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Micropatterning of organic electronic devices by cold-welding

A simple and general postdeposition electrode patterning technique for active organic electronic devices is demonstrated and is applied to patterning the metal cathodes of organic light-emitting devices. Selective lift-off of the metal cathode layer is achieved by pressing a prepatterned, metal-coated silicon stamp on the unpatterned device layers. Under pressure, the metal coating on the stamp cold-welds to the metal cathode coating the underlying organic films. Subsequent separation of the stamp from the substrate results in removal of the cathode metal in the regions contacted by the stamp, resulting in submicrometer feature definition. A 17x17 passive matrix display, with a pixel size of 440 micrometers by 320 micrometers, was fabricated with this process. Cold-welding followed by lift-off of the cathode metal allows simple, cost-effective, and high-throughput large-area fabrication of organic electronic devices.

Journal Article↗

Laser-induced alteration of collagen substructure allows microsurgical tissue welding.

Tissue welding is a potentially important biomedical application of laser technology. The structural alterations basic to this phenomenon were studied in experimental repair of lesions of the rat carotid artery and sciatic nerve. A modified neodymiumdoped yttrium-aluminum-garnet laser operating at a wavelength of 1.319 micrometers was used in conjunction with conventional suture techniques. Histological and fine-structural analysis revealed a homogenizing change in collagen with interdigitation of altered individual fibrils that appeared to be the structural basis of the welding effect.

Animals↗

Compratative distortion in three-unit fixed prostheses joined by laser welding, conventioanl soldering, or casting in one piece.

This study evaluated three different joint-forming procedures: laser welding, soldering, and one-piece casting. Fifteen three-unit bridges were fabricated. The findings showed post-jointing distrotion to be significantly less for laser-welded and one-piece castings than for soldering; and significantly greater reliability (least error variance) in joining with the laser than either one-piece casting or soldering.

Dental Abutments↗

The tensile and shear strength of a base metal weld joint used in dentistry.

Samples of a base mental alloy were cast and welded together using a conventional welding procedure. The joints were loaded and placed either in a corrosive environment or in air for varying time periods. The tensile and shear strength of the joints was unaffected by the corrosive environment, and the joints, despite some internal defects, appeared suitable for clinical use.

Chromium Alloys↗

Application of schlieren interferometry to temperature measurements during laser welding of high-density polyethylene films.

Schlieren interferometry is found to be an alternative tool for temperature measurement during thermoplastic laser welding with regard to methods based on thermocouples or optical pyrometers. In fact, these techniques are not easily applied when materials to be processed have reduced thickness, negligible heat conduction, and low emissivity, as is the case of welding high-density polyethylene films with 10.6-microm CO2 laser radiation, even if the method reaches its applicability limit after approximately 1 s of the interaction process. The schlieren method provides the means and the results to probe the thermal variations of the laser-thermoplastic interaction on both the surface and the interface between the sample material and the air.

Journal Article↗

Closed-loop power and focus control of laser welding for full-penetration monitoring.

We describe a closed-loop control system ensuring full penetration in welding by controlling the focus position and power of a 4-kW Nd:YAG laser. A focus position monitoring system was developed based on the chromatic aberration of the focusing optics. With the laser power control system we can determine the degree of penetration by analyzing the keyhole image intensity profile. We demonstrate performance in bead-on-plate welding of Inconel 718 and titanium. The focus control system maintained a focal position on tilted and nonflat workpieces, and the penetration monitoring technique successfully controlled the laser power to maintain the full-penetration regime in the presence of linear and step changes of thickness. Finally we discuss the performances and the limits of the systems when applied to a realistic complex aerospace component.

Journal Article↗

The use of laser-welded titanium framework technology: a case report for the totally edentulous patient.

Laser-welded technology has become a viable alternative to the conventional lost wax-casting technique in the field of implant dentistry. Studies have demonstrated the predictable nature of laser-welded titanium frameworks for endosseous implants in the partial and totally edentulous patient. A standardized impression and fabrication procedure is required for an accurate and predictable superstructure. More long-term studies are needed for more widespread acceptance and usage by dental practitioners.

Aged↗

Laser Tissue Welding - Poised for the New Millenium.

Laser tissue welding is a relatively new technique, which was initially described only about 30 years ago. Over the past 10 years, the implementation of protein solders has redefined the field. Alternative methods of wound closure and of tissue approximation have been quickly accepted in clinical medicine. The techniques and theory involved in performing laser tissue welding may soon be essential knowledge for all surgeons. Just as laparoscopy has become a mainstay for general surgeons and urologists, novel mechanisms of tissue approximation will continue to replace older, less efficacious techniques.

Journal Article↗

[Development and clinical application of dental spot weld & heat-treat tri-uses device].

A spot weld & heating treatment tri-uses device based on modern mechanical-electric technique, was developed for dental spot weld, stainless steel orthodontic wire heating-reversion and Ni-Ti orthodontic wire heating-overload metamorphism. The device will be very helpful instrument in orthodontic clinic. The paper not only described the operating methods of the device, but also discussed the Performance-improved principles of stainless steel orthodontic wire and the principles of heating overload metamorphism of Ni-Ti orthodontic wire.

Dental Soldering↗

Underlay tympanoplasty with laser tissue welding.

We investigated the feasibility of using laser tissue welding techniques to perform transcanal underlay tympanoplasty. We used 10 temporal bones obtained from human cadavers. After creating a subtotal tympanic membrane perforation, we introduced harvested periosteum through the perforation and used laser tissue welding to secure the periosteum graft in place in an underlay fashion. The procedure was performed via a transcanal approach and did not require middle ear packing. Immediately after the graft had been placed, we qualitatively tested its integrity with a blunt probe. The graft was as strong as the native cadaver tympanic membrane in all 10 cases. We conclude that laser transcanal underlay tympanoplasty is a feasible and effective method of repairing a tympanic membrane. The ultimate goal is to develop a technique that will allow physicians to routinely perform underlay tympanoplasty on moderately sized perforations in an office setting.

Cadaver↗

[Animal experiment study of performance ultrasound in the welding of liver wounds].

Liver cuts were performed on 21 Mini-Leewe-pigs and than closed with suture and by ultrasonic welding with Ligament-FIMOMED and Gelaspon. The sound pressure leads to the forced penetration of the monomere into performed gaps. The application of the ultrasound is sensible in order to force the polymerisation. The experiments resulted in the succesful closure of the liver wounds in all cases where ultrasonic welding of Fimomed-Gelaspon compound was used. Application to human medicine is, however, not yet justified.

Animals↗

Tissue welding using a low energy microsurgical CO2 laser.

A low energy, CO2 laser adapted specifically for microsurgery can be used to assist in anastomosis by "welding" tissue through thermal coagulation. Which tissue constituents contribute to the bond are not known, and different constituents may be important in welding different organs.

Anastomosis, Surgical↗

Laser welding of large diameter arteries and veins.

Based on our preliminary studies and the results of this study, we conclude that argon laser welding of 4-8 mm internal diameter veins, arteries, and arteriovenous fistulas may have several potential advantages compared to conventional suture techniques. The benefits of laser repairs may include improved mechanical properties, and absence of the foreign body response related to sutures. Laser welding is sterile, nontactile and possibly time conserving, and the wounds heal rapidly without aneurysms or excess tissue proliferation.

Animals↗

[Animal experimental studies on "bone welding" by ultrasound (author's transl)].

This article deals with a method of osteosynthesis which was tried out in a model experiment on Wistar rats. In this method, which may be termed "bone welding with ultrasound", bone fragments are glued together, using ultrasound and n-butyl-2-cyanoacrylates. The load capacities of glued and welded bones were compared in an in-vitro trial. The course of the in-vivo trial was followed up clinically and roentgenologically, and the preparations obtained after termination of an observation period of 6 weeks were then subjected to histological processing.

Animals↗

[Basic research on ultrasound surgery. VI: Comparative histological liver findings following treatment of the wound with ultrasound welding and suturing].

Liver cuts were performed on 21 Mini- Lewe pigs and then closed with suture in one case, and by ultrasonic welding of Fimomed - Gelaspon conglomerate in the other. Macroscopic assessment in situ and the histological examination of cut out liver areas regularly showed perifocal inflammatory peritoneal reactions and abscess formation for the sutured regions. From a histological point of view the liver tissue in the regions subjected to ultrasonic treatment reacted more strongly than after suture, particularly in the form of lobule structure disturbances, focal hepatitis, hepatic duct proliferation and destruction, and cholangitis. All of these were limited to the immediate vicinity of the conglomerate with its fibrous demarcation, which remained identifiable until the end of the experiment after a year and a half. The experiments resulted in the sucessful closure of the liver wounds in all cases where ultrasonic welding of Fimomed - Gelaspon compound was used. Application to human medicine is, however, not yet justified.

Animals↗

[Healing processes of ultrasonically welded bone fractures in rabbits (author's transl)].

The aim of ultrasonic welding of bones is to attain a stable osteosynthesis between the ends of the fractures by application of a, under ultrasonic influence quickly polymerizing, plast monomer mixed with granular homologous bone particles. In this paper the healing process from the osteosynthesis attained by welding up to the organic healing of the fracture is investigated.

Animals↗

Laser-welded titanium frameworks for fixed prostheses supported by osseointegrated implants: a 2-year multicenter study report.

Nineteen prosthodontic clinics participated in a prospective study of fixed prostheses supported by osseointegrated implants (FPOIs) with laser-welded titanium frameworks. Ninety-three patients with 100 FPOIs were included and followed for 2 years. The results from this group were compared to another group that was examined retrospectively. In the retrospective group (control group), 91 patients received 96 FPOIs with cast frameworks, and these patients were treated shortly before the patients in the titanium-framework group (test group). The two groups were treated at the same centers. The results for both groups were good, with only 1.2% of loaded implants lost during the follow-up period (1.6% in the titanium-framework group; 0.7% in the control group). One framework in each group fractured. However, in complete maxillary cases, there were significantly more subjects in the titanium-framework group who were affected by implant losses compared to the control group. There was also a tendency towards more fractures of artificial teeth and acrylic resin in the titanium-framework group, compared to the control group. A possible explanation might be that dental technicians at the different centers were not used to the design of the titanium frameworks when the study began. Thus, the results from the first 2 years are promising, but further studies are needed to establish the long-term serviceability of laser-welded titanium frameworks.

Dental Implantation, Endosseous↗

Genitourinary reconstructive surgery utilizing laser tissue welding.

Laser tissue welding contributes several distinct advantages over current tissue approximation methods in the genitourinary tract. Low level laser energy combined with a protein solder can provide an immediate watertight seal that is supraphysiologic, nonlithogenic, rapid, and reliable. This review highlights the history of laser tissue welding, its applications to urologic surgery, recent developments to improve the technique, and future directions.

Animals↗