Background and ObjectivesRepeated impacts in high-contact sports such as American football can affect the brain's microstructure, which can be studied using diffusion MRI. Most imaging studies are cross-sectional, do not include low-contact players as controls, or lack advanced tract-specific microstructural metrics. We aimed to investigate longitudinal changes in high-contact collegiate athletes compared with low-contact controls using advanced diffusion MRI and automated fiber quantification.MethodsWe examined brain microstructure in high-contact (football) and low-contact (volleyball) collegiate athletes with up to 4 years of follow-up. Inclusion criteria included university and team enrollment. Exclusion criteria included history of neurosurgery, severe brain injury, and major neurologic or substance abuse disorder. We investigated diffusion metrics along the length of tracts using nested linear mixed-effects models to ascertain the acute and chronic effects of subconcussive and concussive impacts, and associations between diffusion changes with clinical, behavioral, and sports-related measures.ResultsForty-nine football and 24 volleyball players (271 total scans) were included. Football players had significantly divergent trajectories in multiple microstructural metrics and tracts. Longitudinal increases in fractional anisotropy and axonal water fraction, and decreases in radial/mean diffusivity and orientation dispersion index, were present in volleyball but absent in football players (all findings |T-statistic|> 3.5, p value <0.0001). This pattern was present in the callosum forceps minor, superior longitudinal fasciculus, thalamic radiation, and cingulum hippocampus. Longitudinal differences were more prominent and observed in more tracts in concussed football players (n = 24, |T|> 3.6, p < 0.0001). An analysis of immediate postconcussion scans (n = 12) demonstrated a transient localized increase in axial diffusivity and mean/radial kurtosis in the uncinate and cingulum hippocampus (|T| > 3.7, p < 0.0001). Finally, within football players, those with high position-based impact risk demonstrated increased intracellular volume fraction longitudinally (T = 3.6, p < 0.0001).DiscussionThe observed longitudinal changes seen in football, and especially concussed athletes, could reveal diminished myelination, altered axonal calibers, or depressed pruning processes leading to a static, nondecreasing axonal dispersion. This prospective longitudinal study demonstrates divergent tract-specific trajectories of brain microstructure, possibly reflecting a concussive and repeated subconcussive impact-related alteration of white matter development in football athletes.
Aneurysmal bone cysts (ABC) are rare in the paranasal sinuses. They are benign expansile multicystic masses containing blood-filled spaces which typically occur in the long bones of pediatric patients. The lesion often produces symptoms due to the compression of adjacent structures or pathological fracture and depends on localization. In this case report, we discuss a 28-year-old female who presented with left-sided headache, left eye proptosis, and diplopia. Radiologic evaluation revealed a left paranasal sinus expansile multicystic mass with internal blood fluid levels displacing and thinning the left medial orbital wall which suggested the diagnosis of ABC. Radiologists should be familiar with and comfortable diagnosing ABC in the head and neck, and be able to differentiate this entity from others, such as telangiectatic osteosarcoma. Biopsy can be challenging since blood products may be the only material identified and may produce tissue that is difficult to interpret or misdiagnosed.
OBJECTIVE. The purpose of this study was to evaluate the level of agreement in diagnostic probability for selected phrases among radiologists and emergency medicine (EM) physicians. MATERIALS AND METHODS. A survey was distributed to the radiologists and EM physicians at our academic institution. Respondents selected the degree of diagnostic probability they believe was conveyed by 18 commonly used phrases chosen from studies in the radiology literature. Potential responses for the degree of diagnostic probability were < 10%, ≈ 25%, ≈ 50%, ≈ 75%, and > 90%. RESULTS. Seventy-eight percent (28/36) of EM residents and 56% (14/25) of EM attending physicians (combined fellows and attending physicians) completed the survey; 83% (15/18) of radiology residents and 81% (17/21) of radiology attending physicians completed the survey. There was a high degree of shared understanding for most phrases between the departments except for the phrase "compatible with," which was associated with a higher degree of diagnostic probability by radiologists than by EM physicians (p = .02). Although no term was significantly more specific than any other within the ≈ 50% category or below, "most likely" and "diagnostic of" were significantly more specific than other terms in the ≈ 75% and > 90% categories, respectively. CONCLUSION. The results of this study show a high degree of shared understanding between radiologists and EM physicians for most of the phrases (17/18) in the survey. The only phrase that showed a significant difference was "compatible with." These results can be used to generate diagnostic probability groups with suggested phrases that can be used when creating radiology reports, thereby improving communication with the emergency department.
Background and Purpose: Athletes participating in high-contact sports experience repeated head trauma. Anatomical findings, such as a cavum septum pellucidum, prominent CSF spaces, and hippocampal volume reductions, have been observed in cases of mild traumatic brain injury. The extent to which these neuroanatomical findings are associated with high-contact sports is unknown. The purpose of this study was to determine whether there are subtle neuroanatomic differences between athletes participating in high-contact sports compared to low-contact athletic controls. Materials and Methods: We performed longitudinal structural brain MRI scans in 63 football (high-contact) and 34 volleyball (low-contact control) male collegiate athletes with up to 4 years of follow-up, evaluating a total of 315 MRI scans. Board-certified neuroradiologists performed semi-quantitative visual analysis of neuroanatomic findings, including: cavum septum pellucidum type and size, extent of perivascular spaces, prominence of CSF spaces, white matter hyperintensities, arterial spin labeling perfusion asymmetries, fractional anisotropy holes, and hippocampal size. Results: At baseline, cavum septum pellucidum length was greater in football compared to volleyball controls (p = 0.02). All other comparisons were statistically equivalent after multiple comparison correction. Within football at baseline, the following trends that did not survive multiple comparison correction were observed: more years of prior football exposure exhibited a trend toward more perivascular spaces (p = 0.03 uncorrected), and lower baseline Standardized Concussion Assessment Tool scores toward more perivascular spaces (p = 0.02 uncorrected) and a smaller right hippocampal size (p = 0.02 uncorrected). Conclusion: Head impacts in high-contact sport (football) athletes may be associated with increased cavum septum pellucidum length compared to low-contact sport (volleyball) athletic controls. Other investigated neuroradiology metrics were generally equivalent between sports.
Central skull base osteomyelitis is a rare entity that can demonstrate confounding radiologic, clinical, and laboratory data leading to a delay in diagnosis. The morbidity and mortality for skull base osteomyelitis are both high, thus a rapid diagnosis is required for appropriate treatment. In this case report, we discuss a 68-year-old male who presented with acute left facial nerve paralysis in the setting of chronic headache and left mucoid middle ear effusion. Radiologic evaluation revealed abnormal hypointense marrow of the central skull base on T1 weighted magnetic resonance imaging, preclival mass-like tissue, and short segment luminal narrowing of the left cervical ICA with mycotic aneurysm formation. Extensive workup via a multidisciplinary approach, including neurology, otolaryngology, neurosurgery and radiology led to a diagnosis of central skull base osteomyelitis. A familiarity of this disease process is important for the radiologist in order to facilitate appropriate patient referral and treatment. This case emphasizes the importance of considering this diagnosis in the setting of headache, cranial neuropathy, and abnormal skull base imaging with adjacent preclival soft tissue mass.
A 28-year-old man presented to his primary care physician for chronic headaches, memory concerns and a history of traumatic brain injury. A non-contrast brain MRI was performed, which revealed a large T2 hyperintense, lobulated mass in the left infratemporal fossa. The lesion had an intracranial
Objective(s): To assess the incidence of central nervous system abnormalities in pediatric subjects with sensorineural hearing loss (SNHL). Methods: One hundred forty-three pediatric subjects evaluated for SNHL at a single academic center from 2007 to 2014 were included and divided into eight diagnosis groups based on etiology of SNHL. One hundred forty-three age- and gender-matched control subjects with no known brain-related pathology or history of hearing loss were included as healthy controls for comparison. Two neuroradiologists independently evaluated magnetic resonance imaging (MRI) and computed tomography (CT) scans for each subject. Comparison of abnormal cerebral development was performed using an ordinal logistic regression model. Concordance between CT and MRI of the temporal bone was assessed using the kappa statistic. Results: The etiologies of hearing loss in our cohort were 37.8% genetic, 12.6% infectious, 1.4% ototoxin-induced, and 48.3% idiopathic. Brain MRI revealed cerebral developmental abnormalities in defined regions in >30% of the SNHL cohort, significantly more than in normal-hearing pediatric controls. The Sylvian fissure, Virchow-Robin spaces, and lateral ventricles were most commonly affected. In the temporal bone, the percentage of subjects with concordant findings on CT and MRI was ≥92% across all anatomical structures. Conclusion: MRI revealed a high incidence of intracranial abnormalities, suggestive of aberrant development of auditory and nonauditory neural structures associated with SNHL. CT and MRI share a high degree of concordance in detecting temporal bone anomalies. Inclusion of MRI as part of the workup of congenital SNHL may facilitate the detection of developmental anomalies of the brain associated with SNHL.
Collegiate football athletes are subject to repeated head impacts. The purpose of this study was to determine whether this exposure can lead to changes in brain structure. This prospective cohort study was conducted with up to 4 years of follow-up on 63 football (high-impact) and 34 volleyball (control) male collegiate athletes with a total of 315 MRI scans (after exclusions: football n = 50, volleyball n = 24, total scans = 273) using high-resolution structural imaging. Volumetric and cortical thickness estimates were derived using FreeSurfer 5.3's longitudinal pipeline. A linear mixed-effects model assessed the effect of group (football vs. volleyball), time from baseline MRI, and the interaction between group and time. We confirmed an expected developmental decrement in cortical thickness and volume in our cohort (p < .001). Superimposed on this, total cortical gray matter volume (p = .03) and cortical thickness within the left hemisphere (p = .04) showed a group by time interaction, indicating less age-related volume reduction and thinning in football compared to volleyball athletes. At the regional level, sport by time interactions on thickness and volume were identified in the left orbitofrontal (p = .001), superior temporal (p = .001), and postcentral regions (p < .001). Additional cortical thickness interactions were found in the left temporal pole (p = .003) and cuneus (p = .005). At the regional level, we also found main effects of sport in football athletes characterized by reduced volume in the right hippocampus (p = .003), right superior parietal cortical gray (p < .001) and white matter (p < .001), and increased volume of the left pallidum (p = .002). Within football, cortical thickness was higher with greater years of prior play (left hemisphere p = .013, right hemisphere p = .005), and any history of concussion was associated with less cortical thinning (left hemisphere p = .010, right hemisphere p = .011). Additionally, both position-associated concussion risk (p = .002) and SCAT scores (p = .023) were associated with less of the expected volume decrement of deep gray structures. This prospective longitudinal study comparing football and volleyball athletes shows divergent age-related trajectories of cortical thinning, possibly reflecting an impact-related alteration of normal cortical development. This warrants future research into the underlying mechanisms of impacts to the head on cortical maturation.
A 28-year-old man presented to his primary care physician for chronic headaches, memory concerns and a history of traumatic brain injury. A non-contrast brain MRI was performed, which revealed a large T2 hyperintense, lobulated mass in the left infratemporal fossa. The lesion had an intracranial
Collegiate football athletes are subject to repeated traumatic brain injuriesthat may cause brain injury. The hippocampus is composed of several distinct subfields with possible differential susceptibility to injury. The aim of this study is to determine whether there are longitudinal changes in hippocampal subfield volume in collegiate football. A prospective cohort study was conducted over a 5-year period tracking 63 football and 34 volleyball male collegiate athletes. Athletes underwent high-resolution structural magnetic resonance imaging, and automated segmentation provided hippocampal subfield volumes. At baseline, football (n = 59) athletes demonstrated a smaller subiculum volume than volleyball (n = 32) athletes (-67.77 mm3; p = 0.012). A regression analysis performed within football athletes similarly demonstrated a smaller subiculum volume among those at increased concussion risk based on athlete position (p = 0.001). For the longitudinal analysis, a linear mixed-effects model assessed the interaction between sport and time, revealing a significant decrease in cornu ammonis area 1 (CA1) volume in football (n = 36) athletes without an in-study concussion compared to volleyball (n = 23) athletes (volume difference per year = -35.22 mm3; p = 0.005). This decrease in CA1 volume over time was significant when football athletes were examined in isolation from volleyball athletes (p = 0.011). Thus, this prospective, longitudinal study showed a decrease in CA1 volume over time in football athletes, in addition to baseline differences that were identified in the downstream subiculum. Hippocampal changes may be important to study in high-contact sports.
Three months following a craniectomy and cranioplasty indicated for intraperenchymal hemorrhage, a 74-year-old male suffered a cerebrospinal fluid leak complicated by delayed tension pneumocephalus and declining neurologic status demonstrating a particularly rare complication of neurologic trauma and surgery. While with symptoms of a space occupying mass is the most common presentation, the patient presented cerebrospinal fluid leak prompting CT imaging and diagnosis. Urgent surgical decompression is necessary and was performed resulting in improved mental status.
We report a case of a 23-year-old man who presented with a 1-month history of gradually worsening right eye pressure, blurry vision and proptosis, which was not exacerbated with Valsalva or change in position. MRI of the orbits demonstrated a well-defined, lobulated, cystic, trans-spatial mass with areas of internal haemorrhage (figure 1) and fluid–fluid levels (figure 2) in the superior medial right orbit, which extended posteriorly through the superior orbital fissure to the cavernous sinus (figure 3). The lesion slightly expanded the orbital …
Lupus Mastitis (LM) is a rare presentation of lupus panniculitis involving the breast. Because it often presents as a tender palpable mass, a workup for malignancy usually ensues. It is well documented that surgery may worsen the condition; therefore, it is important to consider LM in the differential of a palpable breast mass in patients with systemic lupus erythematosus (SLE). Currently, management of LM remains primarily medical. We discuss the multi-disciplinary work-up of LM, and further describe its appearance on serial Magnetic Resonance (MR) exams.
The purpose of this study was to determine the prevalence of pulmonary embolism in outpatients who return to care with clinical suspicion of pulmonary embolism and are evaluated by computed tomography pulmonary angiogram (CTPA) after an initial CTPA was negative for pulmonary embolism within the preceding 12 months. Following institutional review board approval, we performed a retrospective review of all CTPAs performed at our institution from June 2006 through June 2009. One hundred and seventy-two outpatients [102 women; mean age 56.7±18.8 (SD)] with an initial CTPA that was negative for pulmonary embolism and a subsequent CTPA within 12 months of their initial study were included in our analysis. Each patient's CTPA was assessed for evidence of pulmonary embolism and their electronic medical records (EMR) reviewed for the presence of risk factors associated with venous thromboembolism (VTE). Fisher exact test (two-tailed) analysis was used to assess whether thromboembolic risk factors had an effect on developing pulmonary embolism after an initial negative CTPA. CTPAs were negative for pulmonary embolism in 165 (96%) of 172 outpatients who returned to care within 12 months after an initial negative CTPA. Eighty-five (49.4%) of 172 patients had no identified thromboembolic risk factors. In the group with no risk factors none (0%) of 85 patients (P=0.028) had pulmonary embolism at the time of repeat CTPA. This may help appropriately triage patients evaluated for pulmonary embolism and reduce the number of unnecessary CTPAs.
We report a case of a previously healthy 33-year-old male who presented to his primary care physician with nausea, vomiting, diarrhoea and fever. One week prior to presentation the patient reported a history of sore throat which he presumed to be a viral infection and sought no medical attention. Upon hospital presentation, the patient was admitted and rapidly progressed to sepsis and respiratory failure. Goal directed therapy was initiated and the patient was intubated. Further clinical work up included blood cultures revealing Fusobacterium varium bacteraemia, and CT and ultrasound imaging demonstrated thrombosis of the internal jugular vein and septic pulmonary emboli. A diagnosis of Lemierre syndrome was made, and antibiotics as well as anticoagulation therapy were initiated. The patient's clinical condition improved with treatment, and he was discharged home on hospital day 12 with completion of an uneventful 4-week course of outpatient antibiotic and anticoagulation therapy.
We report a case of a 33-year-old man who presented with progressive painless testicular swelling. The patient reported a history of blunt testicular trauma 3 weeks prior to presentation, which resulted in minor pain and a sensation of ‘popping’ at the right groin. Physical exam revealed an enlarged non-tender right hemiscrotum. Labs, including chem10, white blood cells and lactic dehydrogenase were normal. α-fetoprotein and human …