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242 results about "Tentacle" patented technology

In zoology, a tentacle is a flexible, mobile, elongated organ present in some species of animals, most of them invertebrates. In animal anatomy, tentacles usually occur in one or more pairs. Anatomically, the tentacles of animals work mainly like muscular hydrostats. Most forms of tentacles are used for grasping and feeding. Many are sensory organs, variously receptive to touch, vision, or to the smell or taste of particular foods or threats. Examples of such tentacles are the eyestalks of various kinds of snails. Some kinds of tentacles have both sensory and manipulatory functions.

Porous containment device and associated method for stabilization of vertebral compression fractures

The present invention is directed to a porous or permeable containment device for implanting into the interior volume of a targeted vertebral body for use in restoring the anatomy of the targeted vertebral body. The containment device is expandable from an insertion configuration to an expanded configuration via, for example, a bone filler material. The containment device preferably permits the bone filler material to flow out of the containment device via, for example, one or more pores, one or more flow-directing tentacles, etc. so that the bone filler material may interdigitates with the surrounding bone tissue. The containment device is preferably configured to have a pre-determined, ‘dog-bone’ shape, when in the expanded configuration. The containment device preferably also includes one or more knobs or ribs to facilitate anchoring of the containment device to the surrounding bone tissue, one or more air or fluid evacuation pores to permit air or fluid from escaping from the interior volume of the containment device and / or one or more radiopacity rings or markers to enable a surgeon to locate and / or position the containment device under X-ray imaging.
Owner:DEPUY SYNTHES PROD INC

Octopus tentacle imitating adaptive capture soft manipulator and capture method thereof

The invention discloses an octopus tentacle imitating adaptive capture soft manipulator and a capture method thereof. The octopus tentacle imitating adaptive capture soft manipulator mainly comprises a tentacle, an air pipe, an electrical proportional valve, strain gages and a magnetic valve, wherein the tentacle imitates the shape of an octopus tentacle and is in an irregular strip cone shape, a tentacle protrusion with a large diameter is arranged at the end of the tentacle, groups of ellipsoidal pressure regulating cavities are evenly distributed in the tentacle, main air channels are distributed along the axle direction of the tentacle in the tentacle, each row of ellipsoidal pressure regulating cavities distributed along the axial direction corresponds to a main air channel, the main air channels do not directly pass through the ellipsoidal pressure regulating cavities and are connected with the ellipsoidal pressure regulating cavities through branch air channels, magnetic valves are arranged at the positions of the branch air channels for connecting the ellipsoidal pressure regulating cavities and the main air channels, the strain gages are placed between each two groups of the ellipsoidal pressure regulating cavities, the ellipsoidal pressure regulating cavities produce different shape changes so as to control tentacle to bend through feedback of signals of the strain gages and match between the magnetic valve and the electrical proportional valve, and the tentacle winds objects by controlling a plurality of groups of the pressure regulating cavities.
Owner:BEIJING UNIV OF CHEM TECH

Treatment method of scanning electron microscope samples of insect tentacles and appendages

The invention relates to a treatment method of scanning electron microscope samples of insect tentacles and appendages, and belongs to the technical field of treatment of experimental samples. The treatment method provided by the invention comprises the steps of anaesthetizing and dissecting insects, fixing a sample through a glutaraldehyde-formaldehyde phosphate buffer, cleaning the sample and performing gradient dehydration with ethyl alcohol on the sample so as to obtain a scanning electron microscope sample before loading. The treatment method provided by the invention has the advantages that the problems that in the earlier stage treatment of the scanning electron microscope samples of the tentacles and appendages, scales of tentacles and appendages are not fully removed, the surface of the sample is not fully cleaned, the sample is hard to soak in a fixing solution thoroughly, and the sample is crisp and is easy to snap are solved, the surface structure of the treated sample is good, the deformation and pollution are not generated, a tissue surface is fully revealed, the sample has a good conductive property, and the real condition of the surface of the sample is effectively reflected.
Owner:INST OF PLANT PROTECTION HENAN ACAD OF AGRI SCI

Processing method of instant squid

The invention relates to a processing method of an instant squid. The method comprises the following steps: live or frozen whole squids which are not polluted, have no abnormality and even size are adopted, cleaned, treated to remove internal organs, cleared and cleaned, cut up, scalded, rinsed, pickled and roasted at high temperature for sterilization, and the instant squid is obtained after mild secondary sterilization. The instant squid comprises various parts such as squid rings, squid tentacles, squid mouths, squid wings and the like, and the nutrients of fresh squids are well kept; besides, the squids have beautiful appearance, and can be eaten after being opened; and the instant squid is characterized by delicious taste, convenient eating and rich nutrition. The method adopts small package, and high-temperature short-time sterilization technology is adopted before vacuum packaging to effectively kill microbes, and measures such as a mild secondary sterilization and the like are taken after packaging, therefore, the shelf life of the squid can reach half a year to one year. The method is simple in preparation, and the procedures are reasonable, simple and feasible, the squid product processed has no nutrition loss and natural color, thus improving the edible convenience of the squid product.
Owner:SHANDONG HOMEY AQUATIC DEV +1

Bionic-tentacle-based robot autonomous navigation method

A bionic-tentacle-based robot autonomous navigation method is disclosed, according to the autonomous navigation method, a ''bionic tentacle'' model is disclosed from the point of view of bionics for understanding of sensor information, the autonomous navigation method comprises four walking behavior manners and six behavior trigger conditions, the walking behavior manners comprise aligned steering, straight advancing, avoiding and turning and arc circumvent, the behavior trigger conditions comprise alignment condition, yawing condition, meeting condition, avoiding condition, breaking-away condition and end condition, a bionic tentacle is used for perception of unknown environment around for real-time stimulation and triggering of a corresponding walking behavior, the whole process is designed based on bionics, the bionic-tentacle-based robot autonomous navigation method is suitable for a determined-target-point autonomous navigation task for a robot in unknown environment, can ignore obstacle edge shape restrictions, and is well adaptable to complex obstacle situations.
Owner:CHINA AEROSPACE TIMES ELECTRONICS CORP

Tentacle mechanism

A tentacle mechanism comprising an elongate helicoid stage of windings having multiple through bores formed therethrough which carry control lines for controlling the shape of stages of the helicoid tentacle. An actuator and motor control the control lines and additional cables positioned in other sets of through bores can change the length and shape of the tentacle as well as desired spatial attitude. Embodiments of the tentacle carry end effectors at the distal end-effector actuation cables couple the end-effectors to actuator and motor.
Owner:GALINSON RICHARD

Extract of acaleph toxin as well as preparation method and usage thereof

InactiveCN101181305AHigh antibacterial activityConducive to high-value developmentNervous disorderAntipyreticSp sephadexDesalination
The invention relates to a jellyfish toxin extract, which is characterized in that the invention obtains polypeptide mixture by the separation of jellyfish tentacle, the preparation method is as follows: (1) the preparation of freeze-dried powder: the jellyfish tentacle is taken as the raw material and is split into blocks, and the freeze-dried powder is obtained for standby by tissue homogenization, centrifugalization, removal, sedimentation and vacuum freeze-drying; (2) desalination is carried out by sephadex G-10 desalination column; (3) chromatography is carried out by SP sephadex C-25 ion exchange column, so as to collect the separating substances of a fifth peak; (4) the chromatography by SP sephadex C-25 ion exchange column is carried out for the separating substances of the fifth peak, so as to collect the separating substances of a sixth peak and obtain the invention. The invention also discloses a preparation method and the usage of the jellyfish toxin extract. The jellyfish toxin extract of the invention is the polypeptide mixture which is firstly separated from the jellyfish tentacle, and the jellyfish toxin extract has stronger suppression of pain and antibacterial activity, so the invention is conductive to jellyfish for the obtainment of high-value development, in particular to rhopilema and other low-value resources.
Owner:HUAIHAI INST OF TECH

Cyp7lav1 gene promoter

A cyp71av1 gene promoter relates to the field of genetic engineering technique, the promoter sequence has a nucleotide sequence in the 2100bp of SEQ ID NO.1 in the sequence table; the promoter can lead the specific expression of the gene in the plant tentacle, and can be applied in the genetic engineering breeding using the plant tentacle tissue expression and producing metabolites. The cyp71av1 gene promoter obtained by the invention can lead the specific expression of the gene in the plant tentacle, and has great significance to the genetic engineering breeding using the plant tentacle tissue expression and producing metabolites.
Owner:SHANGHAI JIAO TONG UNIV

Watercraft Immobilizing System

A sub-surface watercraft immobilizing system and method which may be deployed from any vessel to provide primary passive defense against one or more attacking watercraft(s), fitted with marine engine(s). The system is designed to provide practical all round coverage and consists of a sub-surface towed array / entanglement system of wires and / or spectra / nylon lines weighted for neutral buoyancy, deployed from removable / replaceable cartridges that may be disposable or refurbished. The towed array / entanglement system uses outriggers, weighted submersible rollers and spreaders. A system of secondary and possibly tertiary tentacles is deployed from the primary lines just below the water surface to foul and immobilize propellers and engine cooling water intakes. This is a non-lethal system designed to render one or more detected, or undetected, attacking watercraft inoperative or ineffective.
Owner:GAYTON RICHARD J A

Bionic octopus robot

The invention belongs to the field of underwater robots, in particular to a bionic octopus robot. The bionic octopus robot comprises a head part, a nozzle part and a tentacle part. The head part comprises a rigid inner shell, elastic rubber skin, a fixing plate, elastic rubber components, a steering engine, connection rods, a four-layer disc, a power supply, a single chip microcomputer and an environment sensing device. The nozzle part comprises a valve mechanism, an upper-layer circular plate and a guide pipe mechanism. The tentacle part comprises eight tentacles, eight steering engines and alower-layer circular plate, and the upper half parts of the tentacles are connected through elastic thin film. The bionic octopus robot has three kinds of swimming modes including a quick water sprayswimming mode, an underwater gliding swimming mode and a jellyfish-type swimming mode. The underwater robot is designed on the basis of the octopus swimming mode, the noise is low, the hiding performance is good, and the robot has multiple movement modes. The robot is suitable for achieving military applications such as underwater lurk, underwater detection, target tracking and anti-submarine andmeeting civil demands such as marine organism research and seabed exploration.
Owner:HARBIN ENG UNIV

Porous containment device and associated method for stabilization of vertebral compression fractures

The present invention is directed to a porous or permeable containment device for implanting into the interior volume of a targeted vertebral body for use in restoring the anatomy of the targeted vertebral body. The containment device is expandable from an insertion configuration to an expanded configuration via, for example, a bone filler material. The containment device preferably permits the bone filler material to flow out of the containment device via, for example, one or more pores, one or more flow-directing tentacles, etc. so that the bone filler material may interdigitates with the surrounding bone tissue. The containment device is preferably configured to have a pre-determined, ‘dog-bone’ shape, when in the expanded configuration. The containment device preferably also includes one or more knobs or ribs to facilitate anchoring of the containment device to the surrounding bone tissue, one or more air or fluid evacuation pores to permit air or fluid from escaping from the interior volume of the containment device and / or one or more radiopacity rings or markers to enable a surgeon to locate and / or position the containment device under X-ray imaging.
Owner:DEPUY SYNTHES PROD INC

Method for preparing soaked chili squids

The invention discloses a method for preparing the soaked chili squids. The method comprises the following steps of: cleaning fresh squids serving as a raw material; according to specification requirements, separating heads, tentacles and bodies of the squids by cutting; performing embrittlement treatment, wherein 2.5 to 5 grams of baking soda and 2 to 4.5 grams of common salt are added into 1 kilogram of water to obtain embrittlement solution, a weight ratio of the squids to the embrittlement solution is 1:1, the temperature is between 20 and 30 DEG C, and the time is 24 and 48 minutes; cooling the squids in ice water at the temperature of between 5 and 15 DEG C for 30 to 60 minutes; boiling the squids with water at the temperature of between 90 and 100 DEG C for 3 to 8 minutes; draining and cooling the squids, wherein the cooling temperature is between 5 and 20 DEG C, and the cooling time is 20 and 50 minutes; soaking the squids in soaked chili solution at the temperature of between 15 and 28 DEG C for 3 to 10 hours, wherein the soaked chili solution is prepared by boiling a mixture of 300 to 600 grams of soaked chili, spices, salt, sodium glutamate and the like, and finally obtaining the soaked chili squids. The soaked chili squids have a unique flavor, overcomes a defect of hard taste and is rich in nutrition; and heads, tentacles and bodies of the squids can all be used for preparing the soaked chili squid products, so that the taste of soaked chili squids is more agreeable to modern people, and is worthy to be widely spread.
Owner:CNFC ZHOUSHAN MARINE FISHERIES

Securement system for a medical article

A securement system for anchoring a medical article to a patient includes a pliant holding device. The device has a body and a plurality of tentacles extending from the body. The tentacles compress and may conform around at least a portion of the medical article to form a secure mount. The holding device may also cushion the medical article and protect the site of attachment on the patient while promoting air circulation. The holding device may include a support and a hinge so that the holding device may be swung away from the medical article to provide easy access for a medical provider.
Owner:CR BARD INC

Deep processing process for sleeve-fish

The invention relates to a deep processing process for sleeve-fish and belongs to the technical field of a sleeve-fish processing method. The process comprises the following steps of: 1, unfreezing; 2, sterilizing; 3, cooling; 4, flavouring; 5, pickling; 6, drying; 7, remoistening; 8, unfreezing; 9, flavouring; 10, canning and sealing; and 11, sterilizing. The process is simple and convenient and by the process, sleeve-fish tips, tentacles, sleeve-fish necks and sleeve-fish legs can be prepared into sleeve-fish foods with fresh tastes.
Owner:YANTAI YOUMEI FOODSTUFF

Automatic field self-walking machine row-aligning device and control method thereof

The invention provides an automatic field self-walking machine row-aligning device and a control method thereof. The automatic field self-walking machine row-aligning device comprises a flexible tentacle sensing device, a signal acquisition module connected with the flexible tentacle sensing device, a single-chip microcomputer connected with the signal acquisition module, a steering engine, a motor, a remote communication remote control device and an optical grating, the steering engine, the motor, the remote communication remote control device and the optical grating are connected with the single-chip microcomputer, the front end of the flexible tentacle sensing device further comprises two tentacle sensors facing in crisscross directions, the signal acquisition device acquires resistance information of crops touched by the tentacle sensors and transmits the resistance information to the single-chip microcomputer which finally realizes automatic row aligning of an operating vehicle through received rotation of the steering machine and speed of the motor in an information control unit. The automatic field self-walking machine row-aligning device can be adjusted in speed automatically and can automatically retreat when having barriers right ahead, an intelligent field operating-vehicle platform can be remotely controlled, and the device can also be connected with various other external equipment.
Owner:HENAN AGRICULTURAL UNIVERSITY

Artificial reproduction of peach jelly-fish

An artificial reproduction technique for craspedacusta includes such steps as capturing the parents with high activity, complete body and visual sexual gland, choosing and pairing, culturing in the water with pH=6.4-8.6 and dissolved oxygen (3.0-21.7 mg / L) under illuminance of 800-1200 Lx, feeding small crustacena plankton and seaweed, culturing hydroids, culturing larvae, and culturing adults.
Owner:CHINA WEST NORMAL UNIVERSITY

Method for influenza virus protection

A process for the purification of influenza virus or derivative thereof comprising the steps of:providing a source having influenza virus or derivative thereof;optionally subjecting the source to a prepurification step;followed by at least one chromatographic step on chromatographic materials selected from the group consisting of porous particles having mean pore sizes of at least 20 nm, perfusion particles, gel-in-a-shell particles, tentacle like particles, membrane adsorbers, and monoliths;collecting eluting influenza virus or derivatives thereof containing fractionswith the proviso that sulfuric ester of cellulose or cross-linked polysaccharides are excluded.
Owner:NANOTHERAPEUTICS INC +1

Parameter acqusition system and method during stair climbing of four-tentacle tracked robot

ActiveCN104331884AImprove adaptabilityEfficient access to stair climbing parametersImage analysisRgb imageComputer vision
The invention discloses a parameter acqusition system and method during stair climbing of a four-tentacle tracked robot. The system comprises a four-tentacle tracked robot platform and a Microsoft KinectXBOX360 camera carried on the platform. The method comprises the following steps: fusing an RGB (Red, Green and Blue) image and depth image information acquired by the Microsoft KinectXBOX360 camera and calculating related parameters of a stairs so as to control the four-tentacle tracked robot to perform stair climbing action. The embodiment of the invention is mainly used for parameter calculation of the stairs, particularly controlling the postures of four tentacles during stair climbing of the four-tentacle tracked robot.
Owner:精海智能装备有限公司

Method for obtaining hydranths of mastigias papua

The invention relates to a method for obtaining hydranths of mastigias papua, and belongs to the field of artificial feeding and propagating of ornamental marine animals. The method comprises the steps of: culturing parents in a manner of completely being away from light, wherein the culturing water temperature is 25-28 DEG C, enabling the cultured parents to be fertilized, and when fertilized eggs grow into planula larvas floating and swimming on a water surface, taking out the parents; shifting the planula larvas into fresh seawater with the same temperature, at the same time, putting attaching pieces in the fresh seawater, wherein the putting density is that 400-600 planula larvas and two attaching pieces are put in each one liter of a container, and culturing the planula larvas at a constant temperature; when the planula larvas grow into the hydranths with 4 feelers in an attaching manner, beginning to feed the hydranths with artemia nauplii every day, after feeding the hydranths with the artemia nauplii for 2.5-3.5 hours, completely changing water, when the hydranths grow to have 16 feelers, controlling the culturing temperature to be 20-27 DEG C, and extending the number of the hydranths through asexual reproduction. According to the method disclosed by the invention, the hydranths of the mastigias papua can be cultured in batches, and the requirements of showing, enjoying and researching the hydranths of the mastigias papua can be met. The breeding blank of the mastigias papua is filled.
Owner:青岛海洋科技馆

Method for extracting toxin protein from white cyanea tentacles

The invention relates to the technical field of biologics, in particular to a method for extracting a toxin protein which causes vascular permeability increase from white cyanea tentacles. The method comprises the following steps: unfreezing fresh white cyanea tentacles which are frozen at a super-low temperature at a low temperature, washing by a small quantity of buffer solution, collecting the buffer solution, centrifuging to obtain a supernatant and using the supernatant as cyanea crude toxin, and sequentially separating by an ion chromatographic column and a gel chromatographic column to obtain the toxin protein CnP45 which causes vascular permeability increase, wherein the molecular weight of the toxin protein is 45kD. The extracting process of the jellyfish toxin is simplified, the interference of impurity proteins is reduced, and an important method instruction is provided for the further separation and purification of jellyfish toxin ingredients.
Owner:INST OF OCEANOLOGY - CHINESE ACAD OF SCI

Quick freezing sleeve-fish vegetable steak food and preparation thereof

InactiveCN101317675ANice appearanceReasonable and strict processFood coatingFood shapingQuick FreezeAdditive ingredient
The invention relates to a quick-frozen squid and vegetable steak food and the making method thereof. Fresh Squid tentacle sections, mashed yellow croaker and pollution-free cubed carrot and green string bean sections are selected as raw materials which are then added, mixed and stirred with an adhesive, a seasoning agent and a tenderizer in proper amount to form fillings; the fillings are then moulded into caked filling cores which are steamed and cooled; the outer surface of the filling core is evenly coated with a layer of stiff paste, the outer surface of which is evenly attached with a layer of puffed outer coating so as to form a caked quick-frozen squid and vegetable steak which takes the shape of a puffed powder slice and is internally provided with a filling core wrapped with the stiff paste; after being quick-frozen, the squid and vegetable steak can then be made into the quick-frozen squid and vegetable steak food. Based on the optimized raw materials, the quick-frozen food of the invention has beautiful shape, fresh taste and rich nutrients, also combines the nutrients of squid, yellow croaker and various vegetables and is easy to be stored and convenient to be eaten. The making method of the food of the invention has reasonable and strict technology, strong operability and high making efficiency and is suitable for the industrial production.
Owner:RONGCHENG BODELONG FOODSTUFF

Jellyfish-like underwater robot based on mollusk driver

The invention discloses a jellyfish-like underwater robot based on a mollusk driver, comprising a sealed cabin at the upper end, a fixing device at the lower end, a control unit and a mollusk propelling unit, wherein the sealed cabin is fixedly connected with the fixing device; the mollusk propelling unit comprises mollusk tentacles and a pipeline connected with the mollusk tentacles; the mollusk tentacles are uniformly and fixedly mounted around the upper end of the fixing device so as to serve as a flexible driver of the whole robot; and the control unit is used for supplying or cutting compressive fluid to the mollusk tentacles through the pipeline to enable single or multiple mollusk tentacles to generate deformation, so that the whole robot turns or moves. According to the jellyfish-like underwater robot disclosed by the invention, the extension and constriction of jellyfish tentacles are simulated by the mollusk tentacles, and the mollusk tentacles are large in deformation amplitude, strong in driving force, high in efficiency and good in application prospect.
Owner:NANJING UNIV OF SCI & TECH

Method for extracting toxin from jellyfish tentacle

ActiveCN101130572ALong-term protectionProtective effect, long-term low-temperature preservation of jellyfish toxinsPeptide preparation methodsAnimals/human peptidesRhopilema esculentumRoom temperature
The invention discloses a method to extract high activity toxin from jellyfish touching hand in marine biological technique domain, which comprises the following steps: cutting jellyfish touching hand from active jellyfish; adding cooled jellyfish touching hand sea water with 2-6 double volume; self-dissolving; stewing; getting deposition; centrifuging for 20-30 min at 2-6 deg. c with 3000Xg-4800Xg; collecting the deposition; adding into asepsis sea water; centrifuging for 2-5 times once time; collecting the deposition; washing for 3-4 times with NaCl solution; placing into mortar; and adding into Tris-HCl buffer liquid; grinding at room temperature; centrifuging; getting supernatant fluid; getting the jellyfish toxin. This invention can extract a great of barded wire capsule, which can use jellyfish touching hand source completely.
Owner:水母娘娘海洋生物科技有限公司

Octopus-tentacle-simulated curved and torsional flexible joint

ActiveCN106426268AAvoid burdenReduce risk of damageJointsHuman bodyLongitudinal muscle
The invention relates to an octopus-tentacle-simulated curved and torsional flexible joint. The octopus-tentacle-simulated curved and torsional flexible joint comprises a flexible hollow tube, supporting end faces for sealing the two ends of the hollow tube, a first actuation structure arranged on the hollow tube and used for simulating longitudinal muscles and a second actuation structure used for simulating oblique muscles. The first actuation structure shrinks to generate bending deformation in an energized heating state to drive the hollow tube to conduct bending motion. The second actuation structure shrinks to generate bending deformation in an energized heating state to drive one end of the hollow tube to do twisting motion clockwise or anticlockwise relative to the other end of the hollow tube. Through the technical scheme, the flexible joint is not provided with any rigid transmission parts such as motor gears, excess burden brought by the rigid transmission parts to a flexible robot is avoided, and the damage risk caused by the flexible robot to the flexible robot application environment (such a human body) is reduced. The octopus-tentacle-simulated curved and torsional flexible joint is a simple and efficient novel bionic flexible joint which is low in energy consumption and convenient to control.
Owner:HEFEI INSTITUTES OF PHYSICAL SCIENCE - CHINESE ACAD OF SCI

Sleeve-fish sucker-removing device

The invention discloses a sleeve-fish sucker-removing device, for achieving a purpose of quickly and thoroughly removing the suckers from the sleeve-fish tentacles. The device comprises a tank, wherein a base plate and a side wall are arranged on the tank; the tank is equipped with a stirring device which is used for circumferentially rotating and up and down overturning the materials; a main scraper blade is arranged in the tank; the main scraper blade is arranged in an inclined form; the lower end of the main scraper blade is toward a flowing direction of to-be-processed sleeve-fish; a plurality of sieve pores are densely distributed on the main scraper blade; the diameters of the sieve pores are more than the diameters of the suckers of the to-be-processed sleeve-fish; a gap is formed between the main scraper blade and the base plate; a flowing channel of the to-be-processed sleeve-fish is formed by the gap. The to-be-processed sleeve-fish and water are contained in the tank of the sleeve-fish sucker-removing device, are circumferentially rotated and up and down overturned under the effect of the stirring device and are collided and rubbed with the main scraper blade, so that the suckers on the sleeve-fish tentacles can be embedded into the sieve pores and can be removed under the effect of the sieve pores. The sleeve-fish sucker-removing device is in a pure mechanical mode, is hygienic and efficient, is capable of extremely maintaining the complete sleeve-fish cuticle and is capable of reducing waste.
Owner:浙江明宏智能装备有限公司

Dissection type 3D printing net-shaped skull patch

InactiveCN106859816AImprove internal and external blood supplyGood anatomyAdditive manufacturing apparatusSkullEndocraniumNet shape
The invention discloses a dissection type 3D printing net-shaped skull patch, and belongs to the technical field of skull repair. The skull patch comprises a skull patch edge matched with a brain injured part and a skull patch mesh structure, the skull patch edge is of a porous tentacle-free structure or pore-free tentacle-free structure or a pore-free tentacle structure. The skull patch mesh structure is formed by randomly weaving single-layer meshes or multi-layer meshes formed by beam structures. The skull patch is matched with the shape and dimension height of an original skull defect portion, and has the good anatomy and biological compatibility; meanwhile, the porous net-shaped design can effectively improve internal and external blood supply of the skull, after the skull patch is implanted, subcutaneous hematoma hematoma puncture drainage difficulty are likely to occur, the dropsy and infection occurrence rate can be lowered, and repairing and healing are promoted.
Owner:武汉康酷利科技有限公司

Thawing unit used for frozen squid tentacles and thawing method applying thawing unit

The invention relates to a thawing unit used for frozen squid tentacles. The thawing unit comprises a thawing tank and an overflow pipe, and also comprises a water inlet system and an air blowing system which are arranged on the thawing tank; the water inlet system comprises a water inlet pipe, a water spray pipe and water spray holes formed in the water spray pipe; the air blowing system comprises an air inlet pipe, air blowing pipes and air blowing holes formed in the air blowing pipes; a thawing cavity is formed in the thawing tank; the air blowing pipes and the water spray pipe are separately arranged in the thawing cavity; the overflow pipe communicates with the thawing cavity; under an operating state of the thawing unit, thawing water fed through the water spray holes of the water inlet system fills in the thawing cavity, and cleaning beads of which the diameters are 1 to 3 cm are added into the thawing water; the hole diameter of each the water spray hole and the hole diameter of each air blowing hole are separately less than the diameter of each cleaning bead. The invention also relates to a thawing method used for the frozen squid tentacles and applying the thawing unit. The thawing unit disclosed by the invention is simple in structure, and the thawing method is simple to operate, low in cost and short in thawing time; moreover, quality and processing value of the squid tentacles can be kept better, and the industrialization demand of a factory can be met.
Owner:ZHEJIANG OCEAN UNIV

Bionic line drive decapoda sepia

PendingCN110550169ARich underwater swimming actionIncrease flexibilityPropulsion power plantsPropulsive elements of non-rotary typeUniversal jointLongitudinal muscle
The invention discloses a bionic line drive decapoda sepia which comprises a decapoda sepia body. The decapoda sepia body comprises a decapoda sepia carcass, a decapoda sepia head, decapoda sepia tentacle wrists and a decapoda sepia outer sleeve film. The decapoda sepia carcass comprises a decapoda sepia carcass tail and a decapoda sepia carcass body. The decapoda sepia carcass tail is a supporting body of a conic structure. The decapoda sepia carcass body is composed of a universal joint framework structure and carcass drive longitudinal muscles. A first drive mechanism and a second drive mechanism are arranged on the left side and the right side of the tail end of the decapoda sepia carcass correspondingly. The decapoda sepia head is connected with the decapoda sepia carcass tail throughthe universal joint framework structure and the carcass drive longitudinal muscles. The decapoda sepia tentacle wrists are connected with the front portion of the decapoda sepia head through a thirddrive mechanism. The decapoda sepia outer sleeve film sleeves the decapoda sepia carcass tail downwards. According to the bionic line drive decapoda sepia, the functions that the bionic line drive decapoda sepia is carried with multiple underwater detectors and flexibly sink and emerge in different water depths and underwater soft robot arms are achieved can be achieved, and detection and development to oceans are achieved.
Owner:SHANGHAI OCEAN UNIV
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