Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “WELDING”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,387 records · Page 77Linked to original sources

Autonomic function in manganese alloy workers.

The observation of orthostatic hypotension in an index case of manganese toxicity lead to this prospective attempt to evaluate cardiovascular autonomic function and cognitive and emotional neurotoxicity in eight manganese alloy welders and machinists. The subjects consisted of a convenience sample consisting of an index case of manganese dementia, his four co-workers in a "frog shop" for gouging, welding, and grinding repair of high manganese railway track and a convenience sample of three mild steel welders with lesser manganese exposure also referred because of cognitive or autonomic symptoms. Frog shop air manganese samples 9.6-10 years before and 1.2-3.4 years after the diagnosis of the index case exceeded 1.0 mg/m3 in 29% and 0.2 mg/m3 in 62%. Twenty-four-hour electrocardiographic (Holter) monitoring was used to determine the temporal variability of the heartrate (RR' interval) and the rates of change at low frequency (0.04-0.15 Hz) and high frequency (0.15-0.40 Hz). MMPI and MCMI personality assessment and short-term memory, figure copy, controlled oral word association, and symbol digit tests were used. The five frog shop workers had abnormal sympathovagal balance with decreased high frequency variability (increased ln LF/ln HF). Seven of the eight workers had symptoms of autonomic dysfunction and significantly decreased heart rate variability (rMSSD) but these did not distinguish the relative exposure. Mood or affect was disturbed in all with associated changes in short-term memory and attention in four of the subjects. There were no significant correlations with serum or urine manganese. Power spectrum analysis of 24-h ambulatory ECG indicating a decrease in parasympathetic high frequency activation of heart rate variability may provide a sensitive index of central autonomic dysfunction reflecting increased exposure to manganese, although the contribution of exposures to solvents and other metals cannot be excluded. Neurotoxicity due to the gouging, welding, and grinding of mild steel and high manganese alloys (11-25%) merits air manganese and neuropsychologic surveillance including autonomic function by Holter monitoring of cardiovagal activation.

Adult↗

Anastomosis of biliary tissue with high-frequency electrical diathermy.

Laser tissue fusion results from the conversion of light to thermal energy, creating tissue heating and protein denaturation. Accurately controlled tissue heating from smaller, less expensive, non-laser sources should be able to duplicate the fusion or welding of tissues, which has been demonstrated with a variety of lasers. We examined the capability of high-frequency electrical diathermy to create effective tissue fusion with limited collateral thermal damage. Using an electrical diathermy device with up to 14 W output power at 13.56 MHz, the cystic ducts of freshly harvested canine gallbladders were fused shut. Immediately after closure of the cystic ducts, bursting pressure was determined. Welding time was approximately 60 s. Mean bursting strengths immediately after closure were 207 mm Hg (+/- 94.3) in air (n = 10) and 202 mm Hg (+/- 44.7) under water immersion (n = 9). Histologic sectioning revealed a full-thickness denaturation of collagen fibers with fusion. Our preliminary investigations suggest that high-frequency electrical diathermy may provide practical advantages for fusion of biliary tissues when compared with conventional suture closure and laser fusion.

Anastomosis, Surgical↗

First sutureless closure of a colotomy: short-term results of experimental laser anastomosis of the colon.

To assess the possibility of laser anastomosis of the colon, experimental laser closure of colotomies was performed. Transverse colotomies (average 20.7 mm) in New Zealand white rabbits (n = 20) were closed with a 1,064-nm Nd:YAG laser at a pulsating 0.5-W wave of power, using guy sutures to approximate the tissue edges. The laser energy was applied through a specially designed hand piece and hand-held 600-microns gas-cooled noncontact quartz fiber to produce a satisfactory tissue welding. Similar colotomies were closed using a single layer of interrupted sutures of 5-0 Maxon (Davis & Geck, Pearl River, NY) in a control group (n = 20). Bursting pressure and index of narrowing were recorded immediately after anastomosis and at 1, 4, and 7 days following surgery. Bursting pressure of the laser-welded closure at 1 day was significantly lower than that of the sutured controls (P less than 0.01); however, all rabbits recovered uneventfully. There was a marked decrease in adhesion formation following laser anastomosis (P less than 0.05). Conversely, one control rabbit showed functional stenosis at 4 days. Histologic study revealed an accelerated healing in the laser group. The index of narrowing was significantly higher in the laser group than in the control group (P less than 0.05). The completely water-sealed laser anastomosis reduces adhesions and is comparable to conventional suture anastomosis of the colon.

Anastomosis, Surgical↗

First experimental sutureless laser anastomosis of the large bowel: long-term study.

UNLABELLED: Large bowel anastomoses were successfully performed without sutures on New Zealand white rabbits using 1,064 nm, 0.4-W power pulsating Nd:YAG laser to create tissue welding. PURPOSE: The aim of this study was to assess long-term results of our experimental data and summarize our experimental work on laser colon anastomosis. METHODS: This experimental study investigated long-term integrity, degree of narrowing, animal body weight change, visual findings, microscopic appearance, and collagen concentration of laser colon anastomoses, compared with those of conventional sutured anastomoses at thirty and ninety postoperative days. RESULTS: Two animals in the laser group died without leakage. Postsurgical course in all remaining rabbits studied was uneventful. Bursting pressures in the two groups were equivalent, but the laser group exhibited a consistent narrowing tendency. However, laser anastomoses demonstrated fewer and milder adhesions, and animals showed a better recovery of body weight. Histologically, laser anastomoses showed better layer-to-layer reconstitution without foreign body response and with less fibrosis. Difference in collagen (hydroxyproline) concentration did not reach statistical significance. CONCLUSION: The nature of tissue welding via laser remains undefined, but there is definitely a future for laser bowel anastomosis.

Anastomosis, Surgical↗

Usefulness of bipolar scissors for total colectomy.

PURPOSE: Total colectomy is frequently used in colorectal surgery. We evaluated the usefulness of bipolar scissors in this operation. METHODS: Twenty patients with ulcerative colitis underwent total colectomy at Hyogo College Hospital. Bipolar scissors were used in ten randomly chosen colectomies. The resected major vessels of the colonic mesentery were stained by hematoxylin and eosin. The bursting pressure of the artery weld was measured with a water-filled, open-tip catheter. RESULTS: Both number of ligations and operating time were reduced by use of bipolar scissors. The cut edge of the major artery was occluded by the weld created, with a mean bursting pressure of 213 (range, 175-250) mmHg. CONCLUSION: Use of bipolar scissors was safe and had the advantage of shortening the operating time by decreasing the number of clamping and ligating procedures.

Adolescent↗

Orthodontic soldering techniques: aspects of quality assurance in the dental laboratory.

BACKGROUND: In Germany, the dental technician is required by the Medical Products Act (MPG) to produce workpieces of high safety and quality and to document these properties. Soldering continues to be the prevailing joining technique in the dental laboratory, although problems arise from the susceptibility to corrosion and the low strength of soldered joints. This study aimed to reveal sources of defects in dental laboratory workpieces in order to achieve optimization in terms of quality assurance. MATERIAL AND METHODS: The joints were produced by various dental technicians using three different soldering techniques. These joining techniques were investigated for their quality and their corrosion properties during immersion in ferric chloride, orthodontic appliance cleanser, and artificial saliva. Observance of the soldering instructions by the dental technicians was checked. Corrosion attack was confirmed by scanning electron microscopy and by measuring the ion concentrations of copper, silver and zinc in the corrosive agents, using atomic emission spectroscopy with stimulation by inductively coupled plasma (ICP-AES analysis). RESULTS AND DISCUSSION: Incomplete filling of the soldering gap, porosities resulting from the production process, poor corrosion properties, and in particular a high variability of the measured values point to insufficient reliability of two soldering techniques. Variations in quality were also detected among the technicians' modes of operation. CONCLUSION: The analyses confirm the need for quality assurance of soldering techniques and for increased support for alternative joining techniques such as laser welding in the future. The results of the studies on laser welding are presented in a separate publication.

Corrosion↗

Variation in the ratio of respirable particulates over inhalable particulates by type of dust workplace.

OBJECTIVE: The aim of the present study was to clarify the quantitative relationship between respirable particulates and inhalable particulates in various dust workplaces. METHODS: Both respirable particulate and inhalable particulate concentrations were measured in 1644 dust workplaces by means of elutriation, and the ratio of respirable particulate mass over that of inhalable particulate (R/I ratio) was calculated for each workplace. RESULTS: Statistical analyses showed that the R/I ratio varied substantially, depending on the type of dust work. The ratio was highest in welding workplaces (mean +/- SD: 53 +/- 19%) and lowest in foundries (23 +/- 16%); the former value suggests that respirable particulate exposure may be underestimated in substantial parts of welding work when only the occupational exposure limit for inhalable particulates is taken for compliance testing. CONCLUSIONS: Simple compliance with the limit for inhalable particulates is not sufficient, and the limit for respirable particulates should also be simultaneously cleared.

Dust↗

Experimental aortocoronary artery bypass grafting using a CO2 laser on the dog: acute experiment.

This study was designed to evaluate the feasibility of using laser tissue welding in aortocoronary bypass operation. Simulated aortocoronary bypass operations were performed on 10 dog hearts supported by extracorporeal circulation. Distal anastomoses between internal mammary artery and coronary artery were achieved using the laser technique, which includes four stay sutures of 7-0 polypropylene and tissue welding between the stays by the laser at a power level of 65 mW. Short-term luminal patency was 100% without stenosis by angiography. Microscopy and histology showed that CO2 laser caused medial change resulting in fusion with preservation of normal intimal morphology. The aortocoronary bypass operation using a CO2 laser is technically feasible, and this technique may open up a new method for patients with small peripheral coronary artery obstruction and for pediatric patients with certain conditions (eg, Kawasaki disease).

Anastomosis, Surgical↗

Oil and petrol drum explosions. Injuries and casualties by exploding oil and petrol drums containing various inflammable liquids.

If ignited, an evaporated inflammable liquid remaining mixed with air in an oil or petrol drum may cause an explosion in which the top and bottom of the drum are blown off by the blast and act as projectiles causing extensive injuries to persons nearby. To analyse the occurrence of this type of accident and to study the injuries involved information was sought from all police districts in Denmark and all the departments of plastic surgery with a burns unit. The investigation revealed a total of 21 accidents caused by oil drum explosions over a period of 36 years with 16 injured within the last 5 years in a population of five million people. Fifteen accidents occurred during attempts to divide a drum with a disc grinder or a cutting blow-torch; five of the victims were welding drums or using drums as a support when welding or cleaning iron materials and one man was shifting a drum which exploded because of the heat of the sun. Five men were killed: three died from burns and two from fatal brain injuries. Two men with several facial fractures survived. Five victims received injuries to the lower limb and presented with a total of six open, comminuted fractures of the tibia. Nine men had burns covering from 2 to 50 per cent of the body surface, up to 30 per cent of the burns being full-thickness. This paper draws attention to the extreme danger of working on apparently empty oil or petrol drums with tools generating heat or sparks, unless specific precautions are taken.

Accidents, Occupational↗

Enhancement of CO2 laser microvascular anastomoses by fibrin glue.

Laser-assisted microvascular anastomoses (LAMA) are characterized by low early bursting strength and high aneurysm rates. The effects of fibrin glue on bursting strength (BS), patency, and aneurysm rate of LAMAs were compared to standard suture and laser anastomosis. Rat femoral arteries (0.9-1.1 mm) were anastomosed end-to-end by three methods: (1) conventionally with 8 to 10 interrupted 10-O nylon sutures; (2) 3 stay sutures and CO2 laser (spot size, 0.275 mm; pulse, 0.2 sec, 80 mW); and (3) cryoprecipitated fibrinogen, 35 mg/cc, crystallized thrombin, CaCl, 20 mg/cc, aprotinin (2000 kIU/cc) applied to weld site in conjunction with laser weld as in (2) above. Patency, aneurysms, and histology were evaluated at 3 weeks, and BS (mm Hg) was measured in six additional vessels at 1 and 24 hr. There was no statistically significant difference in patency rates. Both the suture and fibrin glue groups had significantly higher 1 and 24 hr bursting strengths (P less than 0.05) and significantly lower aneurysm rates (P less than 0.001) than standard laser. There was no significant difference in bursting strength between suture and fibrin glue groups. Histology in the fibrin glue group showed medial damage similar to the LAMA and calcification of aneurysmal vessels. Fibrin glue enhancement of LAMAs produces equal patency, higher early bursting strength, and fewer aneurysms at 3 weeks compared to conventional laser.

Anastomosis, Surgical↗

Comparison of contact and free beam laser endarterectomy.

Free beam laser endarterectomy (LE) and contact laser endarterectomy (CLE) were compared in 15 arteriosclerotic New Zealand white rabbits. The rabbits underwent balloon catheter trauma to the thoracoabdominal aorta and were fed a 2% cholesterol diet for 18 weeks. Thoracoabdominal exploration was performed under general anesthesia and multiple endarterectomies were performed in each rabbit. Atheromas were dissected from arteries with laser radiation and end points were welded in place with laser radiation. LEs (N = 8) were performed with argon ion radiation delivered through a 400 microns fiberoptic. Power was kept constant at 1 W and the average fluence was 97.5 +/- 6.6 J/cm2. CLEs were performed with conical sapphire probes powered by either argon ion radiation (N = 12) or Nd-YAG radiation (N = 10). Power used was 1 W to 4 W for each laser. Average argon ion fluence was 117.8 +/- 3.1 J/cm2 and average Nd-YAG fluence was 611.1 +/- 34.4 J/cm2. Following the operations, aortas were removed, fixed, serially sectioned, and stained. Microscopic study revealed welded end points with LE but not with CLE. There were no perforations with LE. There were 11/12 perforations with argon ion CLE and 8/10 perforations with Nd-YAG CLE. Free beam laser endarterectomy is superior to contact laser endarterectomy for experimental atheromas.

Aluminum↗

A noble spring-clip: fatigue-resistant electrical connection for implant use.

An alternative method for electrically joining two rigid terminals within the flexible encapsulant of a prosthesis was sought after welded platinum wires suffered fatigue failure when implanted. The advantage of using spring clips is discussed and fatigue tests to compare spring-clips, made for one of two gold alloys, with welded Platinum or Pt/Ir wires are described. Some physical properties of the superior gold alloy are tabulated.

Biomedical Engineering↗

Clinical and radiographic evaluation of long-stem femoral components following revision total hip arthroplasty.

Fifty-four consecutive, long-stem revision hip arthroplasties were performed in 53 patients. In order to evaluate periprosthetic femoral changes, all cases utilizing cement, requiring bone-grafts for prosthetic stability, or with a follow-up period of less than 2 years were omitted. Thus, 32 long-stem revision hip arthroplasties in 32 patients were reviewed. Twenty-three Porous Coated Anatomic (Howmedica, Rutherford, NJ) and nine Bi-Metric (Biomet, Warsaw, IN) stems were implanted, with an average follow-up period of 3.6 years (range, 2-6 years). Prosthetic canal fill averaged 94% proximally and 80% distally. Intraoperative complications included three femoral shaft fractures. Harris hip scores averaged 47.8 points, before surgery and 87.6 points at the final follow-up evaluation, with 81% of patients the pain-free. Only three cases of subsidence and one case of osteolysis were noted. By 1 year, proximal osteopenia (off-load) (P = .005), bony condensation about the porous surface (spot weld) (P = .01), and pedestal formation (P = .004) were observed. The presence of distal cortical hypertrophy, (P = .02) spot weld (P = .001), and pedestal formation (P = .05) correlated significantly with off-load. Pedestal formation and distal cortical hypertrophy were commonly found together (P = .001). Despite significant periprosthetic remodeling, adequate fixation and satisfactory early clinical scores were achieved in this setting. Contrary to similar reviews using extensive bone-grafts, acceptable pain-free clinical results were obtained with these components.

Female↗

Mechanical properties and clinical applications of orthodontic wires.

This review article describes the mechanical properties and clinical applications of stainless steel, cobalt-chromium, nickel-titanium, beta-titanium, and multistranded wires. The consolidation of this literature will provide the clinician with the basic working knowledge on orthodontic wire characteristics and usage. Mechanical properties of these wires are generally assessed by tensile, bending, and torsional tests. Although wire characteristics determined by these tests do not necessarily reflect the behavior of the wires under clinical conditions, they provide a basis for comparison of these wires. The characteristics desirable in an orthodontic wire are a large springback, low stiffness, good formability, high stored energy, biocompatibility and environmental stability, low surface friction, and the capability to be welded or soldered to auxiliaries. Stainless steel wires have remained popular since their introduction to orthodontics because of their formability, biocompatibility and environmental stability, stiffness, resilience, and low cost. Cobalt-chromium (Co-Cr) wires can be manipulated in a softened state and then subjected to heat treatment. Heat treatment of Co-Cr wires results in a wire with properties similar to those of stainless steel. Nitinol wires have a good springback and low stiffness. This alloy, however, has poor formability and joinability. Beta-titanium wires provide a combination of adequate springback, average stiffness, good formability, and can be welded to auxiliaries. Multistranded wires have a high springback and low stiffness when compared with solid stainless steel wires. Optimal use of these orthodontic wires can be made by carefully selecting the appropriate wire type and size to meet the demands of a particular clinical situation.

Chromium Alloys↗

25 years of laser assisted vascular anastomosis (LAVA): what have we learned?

OBJECTIVES: Laser assisted vascular anastomosis (LAVA) has been developed to a stage where clinical use is within reach. Advantages of LAVA are minimal vessel damage, faster operation and the potential for minimally invasive application. DESIGN: A Medline literature search was performed on vessel welding combined with cross-referencing. RESULTS: Four different lasers have mostly been used for LAVA, always in combination with stay sutures. The CO(2) laser has only been used in the early period. Without solder, mean leaking point pressures (LPP) of 754 mmHg (n=75) were obtained, only slightly lower than in suture controls (LPP=915 mmHg, n=82). At follow-up the percentage of aneurysms was high (overall 12% in n=486). Although Argon LAVA showed moderate success (LPP=146 mmHg, n=125), the first clinical application has been successfully performed. Diode LAVA in combination with solder and dye resulted in an acceptable LPP of 409 mmHg (n=163) in larger vessels, with a low incidence of aneurysm formation (1% in n=107). CONCLUSION: At present the diode laser is the most popular. Solder developments resulted in stronger welds and might make stay sutures redundant. The combination of CO(2) laser and solders has not been evaluated and deserves further investigation.

Anastomosis, Surgical↗

Progress towards seamless tissue fusion for wound closure.

Tissue fusion shows great promise in creating the ideal wound closure;however devices and materials are still at an early stage of development.Energy-based closure methods, such as laser tissue welding, have proven that a thermal-mediated tissue fusion can result in a closure that is physiologically and mechanically seamless, and has sufficient tensile strength.However, the techniques are not easily reproducible and are not cost effective, and therefore they are not gaining wide acceptance. Nevertheless,the work of the scientists who have been exploring tissue welding has laid the foundation for more rapid development of new systems that can deliver energy more efficiently and with greater control. Some additional energy-based systems are available or are being developed that show great promise;however, clinical efficacy has yet to be demonstrated.

Animals↗

Cytotoxicity of chromium and manganese to lung epithelial cells in vitro.

Chromium, nickel and manganese are the predominant metals in welding fumes and are associated through epidemiological studies with an increased risk for developing occupational asthma due to welding activities. Here, we show that chromium(VI) and manganese, but not nickel, are cytotoxic to normal human lung epithelial cells in vitro (SAEC and BEAS-2B), at concentration ranges of 0.2-200 microM. The toxic effect was associated with increased levels of intracellular phosphoprotein and subsequent release of inflammatory cytokines IL-6 and IL-8, while no release of TNF-alpha was observed. Changes in intracellular phosphoprotein levels occurred at concentrations below the cytotoxic effect. IL-6 and IL-8 production increased up to 4.4-fold relative to controls. IL-6 and IL-8 are released from lung epithelium to recruit cells of the immune system to sites of tissue damage. Therefore, the observed effects of chromium(VI) and manganese in lung epithelial cells demonstrate a mechanism through which the toxicity of these metals to epithelial cells can result in recruitment of cells of the immune system.

Cell Survival↗

A novel system for organ and tissues preservation: the refrigerating hyperbaric chamber.

UNLABELLED: This study was designed to investigate the feasibility of building a simple and inexpensive device to preserve organs or tissues in hyperbaric and hypothermic conditions. METHODS: The device was built on a 40-cm wide, 28-cm long, and 23-cm deep stainless steel chassis. The pressure vessel was built by a 7.8-cm bore stainless steel cylinder put inside another 12-cm cylinder welded together and closed by a steel plate on the top and bottom. The inferior plate was welded, and the superior one was fixed by manual clasp nut. The cooling system is made up of air compressor, condenser, expansion area, and cooling worm that is located between the cylinders. The temperature-controlling device is a computer processor contained in an integrated-circuit chip, with a on-off system to maintain the chamber temperature between 2 degrees to 4 degrees C. The compression of the chamber is performed by lateral coupling with the oxygen cylinder and is maintained at 5.5 absolute atmospheres and controlled by air pressure gauge. The maximal work pressure was evaluated by spreadsheet. Temperature or pressure changes were evaluated by 12- and 24-hour assays. RESULTS: The maximal work pressure permitted was 6.5 absolute atmospheres. Thus, the container was free from danger. The temperature inside the chamber was kept between 2 degrees and 4 degrees C. The production costs of the prototype was US$1000. DISCUSSION: The manufacture of the refrigerating hyperbaric chamber is viable, simple, and inexpensive.

Cold Temperature↗