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[Determination of the degree of severity of cerebral contusions].

Three degrees of severity of the brain contusion are generally distinguished today for working out the most rational and purposeful treatment. It is quite difficult to judge the severity of the contusion from the neurological picture alone because neurological manifestations of the brain contusions are very diverse and dynamic in character. The authors analysed 630 case records of patients with contusion of the brain and disclosed signs most characteristic of each degree of contusion. In appraising the severity of the contusion, the authors recommend resorting to the laboratory and instrumental diagnostic methods accepted currently in neurosurgical practice in addition to the neurological examination. The complex method of appraising the patients' condition makes the determination of the degree of severity of the brain contusion more trustworthy and objective.

Brain Concussion↗

Myocardial performance after contusion with concurrent hypovolemia.

Myocardial contusion may present as a benign nonclinical event or a life-threatening emergency. Although cardiac output is recognized to be decreased with major contusion, the contribution of hypovolemic shock to myocardial dysfunction is unclear. This study was designed to evaluate the relationship between myocardial contusion and hypovolemic shock. After Sprague-Dawley rats were anesthetized, contusions were administered at either 80 psi or 120 psi. Half of each group then underwent hypovolemic shock. After 24 hours of recovery, cardiac hemodynamics were studied in each subgroup using the Neely-Langendorff apparatus. Isoenzymes and histology were evaluated as well. The data showed that rats undergoing hypovolemic shock in each subgroup had a significant decrease in cardiac output when compared with their controls. This decrease was more pronounced in the 120-psi group. Cardiac isoenzyme levels were elevated in all groups. Microscopic evaluations showed contusion in the controls and necrosis in the shock groups. Patients whose injuries are compatible with myocardial contusion and hypovolemic shock should be resuscitated quickly and evaluated for myocardial dysfunction secondary to infarction.

Animals↗

Ureteral contusion with gunshot wounds.

The entity of ureteral contusion with a gunshot wound has not been well described in the literature. The blast effect of the bullet, even one of low velocity, can cause contusion of the ureter manifested by hematuria, no extravasation on the IVP, and a normal appearing ureter or some bruising of the ureteral wall and periureteral tissues. The ureteral contusion may resolve or may progress to delayed necrosis of the ureteral wall with urine leakage. Twelve cases of ureteral contusion with gunshot wounds are reported. The ureter was found contused at exploration in two patients; one had excision of the contused area with end-to-end anastomosis and the other had a nephrostomy and ureteral splint. The ureter appeared normal in ten patients and no immediate treatment was performed to the ureter; eight had no postoperative evidence of urine leakage and two developed a urinary fistula.

Adult↗

Bone contusions of the knee: increased lesion detection with fast spin-echo MR imaging with spectroscopic fat saturation.

PURPOSE: To demonstrate that T2-weighted fast spin-echo (FSE) imaging with spectroscopic fat saturation (FS-FSE) increases the conspicuity between normal marrow and bone contusions in posttraumatic knees. MATERIALS AND METHODS: Seventy-six magnetic resonance (MR) studies of the knee were prospectively evaluated in 73 consecutive patients with knee pain. Conspicuity of regions of microtrabecular trauma (bone contusions) was evaluated with conventional T2-weighted imaging in the sagittal plane, T2-weighted FSE imaging in the coronal plane, T2-weighted FS-FSE imaging in the sagittal plane, and conventional T1-weighted imaging in the sagittal plane. RESULTS: Twenty-six foci of bone contusion were identified in 21 knees with the FS-FSE technique. Only 16 foci were demonstrated with conventional T2-weighted imaging. Six of the sites of bone contusion were not demonstrated with the FSE technique alone (without fat saturation). Four of the bone contusions were not seen on T1-weighted images; these sites of bone contusion were substantially more conspicuous on the FS-FSE images. In addition, FS-FSE imaging was more sensitive in demonstrating the extent of microtrabecular trauma. CONCLUSION: T2-weighted FS-FSE imaging is a sensitive and rapid method of identifying and assessing the extent of microtrabecular trauma about the knee.

Adult↗

Lateral-compartment bone contusions in adolescents with intact anterior cruciate ligaments.

PURPOSE: To determine how often lateral-compartment bone contusions are seen on magnetic resonance (MR) images of knees in adolescents with intact anterior cruciate ligaments (ACLs). MATERIALS AND METHODS: MR images obtained in 53 adolescent patients (30 male, 23 female; aged 10-20 years) were reviewed to detect bone contusions in the posterolateral tibial plateau or the lateral femoral condyle. ACLs were also evaluated with accepted criteria for the diagnosis of ligamental disruption. Only patients referred for evaluation of a knee injury or mechanical symptoms were included. RESULTS: Five patients with bone contusions had an intact ACL at MR imaging. One of the five had arthroscopic confirmation. Fifteen other patients had complete ACL disruptions: 13 of these patients had typical bone contusions; the other two had no bone abnormalities but had chronic ACL tears. Thus, 28% of the 18 patients with typical bone contusions had intact ACLs. CONCLUSION: Adolescents may have the same pattern of contusions as adults but may maintain an intact ACL owing to increased ligamentous laxity.

Adolescent↗

Effects of contusion and flail chest on pulmonary perfusion and oxygen exchange.

Localized pulmonary contusions were produced in the right lower lobes (RLL) of 12 anesthetized ventilated dogs, 6 of which had a flail segment in the chest wall over the RLL. Pulmonary oxygen exchange during ventilation with air and oxygen, and the lobar distribution of pulmonary perfusion by radioactive microsphere techniques were measured before and 3 h after contusion, and again after thoracotomy. These were compared to 12 noncontused dogs, 6 of which had a flail segment. Contusion produced an average decrease of 20 Torr in Pao2 during air breathing and an average increase in Qs/Qt of less than 5%, surprisingly small given the doubled weight and average 44% shunt calculated in the contused lobe after thoracotomy. No significant effect of flail or thoracotomy was found, indicating that the presence of an intact chest wall and lung-chest wall interdependence was not a major factor preventing a larger increase in intact whole-animal shunt of contused dogs. Rather, the small effect of this severe lobar injury on whole-animal shunt was due to a 30% decrease in RLL relative perfusion. This reduction was demonstrated to be localized to a smaller hemorrhagic subsection of the contused lobe.

Animals↗

Altered patterns of reflex excitability subsequent to contusion injury of the rat spinal cord.

1. The present study investigated regulation of reflex excitability after experimental contusion injury of the spinal cord. 2. Four measures of H-reflex excitability were evaluated in normal rats and at 6, 28, and 60 days after contusion injury at the T8 level: 1) reflex thresholds, 2) slope of the reflex recruitment curves, 3) maximal plantar H-reflex/maximal plantar M-response (Hmax/Mmax) ratios, and 4) rate-sensitive depression (i.e., the decrease in reflex magnitude relative to repetition rate). 3. Tested as a function of the afferent volley magnitude, the thresholds for reflex initiation fell progressively subsequent to contusion injury. No change was observed at 6 days postinjury, and the decrease at 28 days was not significant. However, by 60 days postinjury, the threshold had decreased by 23% of the maximal afferent volley, and this decrease was significant, [analysis of variance (ANOVA, P < or = 0.01)]. 4. Hmax/Mmax ratios elicited in postcontusion animals at 0.3 Hz were not significantly different from those recorded in normal animals. 5. The slopes of the recruitment curves were markedly reduced subsequent to contusion injury. The decrease was greatest at 6 days postinjury. Although some recovery toward normal occurred at 28 and 60 days postinjury, the slopes of recruitment curves in postcontusion animals remained significantly decreased. 6. H-reflexes elicited at 1-5 Hz were less sensitive to rate depression in postcontusion animals than in normal animals at the same respective frequencies. The decrease was progressive in onset, becoming significant by 28 days postinjury, and of an enduring nature, i.e., still significantly different from normal in the reflexes tested 60 days postinjury. 7. Rate sensitivity of the tibial nerve monosynaptic reflex (MSR) was also compared in normal and postcontusion animals. Rate sensitivity of the tibial MSRs was significantly reduced at 28 and 60 days post-contusion, compared with normal animals. 8. These data indicate that significant changes in lumbar reflex excitability result from midthoracic contusion injury of the spinal cord. These changes include reflex threshold, slope of recruitment, and rate-sensitive depression. Although recruitment slope was most altered in the shortest postinjury interval tested, followed by some recovery, the other changes were progressive in onset and enduring in duration.

Animals↗

Right ventricular contusion: experimental pathophysiology and treatment in an open-chest canine preparation.

To investigate the pathophysiology and treatment of right ventricular (RV) contusion we assessed biventricular function via volume expansion in eight open-chest, anesthetized, ventilated dogs. Measurements were obtained before and after RV contusion with a captive bolt pistol and during dobutamine infusion. RV contusion depressed both RV and left ventricular (LV) performance as assessed by classical ventricular function curves (p less than 0.05). Dobutamine reduced filling pressure (p less than 0.05) and increased cardiac output (CO) (p less than 0.01) when infused post contusion. Because, on inspection, the LV was not contused, the apparent depression in LV function is most likely due to reduced diastolic compliance secondary to ventricular interdependence. In support of this possibility, in four dogs, LV performance significantly improved (p less than 0.05) when the pericardium was opened. We conclude that RV contusion can depress the relationship between CO and filling pressures in both ventricles and that dobutamine is superior to volume in treating the resultant low cardiac output state.

Animals↗

[The characteristics of the diagnosis, intensive therapy and surgical procedure in contusions of the heart].

Based on an analysis of results of treatment of 86 patients and wounded with severe combined traumas and gunshot wounds the authors have made a diagnostic scale including 8 most significant symptoms of heart contusions which determine the index MS-HC (military surgery-heart contusion). The value of this index in scores gives a reliable picture of heart contusion. Patients having not less than 15 scores are considered to be in a critical state. Lethality among them was 80%, the survivors had complications in 45% of the cases. The autopsy showed that the diagnosis of heart contusion by the score system was correct and coincided with the autopsy findings in 94.7%. A rational program of intensive therapy for heart contusions is proposed aimed at the maintenance and development of compensatory abilities in the hemodynamic system. The basic drugs are thought to be nitroglycerin, dobutrex (dophamin), neoton. The rational surgical policy for injuries of different areas of the body, terms of its realization, indications related with different degrees of the patient's state are determined. The realization of these approaches to treatment of wounds and traumas involving contusions of the heart made lethality of such patients 27% less.

Algorithms↗

Secondary insults worsen blood brain barrier dysfunction assessed by MRI in cerebral contusion.

OBJECT: Understanding the cause of post-traumatic intracranial hypertension requires information about the pathophysiology of edema formation. Secondary insults are known to exacerbate edema formation following experimental contusion, however the influence of these insults on blood brain barrier (BBB) integrity is not known. This study non-invasively assesses the influence of hypoxia and hypotension on BBB permeability following experimental cortical contusion. METHODS: Sprague-Dawley rats (350-380 g) were divided into three groups. Group A: (n = 3) Sham, Group B (n = 8) focal injury (controlled cortical impact 6.0 m/sec, 3 mm depth), Group C (n = 8), focal injury with secondary insult. Cortical BBB integrity was assessed four hours post-trauma using an i.v. bolus of 0.2 mmol/kg Gd-DTPA with serial T1 MR images, over 30 minutes. Absolute tissue concentrations of Gd were measured empirically using known references. The time course of accumulation was analyzed with respect to BBB permeability. RESULTS: BBB permeability was greatest in the site of contusion, and Gd accumulation was greatly enhanced by secondary insult (p < 0.01). Regions of lowest ADC and maximal swelling correlated with regions of maximal BBB permeability (p < 0.05). CONCLUSIONS: Secondary insults enhance BBB dysfunction in contusion. Positive relationships between low ADC, tissue swelling and BBB dysfunction suggest synergy between underlying cytotoxic swelling and BBB permeability in contusion. These data also suggest that restoration of BBB integrity after injury may be an energy dependent process. These findings have important implications for the pathophysiology of ICP elevations following cerebral contusion.

Animals↗

Mechanisms of the mass effect of cerebral contusion: ICP monitoring and diffusion MRI study.

OBJECTIVE: Cerebral contusion is sometimes associated with a non-hemorrhagic mass effect which progresses rapidly within 12-48 hours post-trauma. In order to determine the mechanisms underlying such a mass effect, we analyzed data obtained from ICP monitoring and diffusion MRI in a total of 38 patients with cerebral contusion. METHODS: Diffusion imaging and ADC mapping were performed employing 1.5 T echo planar MRI. ADC values were expressed as a ratio relative to the values of intact brain areas. RESULTS: In 6 patients, ICP became uncontrollable medically and surgical resection of the contused brain tissue was eventually performed. Within 24 hours post-trauma, diffusion images revealed a low intensity core and a high intensity rim in the contusion. The ADC ratio increased in the central area (1.13 +/- 0.21) and decreased in the peripheral area (0.67 +/- 0.14). A crescent-shaped zone of very high ADC ratio (1.45 +/- 0.14) was observed at the border between these two areas during the period of 24-48 hours. CONCLUSIONS: It appears that the capacitance of edema fluid accumulation is elevated by cellular disintegration in the central area, whereas the resistance to edema fluid propagation is elevated by cellular swelling in the peripheral area. We suggest that such events facilitate extracellular edema fluid accumulation within contused brain tissue and contribute, together with cellular swelling itself, to the non-hemorrhagic mass effect of cerebral contusion.

Brain Concussion↗

Detection of lipid peroxidation and hydroxyl radicals in brain contusion of rats.

To examine the relationship between the free radicals and brain tissue damage, we investigated the intensity of brain hydroxyl (OH) radical generation and lipid peroxidation in the rat contusion injury model. A unilateral contusion was induced by a weight-drop method. All rats were decapitated six hours after the injury, and brain samples were taken from three portions (core, peripheral, and distal) to examine the specific gravity as an indicator of brain edema, generation of OH using an electron paramagnetic resonance spectrometer (EPR), and malondialdehyde (MDA) and 4-hydroxyalkenals production. Analysis of the specific gravity revealed cerebral edema on the ipsilateral side in the injured group. The signal intensity of EPR in the core and peripheral portions in the contusion group was significantly higher than that in the distal portion of the contusion group and that of all portions in the control animals. No significant difference was observed between the core and peripheral portions of the contusion group. The MDA and 4-hydroxyalkenals production was significantly higher in the core and peripheral portions than in the distal portion of the contusion group and that of all portions of the control group. The degree of posttraumatic brain edema was closely correlated with the increase of DMPO-OH adduct, MDA, and 4-hydroxyalkenals. These results support the current concept that free radical production following traumatic brain injury may induce lipid peroxidation and may be the direct cause of edema formation.

Animals↗

Implantation of neuronal suspensions into contusive injury sites in the adult rat spinal cord.

Implants of various types of neuronal and nonneuronal tissue have shown promise for the amelioration of certain disorders of the adult mammalian brain. Implants may also have therapeutic potential for some lesions of the spinal cord. To examine the feasibility of implantation for clinically relevant spinal cord injuries, we have implanted cells into injury sites produced by a well-characterized and standardized rat model of contusive injury. To reduce the possibility of the implantation procedure itself causing damage to the spinal cord, the tissue was dissociated and a suspension of cells introduced into the cord via a small bore needle. To test the implantation procedure, dissociated adult rat dorsal root ganglia were used because of the ease with which these neurons could be distinguished after implantation. The extent to which functional deficits were produced or exacerbated by the implantation procedure was assessed by behavioral tests of groups of rats that had been implanted (implant controls), contused (injury only) or contused and implanted (injury-implant). Survival of the implanted neurons was assessed by quantitative morphological analysis of histological sections taken through the injury/implant sites at different times following injury. In addition, the histopathology of the contusive injury sites was compared for rats that had or had not received immediate or delayed implants. Results indicated that cell suspensions could be implanted into the spinal cord without causing a functional deficit in an otherwise uninjured animal or exacerbating a standardized incomplete contusive injury. Implanted neurons survived for at least 4 weeks in all contusion sites whether implantation was performed immediately following injury or after a delay of 1 week.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Delayed transplantation of olfactory ensheathing glia promotes sparing/regeneration of supraspinal axons in the contused adult rat spinal cord.

The aim of this study was to determine the preferred time and environment for transplantation of olfactory ensheathing glia (OEG) into the moderately contused adult rat thoracic spinal cord. Purified OEG were suspended in culture medium with or without fibrinogen and injected into the contused cord segment at 30 min or 7 days after injury. Control animals received a contusion injury only or injection of only medium 7 days after contusion. The effects on axonal sparing/regeneration and functional recovery were evaluated 8 weeks after injury. The grafts largely filled the lesion site, reducing cavitation, and appeared continuous with the spinal nervous tissue. Whereas in 7d/medium only animals, 54% of spinal tissue within a 2.5-mm-long segment of cord centered at the injury site was spared, significantly more tissue was spared in 0 d/OEG-medium (73%), 0 d/OEG-fibrin (66%), 7 d/OEG-medium (70%), and 7 d/OEG-fibrin (68%) grafted animals. Compared with controls, the grafted animals exhibited more serotonergic axons within the transplant, the surrounding white matter, and the spinal cord up to at least 20 mm caudal to the graft. Retrograde tracing revealed that all but the 0 d/OEG-fibrin graft promoted sparing/regeneration of supraspinal axons compared with controls. Overall, the 7 d/OEG-medium group resulted in the best response, with twice as many labeled neurons in the brain compared with 7 d/medium only controls. Of the labeled neurons, 68% were located in the reticular formation, and 4% in the red, 4% in the raphe, and 5% in the vestibular nuclei. Hindlimb performance was modestly but significantly improved in the 7 d/OEG-medium group. Our results demonstrate that transplantation of OEG into the moderately contused adult rat thoracic spinal cord promotes sparing/regeneration of supraspinal axons and that 7 d transplantation is more effective than acute transplantation of OEG. Our results have relevant implications for future surgical repair strategies of the contused spinal cord.

Age Factors↗

Experimental study on hemorheological and pathological changes following severe myocardial contusion.

OBJECTIVE: To investigate the mechanism of severe myocardial contusion in rabbits. METHODS: A total of 32 New Zealand rabbits were randomly divided into 2 groups, the severe myocardial contusion group (the experimental group, n=16) and the sham-impact control group (the control group, n=16). Hemorheological parameters, interleukin-8 (IL-8) in serum, the water contents of myocardium and polymorphonuclear neutrophil (PMN) infiltration in contused myocardium were observed at 24 hours after the experiment. RESULTS: As compared with the control group, the hemorheological parameters in the experimental group including the whole blood viscosity (etab), erythrocyte aggregation index (EAI), hematocrit (HCT), serum fibrinogen (Fib), Casson viscosity (Gammay) and erythrocyte sedimentation rate (ESR), significantly increased. The IL-8, PMN infiltration and the water contents of the contused myocardium also significantly increased. CONCLUSIONS: It suggests that the hemorheological disorder, increase of IL-8 in serum, and PMN infiltration in contused myocardium may contribute to the development of cardiac edema and secondary myocardial damage following severe myocardial contusion in rabbits.

Journal Article↗

Cerebral contusions: re-evaluation of the mechanism of their development.

At the present writing, the biomechanics of "coup-contrecoup" contusions may be summarized as follows: 1) "Coup" contusions are caused by the slapping effect of discrete areas of inbeding bone during impact. "Contrecoup" contusions are caused by the movements of the brain against irregular and rough bony enviornment. 2) When the head is relatively fixed, a blunt discrete impact causes a "coup" lesion with no "contrecoup" effect. 3) When the head is free to move, a blunt impact will cause a contrecoup lesion or lesions and no "coup" effect. 4) "Fracture contusion" is caused by the slapping effect of the fracture site on the outbending cerebral surface. In such cases, occassionally the dura may be torn. 5) Deeper contusions in the substance of the brain are due to inertial stresses from relative movements and pressure gradients. 6) Contusions of the cerebral tonsils are due to their relative movements at the posterior fossa-foramen magnum junction.

Animals↗

[Clinical study of traumatic cerebellar contusion].

Numerous authors have reported cases of traumatic cerebellar contusion. A few authors have emphasized delayed deteriorations in patients with cerebellar contusion. Since CT scan was introduced into daily clinical practice, it has become obvious that cerebellar contusion were not necessarily associated with severe head injuries. Of 1176 head-injured cases admitted to our department in the past five years, eight (0.7%) were diagnosed by CT scans to have cerebellar contusion. Among eight cases, two of them were deeply comatose on admission because they had concomitant diffuse cerebral contusions and died soon after admission. Remaining six cases had predominantly cerebellar contusion on CT scans and showed minimal neurological deficits on admission. Most of them recovered without any significant disabilities. But two of them deteriorated several hours after injury, showing brain-stem compression for which emergency posterior fossa decompression were carried out without recovery. One of them underwent external decompression which resulted in intracerebellar massive hemorrhage and the other missed the timing of surgery. In conclusion, it is important to prepare for unexpectedly rapid deterioration, for which wide craniectomy and sufficient internal decompression would be required.

Adult↗

[Surgical tactics in contusions of the cerebral hemispheres].

The author conducted complex examination of 540 patients who were operated on for brain contusion. Comparison of the clinical and instrumental findings with the pathomorphological changes in the brain (disclosed during operation or autopsy) revealed the structural features of contusion foci of convex and pole-basal localization which were factors underlying the three-dimensional enlargement of the affected brain lobe in cases of increasing perifocal edema. The results of surgical management were analysed according to the character of the contusion foci, the extent of traumatic softening of the white matter in the zone of the contusion, and the volume of surgical debridement of the foci. It is concluded that decompression of the brain can be accomplished by removing massive convex and pole-basal contusion foci penetrating the deep layers of the cerebral hemispheres; the volume of surgical debridement of contusion foci is determined by their macrostructure and the size of the zone of white matter softening.

Adolescent↗