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Biomedical subjects

I Snur

Publications and source records attributed to I Snur.

6 recordsLinked to original sources

Epidemiological analysis of methicillin-resistant Staphylococcus aureus in a Zagreb Trauma Hospital using a randomly amplified polymorphic DNA-typing method.

During a 1-month period in 1996, all inpatients and staff in the Zagreb Trauma Hospital were screened for methicillin-resistant Staphylococcus aureus (MRSA) carriage in order to control MRSA spread within the hospital. During the study period, 663 patients were admitted to the hospital, and screening prior to discharge revealed that 42 were colonised or infected with MRSA. Twenty-three (55%) of these would not have been detected if active screening had not been performed. Amongst 205 staff members, MRSA carriage was only found in one (0.5%) nurse. The prevalence and incidence of MRSA carriage varied significantly amongst the wards and was related to the length of hospital stay. One-third of the patients colonised or infected with MRSA had a history of previous admission to another hospital, and one-third were transferred to another institution after discharge. Thirty-nine of 42 MRSA isolates shared the same antibiotic sensitivity pattern, suggesting endemic spread of MRSA. However, randomly amplified polymorphic DNA molecular typing revealed four profiles, the most common involving 15 of 36 tested strains. There was no obvious clustering of epidemiological types by ward, except for the appearance of a single type on the burns unit, and it was likely that different strains had been introduced into the hospital by patient transfers from elsewhere. The results of this study indicate that a substantial proportion of MRSA carriers escape infection control measures if active screening is not performed. Based on the results of this study, steps have been taken to improve interhospital communication about the transfer of patients colonised with MRSA. Randomly amplified polymorphic DNA typing proved to be a useful aid to epidemiological investigations of MRSA.

Carrier State↗

[The role of proteins and amino acids in acute phase response].

The acute phase response after severe trauma leads to the major changes in synthesis and levels of plasma proteins. Activation of humoral cascade system and activity of phagocytes accelerates healing. In the prospective study the levels of serum total proteins and albumin in relation to acute phase proteins, fibrinogen and CRP were measured in the group of 34 severe traumatized patients, age 31.21 +/- 1.52 yrs submitted to the standardized ICU treatment. An increase in the levels of serum total protein from 51.07 to 52.53 g/l was registered during the first week. The levels of albumin were below 30 g/l for most of the patients during the entire two-week examination. The initial levels of albumin were 26.40 +/- 6.13 g/l and at the end of the examination 29.60 +/- 2.97 g/l (p = 0.008). The levels of fibrinogen showed the increase to 5.93 g/l during the entire examination. The rapid increase in the levels of CRP from 5 mg/l to 169.67 mg/l 48 hours after trauma and were still high at the end of examination 45 mg/l. That implies the activity of inflammatory mediators. The role and supplement of certain amino acids in maintaining the integrity of intestinal mucosa and immune system during the acute response to stress is discussed.

Acute-Phase Reaction↗

[Spinal shock. Diagnosis and therapy. Problems and dilemmas].

Spinal shock is the term used to signify the effect of sudden injury or transection of the spinal cord. It is characterized by sensory, motor and reflex loss occurring below the level of injury. High level spinal injuries are associated with loss of autonomous nerve system control. This condition still remains an enigma which challenges the neurophysiologists, clinical neurologists and the spinal surgeons. There are many different theories relating to the cause and nature of spinal shock as well as to the level of spinal injury that results in spinal shock. Duration of spinal shock varies from patient to patient, and some of the symptoms can last up to 12 weeks. Clinical presentation of spinal shock involves changes in skeletal muscles, sensory response, breathing, heart, blood vessels, vasomotor response, body temperature, GI tract, urinary bladder and genitalia. Somatosensory evoked potentials also reflect changes caused by spinal shock. The clinician's task is to treat clinical symptoms provoked by spinal shock in an attempt to reduce its intensity and duration. This can be achieved by operative and medicamentous therapy, promptness and efficacy being the treatment imperatives. The authors discuss diagnostic and therapeutic methods used in the treatment of spinal shock and present their own experience and viewpoints in terms of reduction of spinal shock intensity and duration.

Humans↗

[Multiorgan dysfunction syndrome (MODS) caused by long bone fractures in young persons].

In a prospective open study, the effect of continuous epidural analgesia by the 0.5% bupivacaine-methadone mixture on the perfusion in the lower extremities was examined in a group of 34 patients (mean age 31.25-1.52 years). The patients were undergoing a standard intensive care treatment. The minimum analgetic dose was determined by means of an analogous-visual ten-point scale, and the minimum perfusion dose (MBD) by measuring the foot temperature on the injured side with electronic thermometer Genius 3000 (Sherwood, USA). Immediately, following the injury, the foot temperature on the involved side measured 27.40-2.20 (25.20-31.30) degrees C. The temperature differences between the injured and healthy foot were 5.92-2.19 degrees C, p = 0.0000. Forty minutes after the induction of epidural analgesia, the temperature of the injured foot increased to 32.44-1.75 degrees C, p = 0.0000. After 24 hours, it measured 32.44-1.27 degrees C, i.e. almost the same as in the healthy foot, with the auricle temperature being 36.20-1.62 degrees C. The total dose of methadone during the first 24 hours was 20 mg, and the 0.5% bupivacaine dose was 133.00-48.80 mg/24 hrs.

Adult↗