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[The application of Ultrasound Biomicroscope in anterior segment contusion].

PURPOSE: To study the clinical value of Ultrasound Biomicroscope in anterior segment contusion. METHODS: Seven eyes with anterior segment contusion were examined by regular ophthalmic examination, ophthalmic B-scan, and Ultrasound Biomicroscope. RESULTS: Ultrasound Biomicroscope can show angle recession, cyclodialysis, iridodialysis, zonular breaking, lens dislocation and vitreous protrusion to posterior chamber. In most cases cyclodialysis and shallow detachment of choroid can not be diagnosed because shallow anterior chamber and hypton. CONCLUSION: The result suggests that Ultrasound Biomicroscope has high clinical value in diagnosis of anterior segment contusion, especially in cornea edema, hyphemia, hypton, Ultrasound Biomicroscope can refer precise diagnosis of anterior segment contusion.

Adult↗

Pulmonary contusion: the hidden danger in blunt chest trauma.

Pulmonary contusion, known as the most common potentially lethal chest injury seen in this country, necessitates aggressive nursing assessment and diagnosis if treatment is to be effective and prognosis improved. Initial chest x-rays will usually not display the severity of the contusion. The nurse maintains a high index of suspicion for pulmonary contusion when assessing chest trauma patients. By monitoring ventilatory parameters to assess oxygenation, the nurse acknowledges that hypoxemia is the hallmark clinical sign. Through comprehension of the different mechanisms of injury, the role of chest compliance, and the pathologic alterations, the critical care nurse delivers skillful and knowledgeable care to the patient with a pulmonary contusion.

Contusions↗

[Performing ability after kidney contusions and kidney ruptures].

30 casualties who had sustained a kidney contusion (23 patients) or a kidney rupture (7 patients) were questioned about their posttraumatic possibility of action after their recovery. Essential result: Fundamental differences were detected between the two groups. The high degree of the ability to act for a longer period of time may be explained by the comparatively low acuteness of pain after kidney contusions and the impression of most casualties of not being seriously injured. In contrast to kidney contusions, kidney ruptures are generally accompanied by moderate to severe pain. Accordingly, the possibility of action in cases of kidney ruptures is restricted more frequently and to a greater extent than in cases of kidney contusions. The two groups had one thing in common: the casualties' mostly deliberate posttraumatic reaction; there were only 3 patients in a state of helplessness.

Arousal↗

[Pre-equatorial contusion syndrome. Analysis apropos of 59 cases].

The term "pre-equatorial syndrome" covers post-traumatic involvement of the anterior segment and of the pre-equatorial retina, due to a frontal distension mechanism. In a retrospective study, we studied 582 cases of ocular contusions from 1973 to 1986 in patients who required a brief hospitalisation in our clinic because of the severity of the initial injury. The aim of the study was to assess the occurrence of this syndrome, its clinical features and evolution. 59 complete pre-equatorial syndromes were found in this sample (10.2% of all the ocular contusions). The follow up ranged from one to 168 months. Games and sports injuries in children and work injuries in young men were most commonly found causes (2/3 of the cases). Hyphema and angle recession were the most frequently observed lesions (69%). All hyphemas disappeared spontaneously without surgical drainage. Subluxation of the lens was present in 10.6% and late post traumatic cataract occurred in four cases; all eyes were operated on by intracapsular extraction, three of them in the first year following the traumatism and the last twelve years latter. Intraocular pressure was high in 15.3% (but was easily controlled) and was very low in 5.1%. Retinal edema and haemorrhages were the most common involvement of the peripheral retina. Retinal dialysis was noticed in 13.6% especially in the upper nasal area: buckling surgery was performed in these cases with good results. Anterior and peripheral retinal damages was situated on the same meridian in 80% of the cases, five eyes showed a 180 degrees opposite setting while there was no obvious alignment in 15 of the cases. This syndrome did not impair final visual function alone, whereas severe associated ocular contusions of the posterior pole gave a very low visual outcome in 16 cases. This retrospective review emphasizes the main characteristics of this syndrome. Accurate examination of the irido-corneal angle and peripheral retina is of paramount importance in every ocular contusion.

Adolescent↗

Accumulation of technetium-99m stannous pyrophosphate in contused myocardium.

The uptake of technetium-99m stannous pyrophosphate in contused myocardium was measured as a function of time from the insult. The free wall of the dog's left ventricle was surgically exposed and struck with a spring-loaded paddle. Pyrophosphate was injected intravenously from 1 1/2 to 47 1/2 hr after the injury. After 1/2 hr of incubation the hearts were removed and the Tc-99m content of contused and noncontused myocardium was measured. Pyrophosphate was concentrated in contused myocardium at all of the time periods tested. Contused-to-normal ratios for pyrophosphate uptake ranged from 8.1 (8 hr) to 41.9 (48 hr).

Animals↗

Spectrum of myocardial contusion.

During a consecutive period of 26 months, 42 patients with blunt chest trauma were diagnosed as having a myocardial contusion on the basis of an abnormal electrocardiogram (ECG) in 36 patients, elevated creatine phosphokinase (CPK) in 39 patients, and positive CPK-Muscle Brain (CPK-MB) isoenzyme in 33 patients. Using these screening modalities, the incidence of myocardial contusion in patients with blunt chest trauma increased from 7 per cent when viewed retrospectively to 17 per cent when viewed prospectively. Eight patients had cardiac index determinations only; of these, three were less than 2.9 1/min/M2. An additional 21 patients underwent a standard fluid challenge of 500 cc of 5 per cent plasmanate infused over 30 minutes allowing construction of a Starling Curve. Five patterns of ventricular function curves were observed. Six patients had biventricular dysfunction, six patients had isolated right ventricular dysfunction, three patients had isolated left ventricular dysfunction, three patients had an "unslope-peak-downslope" pattern, and three patients had normal ventricular function studies. Multiple gated acquisition (MUGA) scans were abnormal in ten patients and normal in 12 patients. Major morbidity and mortality due to myocardial contusion occurred in 17 per cent of the (7/42) patients; of these, three had biventricular dysfunction, one had left ventricular dysfunction, and two had a low cardiac index. This experience suggests that screening tests are sensitive in detecting myocardial contusion in blunt chest trauma, but are not predictive of major morbidity or mortality. Only direct hemodynamic measurement with construction of a Starling Curve was useful in determining the severity of the myocardial injury and identifying those patients at greatest risk.

Adolescent↗

Morphometry of experimental lung contusion: an improved quantitative method.

Alterations of lung tissue following pulmonary contusion are mainly assessed qualitatively. Quantitative examinations were limited up to now, to investigations in X-ray and computer tomography images, since morphometry of contused and normal biotic lung tissues seemed to be methodologically unfeasible. In order to overcome this shortcoming, the lungs of pigs were examined after unilateral lung contusion. In semithin sections, the thickness distribution of the interstitium and the volume distribution of the alveolar cavities were studied. Using an image analysis system a sequence of detection, erosion and skeletonisation steps were used to recognize the septal tissue correctly. The percent distributions were calculated from chord measurements after a sequence of erosion steps. It turned out that this technically simple procedure enabled highly reliable and valid results to be obtained, concerning the morphometric analysis of the alterations in the contused, as well as in the non-injured lungs.

Animals↗

Ventilatory support of the trauma patient with pulmonary contusion.

Pulmonary contusion is a common clinical condition seen in patients with thoracic trauma. The mortality rate from isolated pulmonary contusion is low, but when combined with other severe injuries patients with pulmonary contusion can have mortality rates as high as 10% to 57%. Early aggressive mechanical ventilatory support can prevent progressive atelectasis and worsening of arterial oxygenation. Careful titration of ventilatory support to physiologic end points is a reasonable approach. Unfortunately, data comparing the means of achieving the end points are lacking and no published prospective, randomized trials demonstrate superiority of any particular mode of support. Careful attention to detail and physiologic management of the patient in a goal-directed fashion using a multidisciplinary team approach involving the respiratory care practitioner, nurse, and physician is the current state of the art in the management of patients with pulmonary contusion.

Contusions↗

Pulmonary contusions: management and implications for trauma nurses.

TOPIC: Pathophysiology of pulmonary contusions, current methods for assessing blunt chest trauma patients, pulmonary parameters and diagnostic methodology, and innovative ventilatory treatment. PURPOSE: To heighten awareness of pulmonary contusion, the treatment and potential sequelae. SOURCES: Published information and clinical experience. CONCLUSION: A pulmonary contusion is a common potentially lethal chest injury seen in this country. Trauma clinicians should have heightened awareness about this injury because the injury is often overlooked and the clinicians frequently do not comprehend the mechanisms causing pulmonary contusions.

Contusions↗

[Clinical and histopathological examination of enucleated eyes with contusion ruptures of cornea after radial keratotomy].

Histopathological (histological, histochemical, and morphometric) examinations of 8 enucleated eyes with contusion ruptures of the cornea 2-13 years after radial keratotomy showed two patterns of changes caused by contusion and peculiar reparative processes in the keratotomic incisions. A characteristic feature of contusion injury after radial keratotomy is combination of changes typical of contusion and an extensive perforating corneal wound after its rupture along the incisions. Reparative processes in the keratotomic incisions were regarded as incomplete cicatrization resultant from inhibition of keratoblastic activity after a low-traumatic operation. The structure of cicatrice after keratotomic incisions differed from that of corneal cicatrices after cut wounds. The cicatrice consisted of an epithelial plug and stromal par with picrinophilic amorphous filamentous material and individual keratocytes but no proteoglycanes or filamentous matrix. The length of cicatrice was 80-95% of intact cornea thickness. The structure of keratotomic cicatrice implies its insecurity and sensitivity to blunt injury, and therefore patients should be informed of the necessity to avoid injuries.

Adult↗

Intermediate filament change in astrocytes following mild cortical contusion.

Astrocytes are known to become reactive as a result of various types of lesions. They upregulate astrocytic-specific intermediate filament glial fibrillary acidic protein (GFAP) and show a positive signal for the intermediate filament vimentin, a protein primarily found in developing astrocytes. An animal model for cortical contusions has been developed that manifests many of the neuropathologies seen in human closed head injury. The model involves an electronic controlled pneumatic impact device (ECPI), which can deliver precise and controlled cortical contusions to an animal. This model can be used to study astrocyte response to injury, leading to a better understanding of glial reaction to head trauma in humans. Young adult male Fisher 344 rats were subjected to a mild dorsal lateral cortical impact. The astrocytic intermediate filaments GFAP and vimentin were upregulated in a time-dependent manner 2 days after injury. By 30 days following contusion these intermediate filaments returned to near preinjury levels. Using the same injury model bromodeoxynridine (BrdU) was injected in additional animals on the day of sacrifice, 1, 2, 4, and 10 days after injury, to label cells synthesizing new DNA. Double labeling utilizing fluorescence immunocytochemistry indicated that on postinjury day 2 very few GFAP-positive cells were double labeled with BrdU. No double-labeled cells were seen at the other time points. These data suggest that astrocyte proliferation may not be a major response to mild cortical contusion and that vimentin expression may not necessarily be associated with astrocytic proliferation in response to injury.

Animals↗

Spinal cord contusion impairs sperm motility in the rat without disrupting spermatogenesis.

Our previous studies demonstrated various abnormalities in spermatogenesis after spinal cord injury (SCI) in cord-transected rats. In this study, we examined whether abnormalities in spermatogenesis in SCI rats were related to the degree of SCI. We used spinal cord-contused (SCC) rats as a model. Adult male Sprague-Dawley rats were subjected to various degrees of cord contusion caused by the weight of a rod dropped from different heights (12.5, 25, 50, and 75 mm) using a New York University IMPACTOR. Testicular histology revealed persistent complete spermatogenesis in all SCC rats 4, 8, or 14 weeks after cord contusion regardless of the extent of SCI. Northern blot complementary DNA (cDNA) hybridization revealed transient but significant decreases in the levels of Sertoli cell-specific transcripts in SCC rats. In addition, levels of messenger RNA (mRNA) transcripts for germ cell-specific transition protein-2 and protamine-1 were consistently decreased in these rats. Such effects were related to the height of the weight drop and were associated with reduced levels of mRNA for cyclic adenosine monophosphate (cAMP) responsive element modulator (CREM). These results demonstrated specific effects of SCI on spermiogenesis and were consistent with altered cAMP signaling in testicular cells after SCI. Sperm motility was also significantly decreased in SCC rats and was related to the height of weight drop. Normal sperm motility recovered only in those rats injured by weight drop from 12.5- and 25-mm heights. In summary, current results demonstrate persistent abnormalities in spermiogenesis and sperm motility in rats that suffered spinal cord contusion by weight drop. Such effects were related to the height of the weight drop and thus to the extent of SCI.

Animals↗

Endogenous repair after spinal cord contusion injuries in the rat.

Contusion injuries of the rat thoracic spinal cord were made using a standardized device developed for the Multicenter Animal Spinal Cord Injury Study (MASCIS). Lesions of different severity were studied for signs of endogenous repair at times up to 6 weeks following injury. Contusion injuries produced a typical picture of secondary damage resulting in the destruction of the cord center and the chronic sparing of a peripheral rim of fibers which varied in amount depending upon the injury magnitude. It was noted that the cavities often developed a dense cellular matrix that became partially filled with nerve fibers and associated Schwann cells. The amount of fiber and Schwann cell ingrowth was inversely related to the severity of injury and amount of peripheral fiber sparing. The source of the ingrowing fibers was not determined, but many of them clearly originated in the dorsal roots. In addition to signs of regeneration, we noted evidence for the proliferation of cells located in the ependymal zone surrounding the central canal at early times following contusion injuries. These cells may contribute to the development of cellular trabeculae that provide a scaffolding within the lesion cavity that provides the substrates for cellular infiltration and regeneration of axons. Together, these observations suggest that the endogenous reparative response to spinal contusion injury is substantial. Understanding the regulation and restrictions on the repair processes might lead to better ways in which to encourage spontaneous recovery after CNS injury.

Animals↗

Surgical management of early massive edema caused by cerebral contusion in head trauma patients.

Early massive edema caused by severe cerebral contusion results in elevation of intracranial pressure (ICP) and clinical deterioration within 24-72 hours post-trauma. Previous studies indicate that cells in the central area of the contusion undergo shrinkage, disintegration, and homogenization, whereas cellular swelling is predominant in the peripheral area, suggesting that early massive edema is attributable to high osmolality within necrotic brain tissue and may generate an osmotic potential across central and peripheral areas. We analyzed the effects of surgical excision of necrotic brain tissue in 182 patients with cerebral contusion registered with Japan Neurotrauma Data Bank; 121 patients (66%; Group I) were treated conservatively, and 61 (34%; Group II) were treated surgically. Most Group II cases (90%) underwent complete excision of necrotic brain tissue and evacuation of clots. Group I demonstrated higher mortality at 6 months post-trauma compared to Group II (48%) vs. 23%; p = 0.0001; n = 182). Striking differences were observed in patients scoring 9 or more on Glasgow Coma Scale at admission (56% vs. 17%); p = 0.017; n = 45) and demonstrated "talk-and-deteriorate" (64% vs. 22%: p = 0.026; n = 29), supporting our hypothesis that early massive edema is caused by cerebral contusion accompanied by necrotic brain tissue, indicating that surgical excision of necrotic brain tissue provides satisfactory control of progressive elevation in ICP and clinical deterioration in many cases.

Adolescent↗

Mixed dishomogeneous hemorrhagic brain contusions. Mapping of cerebral blood flow.

The aim of the study was to verify whether regional cerebral blood flow (rCBF) was distributed centrifugally in traumatic hemorrhagic contusions with multiple cores within an oedematous area. Seventeen traumatic brain contusions, from 14 patients with severe head injury (GCS < 9), were analyzed during 39 Xenon-enhanced computerized tomography (Xe-CT) studies. The CBF was measured in 3 concentric regions of interest (ROls): the hemorrhagic core, the intracontusional oedematous low density area and a 1 cm rim of pericontusional normal-appearing brain tissue surrounding the contusion. Differences between rCBFs in the three ROIs were found (p < 0.0001). rCBF in both the hemorrhagic core (21.4 +/- 19.4 ml/ 100gr/min) and the intracontusional low density area (28.4 +/- 19 ml/100gr/min) were lower than rCBF in pericontusional normal-appearing area (41.9 +/- 16 ml/100gr/min) (p < 0.0001). No significant differences were found between rCBF measured in the hemorrhagic core and intracontusional low density area (p = 0.184). Our study suggests that in the mixed density contusions with multiple hemorrhagic cores, the CBF is concentrically distributed, improving from the core to the periphery.

Adult↗

Antioxidant, OPC-14117, attenuates edema formation, and subsequent tissue damage following cortical contusion in rats.

Oxygen free radicals contribute to various kinds of tissue injury processes within the central nervous system. It has been suggested that inhibition of free radical formation has the potential to attenuate secondary neural tissue damage involving ischemia or trauma, and antioxidant therapy may offer a promising approach. In the present study, employing a cortical contusion model in the rat, contusion-induced neural damage, was evaluated by investigating edema formation, behavioral activities and histological changes. The effects of the superoxide radical scavenger, OPC-14117, were also tested to determine how free radicals may contribute to such neural damage. The results demonstrated that cerebral contusion induces a progressive decrease in tissue specific gravity representing edema formation, and behavioral deficits in the Morris water maze test and habituation of exploratory activity. Histological examinations revealed necrotic cavity formation in the cortex and selective neuronal death of the hippocampal CA3 region. These changes were significantly attenuated by OPC-14117, which was administered as a single dose immediately following trauma induction. The above results indicate that oxygen free radicals are involved in contusion-induced edema formation, subsequent tissue damage and cognitive deficits. The superoxide radical scavenger, OPC-14117, has a powerful therapeutic potential for preventing secondary cell damage following traumatic brain injury.

Animals↗

Determination of contusion and oedema volume by MRI corresponds to changes of brain water content following controlled cortical impact injury.

The time-course of brain contusion/oedema development as visualised by high-resolution MRI was compared to brain water content following experimental brain contusion. 36 Sprague-Dawley rats underwent Controlled Cortical Impact Injury (CCII), 24 served as controls. In 16 animals serial T2 weighted MRI investigations at 1 h, 4 h, 24 h and 7 d after CCII were performed, in 44 rats hemispheric brain water content was determined at the same time points by wet dry weight method. MRI lesion volume (mm3) and brain water content of injured hemisphere (%) showed for absolute and relative values a strictly parallel course. Significant posttraumatic increases had a maximum at 24 hours. Values on day 7 were below those of 1st h in both methods. The simple non-invasive MRI method quantifies contusion and surrounding penumbra according to elevated tissue water signal. The invasive wet dry weight method quantifies changes of hemispheric brain water content that are likely to take place in contusion core and surrounding penumbra. Therefore, from a theoretical aspect both methods seem comparable. Following experimental brain contusion, the simple MRI method might be an equally sufficient way to describe post-traumatic or post-therapeutic changes of lesion size and brain oedema.

Animals↗

Hemodynamic depression and microthrombosis in the peripheral areas of cortical contusion in the rat: role of platelet activating factor.

Cerebrovascular damages leading to subsequent reductions in regional cerebral blood flow (rCBF) may play an important role in secondary cell damages following traumatic brain injury (TBI). Recent studies have demonstrated that rCBF markedly decrease in experimental model of TBI (e.g. fluid percussion injury, acute subdural hematoma, contusion). However, precise mechanisms underlying post-traumatic CBF reduction remain unclear. In the present study, the rCBF changes and microthrombosis formation were investigated in a cortical contusional model in rats, and the effects of etizolam (platelet activating factor antagonist) on microthrombosis were tested. The rCBF in the peripheral areas increased transiently, and decreased to ischemic level 3 hours post- injury. The histological examinations revealed microthrombosis formation in the contused area, extending from the center to the peripheral areas within 6 hours post-injury. The rCBF decrease and the contusion necrosis volume were significantly attenuated by etizolam administration. These results indicate that platelet activating factor is involved in microthrombosis formation and hemodynamic depression, and resultant ischemic damages within areas surrounding the contusion.

Animals↗