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[Wound contamination in conventionally air-conditioned operating rooms as compared to laminar-flow-operating-rooms (author's transl)].

Two operating rooms (OP K I, OP K II) with conventional air-conditioning and one operating room with horizontal laminar-flow-ventilation (TAVS) were compared by measurements of airborne microorganisms, settling microorganisms and wound contamination. In OP K I and OP K II the number of airborne colonie forming units (cfu) was about 8/m3 when the rooms were empty and between 70/m3 (OP K I) and 140/m3 (OP K II) during operations. The first air in the TAVS-OP contained less than 1 cfu/m3, downstream of the operating team up to 80 cfu/m3. The number of settling microorganisms at the wound site was about 13 cfu/100 cm2 h in OP K I and OP K II, and about 2 cfu/100 cm2 h in the TAVS OP. Wound swabs showed a contamination rate of 45% (OP K I) and 54% (OP K II) versus 31% under TAVS-conditions. The difference is statistically significant with p less than 0.05. Various other factors as e.g. the duration of exposition, traffic of persons into and out of the rooms and the fate of microorganisms after sedimentation into the wound are discussed. While the number of settling germs is growing in linear proportion to the duration of exposition, the number of wounds found contaminated does probably approach a steady state in dependence of sedimentation rate and die-off rate in the wound.

Air Conditioning

Bacterial dispersion in relation to operating room clothing.

The effect of operating clothing on the dispersal of bacterial particles from the wearers was studied in a dispersal chamber. A comparison was made of six gowns as well as four types of trousers. The gowns were of three basic types, namely a conventional cotton type, disposable types made of non-woven fabric and those of the total-body exhaust system (Charnley type). The dispersal chamber could simulate conditions as expected both in down-flow unidirectional ultra-clean systems and in a conventional turbulent plenum-ventilated system. It was found that the disposable gowns would reduce the dispersal rate by about 30% in the simulated conventionally ventilated system and about 65% in the laminar flow system. The total-body exhaust system (Charnley) would reduce the count by 10-fold in the conventional ventilated system and by 66-fold in the laminar-flow system. The poor performance of the gowns in conventionally ventilated systems was caused by the dispersal of bacterial particles from underneath the gown (about 80%). This was not reduced by the disposable gown and only partially by the Charnley type. This small drop would be further decreased in a conventionally ventilated operating-room as only scrubbed staff would wear the gown. In order to overcome this poor performance in conventionally ventilated operating-rooms impervious trousers would be required. Four types were studied and it was demonstrated that those made either from Ventile or non-woven fabric would reduce the bacterial dispersion fourfold. As these tests had been carried out in an artificial environment checks were carried out in the unidirectional-flow operating-room during total-hip arthroplasty. This was done by comparing conventional cotton gowns with non-woven gowns and total-body exhaust gowns. The results showed good correlation between the operating room and the chamber with the non-woven fabric gown but the total-body exhaust system did not perform as well in the operating room (12-fold compared to 66-fold) the difference being possibly due to the contribution from the patient. However, as this comparison was that which would be most open to influence from other variables confidence could be placed on the chamber test results. Values were also obtained for the total number of bacterial particles dispersed by persons during a standard exercise wearing different clothing. This count was dependent on the clothing worn but a median count of between 1000 and 1500 bacterial particles/min. would be expected when conventional clothing was worn, with a range of between 300 and 19,000. This count could be reduced to about 100/min. if a total-body exhaust suit was worn (range 30-400).

Air Microbiology

An improved operating room demagnetizer.

An operating room demagnetizer that utilized a pulsed, smoothly decaying oscillating magnetic field is described. The instrument can demagnetize a number of surgical instruments at one time and can provide instantaneous and complete demagnetization.

Magnetics

Recirculation of air in operating rooms.

A study of two neurosurgical operating rooms indicated a low, airborne, microbial population could be maintained by recirculating filtered air during surgical procedures. The commonly used turbulent system of air delivery was employed, and high-efficiency filters were effective in removing airborne bacteria generated within the operating room. Optimal rates and percent of recirculation were determined. The method of exhaust was confirmed to be important. Exhaust ports 40 in. above the floor were more effective in maintaining low airborne microbial populations than baseboard-level ports. The degree of activity of the surgical team and the number of personnel in the operating room correlated with the airborne bacterial counts.

Air Microbiology

Television in the operating room.

Television serves a number of useful purposes in the operating room. For the operating room supervisor, television surveillance provides an easy, economical method of keeping abreast of surgical and turnaround activities in each operating room. For the surgeon it provides an excellent vehicle for teaching, record keeping, remote viewing, and two way communication with the clinical pathology and x-ray departments, as well as with other consultants.

Education, Medical

Exposure to anesthetic gases and ethanol during work in operating rooms.

The concentration of halothane and ethanol in operating rooms was measured during 37 routine operations performed in nine different departments of surgery at six different hospitals. The time-weighted halothane concentrations in the respiratory zones of anesthetic and surgical nurses were 0.3--34.0 ppm (time-weighted average 7.2 ppm) and 0.1--9.2 ppm (time-weighted average 2.5 ppm), respectively, in the different operating departments. The corresponding ethanol concentrations were 0.3--36.5 ppm (time-weighted average 12.5 ppm) for anesthetic nurses and 1.5--46.6 ppm (time-weighted average 15.3 ppm) for surgical nurses. The anesthetic technique influences the exposure of the operating staff to anesthetic gases, but it does not affect exposure to ethanol. In controlled experiments volunteers were exposed to low concentrations of halothane or ethanol. About 60% of both substances was retained. The content of ethanol in the end-expired air approached zero within a few minutes after the end of exposure, while low residual concentrations of halothane were demonstrable for more than 1 h. Although exposure to ethanol is insignificant in relation to the metabolic capacity of the body, ethanol indicates the presence of volatile disinfectant components, and its spread through the room atmosphere should be kept in mind when the ventilation of operating rooms is designed. The effective elimination of airborne pollutants in operating rooms calls for good general ventilation in conjunction with local exhaust close to the sources of anesthetic gas leakage. General ventilation mainly affects the concentration of substances well-mixed with the room atmosphere, such as volatile disinfectant components and anesthetic vapor that has spread beyond the actual work zones of the medical staff. For a significant reduction in the concentration of anesthetic gases in the respiratory zones of the medical staff, the gases must be vented at the source of leakage. Since airborne anesthetics occur not only in operating rooms, general ventilation has to meet certain minimum requirements also in anesthetic induction rooms and recovery rooms. Operating rooms and anesthetic induction rooms must also be supplied with local exhaust systems.

Air Conditioning

Microbiologic environment of the conventional operating room.

Areas of potential contamination of the surgical wound in the conventional operating rooms include the back table, the unsterile suction receptacle, and the lack of a positive pressure relationship between the operating room and adjacent areas. Use of an impermeable hood with a large mask diminished contamination of the instrument table and the the wound from fallout of bacteria from the surgical team. The level of airborne bacterial comtamination in the operating room can be reduced by limiting the traffic and controlling the activity and the number of operating room personnel. Higher rates of postoperatively wound sepsis were noted in older operating rooms, particularly with difficult procedures and those performed later in the day. Conventional operating rooms should be categorized by the level of room air exchange per hour and the level of airborne bacterial contamination.

Air Microbiology

Operating room productivity. An evaluation format.

Operating room (OR) directors are frequently faced with the challenge of explaining or justifying OR productivity and the OR staffing budget. This justification may occur annually in conjunction with their budget submission or when consultants are employed to evaluate and improve OR productivity. Whatever the circumstance, a simple step-by-step format that helps physicians and administrators understand the impact of productivity on the nursing budget can be most useful. The authors present a format that was successfully used at a Boston teaching hospital.

Boston

Trends in operating room devices.

Although trends in the use of operating room devices have generally followed advances in technology, the trends are not always influenced as much by surgical need as they are by industrial expediency and commercial promotion. Nonetheless, a broad view of trends in OR devices definitely points to efforts at greater compatibility between devices made by different manufacturers. To mention a few examples, operating tables are being made more compatible with OR X-ray equipment; surgical lighting is being designed for greater compatibility with air-handling systems and video equipment; power consoles have reduced the clutter of tubes, hoses, and wires in complicated operations, and have become more functional in keeping with the trend away from electrical power and toward nitrogen power for driving surgical tools; cabinetry is being designed to employ clean-air principles; and surgical apparel and barrier materials are undergoing close scrutiny for their effectiveness against moist bacterial strike-through in lengthy wet operations. Operating room devices form an important segment of the devices classified by the FDA, and are expected to benefit by the application of standards in performance and safety. This trend will affect not only the devices themselves, but all other facets of operating room design and engineering.

Humans

Working in operating rooms, an unhealthy existance?

A literature survey indicates that some complaints occur relatively frequently among anesthetists and nurses working in operating rooms. Pollution of the air in the operating rooms by anesthetic gases is often considered as a possible cause. On account of this the degree of pollution has been determined. Concentrations of nitrous oxide and halothane were measured using an infrared absorption spectrophotometer. In each room the concentrations were measured at several different sites. In naturally ventilated operating rooms the concentrations increased steadily during operation. The measured values lied mostly between 1500 and 3000 ppm (vol/vol) for nitrous oxide and between 15 and 35 ppm for halothane. In mechanically ventilated operating rooms where no recirculation is applied a constant level was found some time after the beginning of an operation. The concentrations varied from about 100 to 500 ppm for nitrous oxide and from 1 to 5 ppm for halothane. In naturally ventilated operating rooms the anesthetic gases were rather homogeneously spread, while in mechanically ventilated rooms there was an inhomogeneous distribution. Scavenging of waste anesthetics is recommended.

Adult

Permanent pacemaker implantation in the cardiac catheterization laboratory versus the operating room: an analysis of hospital charges and complications.

Permanent pacemakers may be implanted in operating rooms, special procedure laboratories, or cardiac catheterization laboratories. Previous investigators have shown no difference in efficacy or complications in the operating room versus the cardiac catheterization laboratory. We retrospectively analyzed the hospital bills of 30 patients undergoing permanent pacemaker implantation at our institution. Group I was 15 consecutive patients implanted in the operating room and group II was 15 consecutive patients implanted in the cardiac catheterization laboratory, all by the same operators. Hospital charges that were specific to the site of implantation were analyzed. Physician charges for implantation, anesthesiologist, and radiologist charges were not analyzed. There were no in-hospital complications in either group. The mean charges for group I were $1,856.00 and group II were $1,075.00 (P < 0.001). We conclude that implantation of permanent pacemakers in the cardiac catheterization laboratory is associated with significantly lower hospital charges compared to implantation in the operating room and has an equally low complication rate.

Aged

Influence of operating room surface contamination on surgical wounds: a prospective study.

The influence of operating room contamination on wound infection rates in clean, clean-contaminated, contaminated, and septid procedures was studied by a prospective randomized study of 2,020 surgical wounds. Operating room surface contamination was assessed by the RODAC bacterial plate method. Control rooms uniformly received Wet-Vac cleaning between operations. Experimental rooms were not cleaned between consecutive clean operations, but were cleaned after contaminated operations. The difference in surface contamination between groups of experimental and control rooms was found to be significant at the P less than .05 level. Patients operated on in experimental and control rooms were followed up postoperatively to assess whether they experienced wound infection. No statistically significant differences in wound infection rates were found between experimental and control room operations as total groups, clean procedures, or operations of long duration.

Bacteria

The operating room environment as affected by people and the surgical face mask.

The microbiological counts were determined in an operating room suite of 8 rooms and a hallway. The bacterial counts in an empty operating room jumped statistically from 13 CFU/ft2/hr (+/- 31) to 24.8 (+/- 58.8) when the doors were left open (people in the hallways) and 447.3 (+/- 186.7) when 5 people were introduced. The wearing of a surgical face mask had no effect upon the overall operating room environmental contamination and probably work only to redirect the projectile effect of talking and breathing. People are the major source of environmental contamination in the operating room.

Air Microbiology