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At least 19 recordsLinked to original sources

[Studies on the method of sterilization with ethylene oxide gas. 1. Sterilization procedure and sterilizing effect].

Undertaken to ensure perfection of sterilization with ethylene oxide gas (EO gas) in routine clinical laboratory practice, an investigation was made of the relationship between sterilization procedure and sterilizing effect using the film bag delivery system and chamber system. Using a biological indicator as a monitor of sterilizing effect, the efficiency of sterilization was studied under various likely conditions and compared. The results led to the following conclusions: 1. Sterilization with EO gas by the film bag delivery system, because of this procedure being unable to be performed at a constant temperature, was shown to prove inadequate due to insufficient exposure to gas especially in winter season (when room temperature fell below 10 degrees C). 2. With the EO gas sterilization method using the film bag delivery system, which is believed to be effective within the ordinary range of humidity of the atmosphere, sterilizing effect was recognized to be affected by excess wetting of an object of sterilization that was caused by inadvertent manipulation or due to a predisposing attribute of the object, such as shape or outline. 3. All materials are sterilized upon being packaged. It is necessary therefore to make best choice of package material with respect of texture and size. Reuse influence to sterilizing effect. 4. The method of sterilization with EO gas using the chamber system has the advantage in that operating conditions are all automatically controlled. For this reason, there was not a single instance of failure to sterilize due to inappropriateness of temperature and humidity. From these results it is concluded that sterilising effect was affected by sterilization procedure and condition.(ABSTRACT TRUNCATED AT 250 WORDS)

Ethylene Oxide

Design and use of a novel peracetic acid sterilizer for absolute barrier sterility testing chambers.

Increasing use is being made of absolute barrier chambers in the pharmaceutical industry for sterility testing of sterile pharmaceuticals. Since these barriers are designed to form a microbial-tight enclosure to eliminate laboratory microbial contamination derived from the operator and the environment,it is important that the method used to sterilize these barriers, product containers, and articles used within, provide a high degree of sterility assurance. A major part of incorporating absolute barriers in the sterility testing laboratory at the Upjohn Company was to design an automated sterilization system to facilitate the spraying of a liquid sterilant, e.g., peracetic acid, inside these barriers. This article focuses on general design considerations, specific details of the apparatus, and the operational steps. The sterilization efficacy of this method is also described, with particular emphasis on validation criteria and results. Finally, operational sterility testing results are discussed.

Equipment Contamination

[Sterilization of the female with special reference to laparoscopic tubal sterilization].

Within recent years female sterilization has gained a place of great importance as an effective contraceptive method. Nowadays sterilization is hardly subject to any formal restrictions, but is solely the responsibility of the woman concerned, the couple or the physician. The indications for sterilization may be divided into two main groups, namely for medical indications and family planning. Sterilization is carried out on the uterus or tubes. Today the method of choice is laparoscopic tubal sterilization. The most frequently used procedure and the safest way of tubal occlusion is bipolar electrocoagulation of the entire isthmic tubal portions without additional section of the tubes. The complication rate in laparoscopic tubal sterilization depends on the type of anaesthesia, on the skill of the operator and on patient risk factors such as obesity etc. Minor intraoperative complications are of little importance since they are easily remedied during laparoscopy. Severe complications are rare, but have to be corrected immediately by laparotomy. Pregnancies on account of failure in sterilization procedure may be due to the occlusion technique, the lack of experience of the operator, the timing of sterilization and the observation period. Altogether 2372 laparoscopic tubal sterilizations were performed at the University Department of Obstetrics and Gynaecology in Graz between January 1st, 1975 and December 31st, 1985. During these eleven years a specific technique has been developed, whereby standard methods were simplified and improved. No intrauterine cannula for mobilizing the uterus is applied to avoid infection or perforation. The preferred "single-puncture technique" offers many advantages over the older "double-puncture technique", since fewer instruments are needed and the operation is less time-consuming, eliminating the danger of a second puncture. Moreover, the procedure is easier to perform and the cosmetic result better. In high-risk patients, especially the extremely obese, the laparoscopic technique has been improved by a special method of introducing the trocar.

Female

Sterilization needs in the 1990s: the case for quinacrine nonsurgical female sterilization.

Much evidence suggests that demand for sterilization is a function of supply of surgical sterilization services in less-developed countries. If such services were greatly expanded, the number of procedures performed would grow dramatically. While the prevalence of sterilization is estimated to increase from 23.5% to 28.8% of married women of reproductive age in the 1990s, there will actually be 106,432,000 more couples of reproductive age at the end of this decade than at its beginning who use either no method or a far less effective method with much lower continuation rates than sterilization--nearly a 20% increase. To achieve a mean sterilization prevalence of 47% of married women of reproductive age in the less-developed world, as now seen in the Republic of Korea and Puerto Rico, the number of sterilizations would need to be more than double the current projection for the 1990s: 328,429,000 rather than 159,000,000. The quinacrine pellet method for nonsurgical female sterilization offers hope that this enormous shortfall in sterilization services can be overcome in this decade.

Adult

[Sterility--a woman's concern? Coping behavior and partnership structure of sterile couples of various diagnostic groups].

Three groups of sterile couples with functional, tubal and andrologically caused sterility were compared for the evaluation of sex- and diagnosis-dependent kinds of overcoming of their disease. Anamnestic data, anxiety, the coping strategy of sterility and as well the couple and personality structure are analysed. Independent of the organic cause of sterility the women showed a higher emotional reaction level (anxiety, coping stress) than their husbands. In all groups the "healthy" partners dominate. The subfertile men seem to be more subordinate, less engaged and interested and not so anxious as their wives and as the husbands of tubal sterile women. The healthy women with andrologically caused sterility present a highly emotional engagement in the overcoming and treatment of their disease. Possible emotional mechanisms and social stereotypes of self-presentation are discussed, which may cause the intense engagement of the women independent of the organic cause of sterility.

Adaptation, Psychological

[Variations in the waiting time for sterilization and sterilization rate in Norway].

A comparison of data from independent sources on numbers of sterilized women indicates that figures for sterilization in Norwegian hospitals are incomplete. More than 50% of the sterilized women are outpatients and nearly 50% of the inpatients are sterilized in connection with other treatment. Permanent geographical differences in sterilization rates are observed, as well as a large variation in the waiting time. We have been unable to verify a simple relation between sterilization rate and waiting time or length of waiting list.

Adult

[The role of mycoplasma in sterility. A study of 150 sterile women (author's transl)].

150 women who were being treated for sterility had their cervical mucus searched for T. mycoplasma. Group I: 123 women who had no obvious cause for sterility. 45.5 per cent had T. mycoplasma (56/123). Group II: Out of 27 women who had a major cause for sterility there were 48 per cent (13/27) who were carriers of T. mycoplasma. The incidence of T. mycoplasma in control fertile women was 53 per cent (16/30). After treatment with Doxycycline: 5 pregnancies were obtained out of Group I, which is 8.9 per cent. none in Group II. The mycoplasma seems to play a very minor role in sterility. Its incidence is identically the same in women who are sterile or normally fertile. With treatment only a very small percentage (8.9 per cent) of pregnancies were obtained in carriers of mycoplasma who did not have another obvious cause for their sterility.

Adult

Microwave sterilization: a method for home sterilization of urinary catheters.

A standard microwave oven has been used to sterilize catheters used for intermittent self-catheterization. Catheters were incubated for 60 minutes in a suspension of microorganisms isolated from the urine of patients with urinary tract infections. Each catheter was removed from the suspension, placed in a paper bag and microwaved for 0 to 30 minutes. A control catheter was not microwaved. We tested 42 strains of microorganisms to determine the minimum microwaving time needed to sterilize the catheters. Representative urinary isolates of Escherichia coli, and Klebsiella, Proteus, Enterobacter, Pseudomonas, Staphylococcus, Streptococcus and Candida species were tested. Mean sterilization time for all strains was 13.0 minutes (standard deviation +/- 5.7 minutes), with a range of 4.0 to 28.6 minutes. Repeat sterilization in the microwave oven did not affect the integrity of the catheter. A water heat sink of constant volume was required. A home microwave oven may be used as a method to sterilize red rubber catheters for reuse. This technique makes aseptic intermittent self-catheterization a practical possibility.

Cooking and Eating Utensils