras técnicas operatórias.3/3 is spent on each mold, the thicker the vase will be. Depending on the diameter of the mold used, it is possible to make vessels of different caliber, which expands the possibilities of dissection training among other operative techniques.
[07] A figura 1 que acompanha e integra o presente relatório, representa o simulador de dissecção e anastomose vascular mostrando uma primeira camada de silicone que simula a pele, tendo em seguida uma camada de silicone representando o tecido subcutâneo onde estão imersos os vasos de silicone embebidos em vaselina ou outra substância igualmente adequada para não grudarem na camada de silicone que representa o tecido subcutâneo e por último a camada de silicone que representa a camada muscular humana.[07] Figure 1, which accompanies and integrates this report, represents the dissection and vascular anastomosis simulator showing a first layer of silicone that simulates the skin, followed by a layer of silicone representing the subcutaneous tissue where the blood vessels are immersed. silicone soaked in petroleum jelly or another substance equally suitable for not sticking to the silicone layer that represents the subcutaneous tissue and finally the silicone layer that represents the human muscle layer.
Claims (6)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
BR102017011688-3A BR102017011688A2 (en) | 2017-06-01 | 2017-06-01 | manufacturing process and vascular dissection and anastomosis simulator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
BR102017011688-3A BR102017011688A2 (en) | 2017-06-01 | 2017-06-01 | manufacturing process and vascular dissection and anastomosis simulator |
Publications (1)
Publication Number | Publication Date |
---|---|
BR102017011688A2 true BR102017011688A2 (en) | 2018-12-18 |
Family
ID=65002815
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
BR102017011688-3A BR102017011688A2 (en) | 2017-06-01 | 2017-06-01 | manufacturing process and vascular dissection and anastomosis simulator |
Country Status (1)
Country | Link |
---|---|
BR (1) | BR102017011688A2 (en) |
-
2017
- 2017-06-01 BR BR102017011688-3A patent/BR102017011688A2/en active Search and Examination
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Benítez et al. | The mechanical behavior of skin: Structures and models for the finite element analysis | |
JP6055069B1 (en) | Organ, tissue or organ model | |
ES2824529T3 (en) | Simulated dissectable tissue | |
Keown | The spark in the machine: How the science of acupuncture explains the mysteries of western medicine | |
Wang et al. | Comparison of two three-dimensional printed models of complex intracranial aneurysms for surgical simulation | |
Singh | General Anatomy-e-book | |
PT714343E (en) | METHOD OF FORMATION OF AN OCA PROTESIS | |
Hung et al. | Models of the visual system | |
Pickering | Pathogenesis of myocardial and cerebral infarction: nodular arteriosclerosis | |
BR102017011688A2 (en) | manufacturing process and vascular dissection and anastomosis simulator | |
JP7437826B2 (en) | Organ model for surgical practice | |
Burton et al. | Atlas of adult autopsy pathology | |
Niort et al. | Transmission of force to the hyoid bone during manual strangulation: Simulation using finite element numerical models | |
Ovunc et al. | Constructing an Individualized Middle Cerebral Artery Model Using 3D Printing and Hydrogel for Bypass Training | |
RU2691517C1 (en) | Simulator nose partition model for developing manual skills in rhinosurgery | |
Chanda et al. | Soft Tissue Simulants | |
CN104269091B (en) | Simulation device for scalp expansion transplantation | |
Hasegawa et al. | Fabrication of dry dura mater models for medical surgical simulator | |
JP2018010034A (en) | Organ model and production method thereof | |
San Juan | Gaetano Zumbo's anatomical wax model: From skull to cranium | |
RU2541050C1 (en) | Method for simulating arterial aneurysm | |
Price et al. | Manufacturing of anatomically accurate cerebral arteries for the brain aneurysm surgical simulator | |
CN216362003U (en) | Operation training model | |
Mitchell et al. | Histology e-Book: an illustrated colour text | |
DE202009004115U1 (en) | Models for the training of invasive techniques of medicine |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
B03A | Publication of a patent application or of a certificate of addition of invention [chapter 3.1 patent gazette] | ||
B350 | Update of information on the portal [chapter 15.35 patent gazette] | ||
B09A | Decision: intention to grant [chapter 9.1 patent gazette] | ||
B11D | Dismissal acc. art. 38, par 2 of ipl - failure to pay fee after grant in time |