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Biomedical subjects

H R Harnsberger

Publications and source records attributed to H R Harnsberger.

At least 19 recordsLinked to original sources

CT and MRI of the normal and diseased perivertebral space.

The perivertebral space is in the midline, in the deep tissues of the neck, and can be identified from the skull base above to the mediastinum below. It is a discrete space completely enclosed by the deep layer of deep cervical fascia. The fascial attachments of the perivertebral space divide it into two areas, the anterior prevertebral and posterior paraspinal portions. We made a retrospective analysis of the radiologic and clinical records of 52 patients with lesions in the perivertebral space, to identify the imaging features that mark a lesion as originating in the perivertebral space and define the spectrum of pathology which occurs in the space. Mass lesions present in the prevertebral or paraspinal portions. In the former they usually involve the vertebral body, displacing the prevertebral muscles anteriorly. Epidural extension from lesions in the perivertebral space proper is common. Masses in the paraspinal perivertebral space usually displace the paraspinal muscles away from the spine. We found 9 inflammatory lesions, 29 malignant and 6 benign tumors, and 8 miscellaneous lesions.

Adolescent

Advanced techniques in magnetic resonance imaging in the evaluation of the large endolymphatic duct and sac syndrome.

The purpose of this report is to compare temporal bone computed tomography (CT) to high-resolution magnetic resonance (MR) imaging using a novel thin-section fast spin echo (FSE) pulse sequence in identifying and characterizing patients with large vestibular aqueduct syndrome. Sixteen patients with sensorineural hearing loss and a CT diagnosis of large vestibular aqueduct(s) underwent high-resolution fast spin echo magnetic resonance imaging with dual, 3-in phased array receiver coils centered over the external auditory canals. Magnetic resonance imaging parameters included axial and oblique sagittal fast spin echo with an effective slice thickness of 1 mm contiguous. Thirty-eight patients with 76 normal inner ears who underwent MR imaging using this technique had their endolymphatic duct measured. MR alone identified the enlarged endolymphatic sac seen along with the large endolymphatic duct in all cases. Three cases (five inner ears) with enlarged bony vestibular aqueducts on CT showed no evidence of endolymphatic duct or sac enlargement on MR. MR alone identified a single case of mild cochlear anomaly in conjunction with an enlarged endolymphatic duct and sac. In the normal population the size of the normal endolymphatic duct at its midpoint measured from 0.1 to 1.4 mm. Thin-section, high-resolution fast spin echo MR imaging of the inner ear may be superior to CT in the evaluation of patients with the large vestibular aqueduct syndrome.

Adolescent

Computed tomography treatment planning in IR-192 brachytherapy in the head and neck.

Brachytherapy dose prescription and treatment planning lag behind the state-of-the-art for external beam therapy. As altered fractionation of external beam therapy improves patient outcome in head and neck cancer, there will be an increased need to compare the two radiotherapy techniques. Currently, implant techniques and dose prescription documentation are not uniform, dose prescription to a target volume is subjective, and implant quality is poorly understood and not routinely assessed. All contribute to a lack of scientifically rigorous brachytherapy clinical trials. Studies designed to combine tumor imaging and dosimetry data are important in the evolution of brachytherapy treatment planning. Head and neck implants, which often require nonparallel, arching, or looping source carriers for all but small tumors in order to encompass the target volume adequately, were used to evaluate the clinical utility and feasibility of computed tomography as a treatment planning tool in brachytherapy. Following placement of plastic afterloading tubes under general anesthesia, orthogonal radiographs with dummy sources in the afterloading tubes are obtained as customary for source localization. With the patient in the same position, axial CT scans are obtained with the dummy seeds still in place for treatment planning. The implant physician, using data from the pre-treatment diagnostic CT scan, outlines target areas on sequential images creating a 3-dimensional target volume. By superimposing anatomic data with isodose curves one can objectively define implant parameters important in clinical trials analysis. These include minimum target absorbed dose, implant uniformity, and treatment to target volume ratio. The results of the first 10 patients are presented and implications of these data regarding the analysis of implant technique, implant quality, and implant optimization are discussed. The technique as performed is laborious but practicable in the clinical research setting of head and neck implant. Further research efforts should improve, simplify, and objectify brachytherapy and hasten the time when rigorous multi-institutional brachytherapy trials will be reality.

Adult

Efficacy of gadoteridol for magnetic resonance imaging of extracranial head and neck pathology.

RATIONALE AND OBJECTIVES: This study evaluated the efficacy of gadoteridol in patients with extracranial head and neck pathology. METHODS: One hundred twenty-two magnetic resonance imaging (MRI) cases from a multicenter safety and efficacy trial of gadoteridol in patients with suspected head and neck pathology were randomly assigned for evaluation to one of two blinded neuroradiologists. RESULTS: Enhancement of pathology after gadoteridol injection was noted in 96 cases (78.7%) and provided additional diagnostic information in 57 cases (46.7%). Improved lesion visualization was noted in 37 (64.9%) of these 57 cases; an increase in the number of lesions seen was noted in 4 (7.0%) of 57 cases. Blinded readers determined that additional diagnostic information provided by gadoteridol would have resulted in a change in diagnosis in 20 (35.1%, or 16.4% of total population) of 57 patients. CONCLUSION: These results demonstrate that gadoteridol is an efficacious agent for enhanced MRI of head and neck pathology.

Adult

Clinical-radiologic issues in perineural tumor spread of malignant diseases of the extracranial head and neck.

The radiologic and clinical records of 52 patients with radiologically documented perineural tumor were reviewed to assess the spectrum of tumors responsible, the nerves most commonly involved, and the optimal methods for imaging perineural tumor infiltration. Perineural tumor infiltration was most commonly seen with head and neck squamous cell carcinoma, followed by adenoid cystic carcinoma and several others, such as non-Hodgkin lymphoma, malignant schwannoma, minor salivary gland malignancy, and other sarcomas. The second and third divisions of the trigeminal nerve and the facial nerve were most commonly involved with perineural tumor. Both antegrade and retrograde perineural tumor spread were seen, although retrograde spread was significantly more common. Both high-resolution direct coronal computed tomography and magnetic resonance (MR) imaging clearly showed perineural tumor below the skull base. MR imaging best depicted skull base, cisternal, and brain stem perineural tumor infiltration. T1-weighted MR imaging before and after administration of gadopentetate dimeglumine is the study of choice in investigation of perineural tumor.

Cranial Nerve Neoplasms

The impact of screening sinus CT on the planning of functional endoscopic sinus surgery.

The clinical and radiologic records of 500 sequential patients who underwent screening sinus CT as a prelude to possible functional endoscopic sinus surgery (FESS) were reviewed in order to answer three clinical-radiologic questions: (1) Can distinct radiologic patterns of inflammatory disease be identified on screening sinus CT (SSCT)? (2) If so, what are these radiologic patterns? (3) How do the findings seen on SSCT influence the endoscopic surgical plan? Five basic radiologic patterns of sinonasal inflammatory disease were identified among the 500-member patient population. These were based on known patterns of mucociliary drainage correlated with obstructive patterns observed on the CT scans. These radiologic patterns included: (1) infundibular (129 of 500 or 26%), (2) ostiomeatal unit (126 of 500 or 25%), (3) sphenoethmoidal recess (32 of 500 or 6%), (4) sinonasal polyposis (49 of 500 or 10%), and (5) sporadia (unclassifiable) (121 of 500 or 24%) patterns. Normal SSCT was seen in 133 of the 500 patients (27%). Although the ostiomeatal unit is the central feature in sinonasal inflammatory disease, obstruction of the infundibulum alone or of the sphenoethmoidal recess can cause unique inflammatory patterns of disease that require tailored FESS. The identification of sinonasal polyposis raises a different set of FESS considerations. The sporadic pattern of inflammatory disease, when identified, creates unique FESS challenges, depending on the specific sinus or sinuses involved. Assignment of these patterns to the individual case also assists in patient management by grouping patients into nonsurgical (normal CT), routine (infundibular, ostiomeatal unit, and most sporadic patterns) and complex (sinonasal polyposis and sphenoethmoidal recess) surgical groups.

Acute Disease

Differential diagnosis of head and neck lesions based on their space of origin. 2. The infrahyoid portion of the neck.

The infrahyoid portion of the neck can be considered as a series of contiguous fascial planes and intervening spaces that lend themselves well to axial imaging. These spaces can serve as a basis on which to formulate differential diagnoses for diseases in this region. This pictorial essay describes the fascia and fascial spaces of the infrahyoid portion of the neck. The contents of each space, the common abnormalities affecting the space, and the characteristic displacements produced by disease in each space are reviewed.

Diagnosis, Differential

Radiologic evaluation of the normal and diseased posterior cervical space.

The posterior cervical space seen on cross-sectional imaging of the neck constitutes most of the posterior triangle seen on clinical examination. Although triangular anatomy relates best to the surface perspective of the clinician, a spatial approach to anatomy works better for the radiologist viewing axial images. The posterior cervical space is defined as the area in the posterolateral portion of the neck from the skull base to the clavicles deep to the sternomastoid and trapezius muscles but superficial to the prevertebral space. Its principal contents are fat, the spinal accessory nerve, and lymph nodes. We analyzed CT and MR images and clinical records of 63 patients known or suspected to have disease of the posterior cervical space to determine the imaging features that mark a lesion as originating in the posterior cervical space and the spectrum of diseases that arise there. Of the 63 patients in the study, four had clinical pseudomasses, nine had congenital lesions, 10 had inflammatory disease, six had benign tumors, and 34 had malignant tumors. A typical mass lesion of the posterior cervical space was centered within the fat of the space, between the deep and superficial layers of the deep cervical fascia. Characteristic displacements caused by a mass in the posterior cervical space included anteromedial displacement of the carotid space and posteromedial displacement of the prevertebral space. Our study shows that the differential diagnosis of lesions of the posterior cervical space reflects the normal contents of the space, and that diagnosis can thereby be predicted from knowledge of the normal anatomy and contents of the space.

Carcinoma, Squamous Cell

The major obstructive inflammatory patterns of the sinonasal region seen on screening sinus computed tomography.

In conclusion, inflammatory sinonasal disease can be conveniently grouped into five distinct radiological patterns, each with a different therapeutic course and surgical options. A more precise interpretation of SSCT scans is rendered when inflammatory sinonasal disease is categorized into these distinct radiological patterns. The three obstructive patterns occur due to dysfunction of the mucociliary drainage routes of the paranasal sinuses and result in specific diagnostic patterns that are recognizable on coronal SSCT examinations. When one of the three obstructive patterns is identified, detailed attention can be directed to the likely site of occlusion, with possible definition of a specific etiology. A detailed road map of relevant surgical anatomy and pathology is then available for the endoscopic surgeon. This road map can then be used for a more directed and specific functional endoscopic sinonasal surgery. This results in improved patient care and surgical result.

Humans

Sinonasal polyposis.

The SSCT findings of the SNP pattern are nearly diagnostic for this entity. SNP is characterized by the major findings of nasal polypoid masses and infundibular enlargement. Patients may also show individual sinus involvement with polypoid masses and/or opacification of the paranasal sinuses without visualization of polypoid masses. The presence of polypoid masses within the sinuses also can be inferred if the major findings are present, especially if there are the minor findings of nasal septal and sinus trabeculae attenuation and bulging of the lateral ethmoid sinus walls. Air/fluid levels are frequent in SNP but do not always indicate acute sinusitis. Patients typically present with nasal stuffiness and rhinorrhea. They often have facial pain and less often headaches. Common associations exist between SNP and atopy (either allergic or nonallergic), asthma, infection, cystic fibrosis, and aspirin intolerance. Therapy may be either medical or surgical, with steroids being the mainstay of the medical treatment. FESS provides a relatively atraumatic means of removing polyps and creating better sinus drainage. Regardless of the type of therapy, recurrences are common, requiring repeated bursts of systemic steroids, nasal steroid maintenance, and frequent additional surgical procedures. Identification of the SNP pattern on SSCT helps the otolaryngologist to institute an appropriate therapy aimed at alleviating symptoms. The SSCT is adequate for evaluation of SNP in the vast majority of cases and serves as a detailed road map for the treating endoscopic surgeon.

Acute Disease

The nose and nasal vault.

In this article we have reviewed the anatomy of the nose and nasal vault, with emphasis on specific features that are imaged with the SSCT. Important areas of the lateral wall anatomy include the OMU and SER, areas that are key to understanding the obstructive patterns of inflammatory sinonasal disease. Lesions that result in these specific obstructive patterns include anatomic variants and other focal pathological lesions, such as polyps. Other types of sinonasal inflammatory disease include sinonasal polyposis and granulomatous and fungal disease. Congenital lesions of the nose may be understood through a knowledge of the relevant developmental anatomy. These lesions include nasal dermoids and epidermoids, cephaloceles, gliomas, and choanal atresia. Important benign masses include antrochoanal polyps, inverting papillomas, angiomatous polyps, JNAs, and osteomas. Benign nasal masses have characteristic features that distinguish them from malignant lesions. Malignant nasal tumors, such as SSCa, esthesioneuroblastoma, and others, are characterized by their more aggressive and destructive behavior.

Humans