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Biomedical subjects

J Koebke

Publications and source records attributed to J Koebke.

At least 37 records · Page 2Linked to original sources

Biomechanical and morphological types of the linea alba and its possible role in the pathogenesis of midline incisional hernia.

OBJECTIVE: To review the tensile strength of the different histological types of fibres in the linea alba and correlate the anatomical features of the anterior abdominal wall with the tensile strength of the linea alba to see whether the tensile strength of the linea alba might contribute to the development of midline incisional hernias. DESIGN: Laboratory study. SETTING: University hospital, Germany. SUBJECTS: 46 cadavers in part one, and 9 freshly frozen and 38 formalin-fixed cadavers in part two. INTERVENTIONS: In the first part of the study the histological examination was by binocular dissection microscopy, magnification x10, but this was not sufficiently reproducible so in the second part we used an Olympus BX50 microscope, magnification x20, and Optimas 5.22 picture processing software. Tensile strength was measured using a Loosenhausen ZHP 1-6 tensiometer. MAIN OUTCOME MEASURES: Correlation between anatomical features and tensile strength. RESULTS: The method used in part one of the study failed to differentiate between the three types of fibres in the linea alba (weak, intermediate, and compact). In the second part of the study we found that the fibres were irregular, with no systematic crossing of the fibres of the aponeurosis. There was a significant correlation between the thickness and density of fibres in the linea alba and its tensile strength (r = 0.9). The thickness of fibres ranged from 21.9-38.2 microm and the density from 48% to 90%. The tensile strength ranged from 3-25 kp. CONCLUSION: A combination of low density and thin fibres in the linea alba could be a predisposing factor for development of midline incisional hernias

Abdominal Muscles↗

Fine thread versus coarse thread. A comparison of the maximum holding power.

For osteosynthesis in the epiphyseal region of long bones, specialized screw types are available to achieve a better purchase in cancellous bone. Typically, the cancellous bone screw has a large outer thread diameter with a relatively small core diameter and a great pitch. Due to its dimensions, this screw type is not suited for the cancellous bone areas in hand and foot surgery, respectively. Fine machine screws are better adapted to the bone dimensions in this part of the skeleton. To compare the holding power of fine machine screws with the holding power of other screw types available in the market, a biomechanical study was undertaken. Different screw types were compared: 4 mm cancellous screw, 3.5 and 2.7 mm cortical screws and three different diameters of a fine machine screw (2.2, 1.6 and 1.2 mm). Both cortical screws were tested in pretapped and self-tapping version. Polyurethane foam and bovine cancellous bone were tested. The screws were applied according to the manufacturer's instructions and an axial extraction force was applied. The 4 mm cancellous bone screws were superior to all the other screws in both test materials (P<0.05). The 3.5 mm cortical screw showed a significant difference compared to the 2.7 mm cortical screw in both materials. A significant difference between the self-tapping and pretapped screws of the same diameter was only found in the 3.5 mm cortical screws in polyurethane foam (P<0.05). Interestingly, the maximum holding power of the 2.2 mm fine machine screws in homogeneous test material (polyurethane foam) was as high as the holding power of the 2.7 mm cortical screws (P<0.05). In natural bovine cancellous bone, the result was even more striking. There was no significant difference between the 2.2 mm fine machine screws and the 3.5 mm cortical screws (P<0.05). Relative to their thread diameter, the fine machine screws were superior to conventional cancellous and cortical screws in cancellous bone. The high holding power of this screw type is at least partly due to the impaction effect of the drilling debris between the thread and the abutting spongy bone structure.

Animals↗

[Anatomy of the glottis and subglottis in the pediatric larynx].

BACKGROUND: The morphological development of the human larynx during the first years of life has previously not been studied in detail and has mainly been described on a qualitative basis. This study seeks to provide detailed morphometric data on the regular anatomy of the vocal cords, the subglottic airway and the tracheal airway dimensions gained from plastinated whole organ serial sections of 43 infant larynges and to determine morphological changes with age. Such information may be useful for the understanding of pediatric airway disease or for laryngeal surgery in children. MATERIAL AND METHODS: The larynges of 43 children aged 1 to 60 months were plastinated. Whole organ serial sections were obtained by cutting the resulting specimen with a diamond band saw. Morphometry of whole-organ sections was accomplished using a high resolution, computer-based image analyzer. The total length of the glottis, length of the cartilaginous and ligamentous glottis, subglottic cartilaginous cross-section, subglottic airway and tracheal airway were determined for each specimen. RESULTS: The subglottic airway increases considerably in size during the first 2 years of life (from 13 to 28 mm2 in the means). Further growth seems to follow a linear mode. The relative proportion of the mucosal lining of the subglottic airway decreases likewise. While it occupies approximately 50% of the subglottic cartilaginous cross-section during the first two years of age, its relative proportion decreases to some 30 to 40% between age three to five. Other than in adults, and comparable to most mammals, the cartilaginous glottis accounts for 60 to 75% of the vocal folds' length in children under two years of age. The anterior ligamentous part of the glottis outsizes its posterior cartilaginous portion during the third year of life. CONCLUSION: This study supplies detailed morphometric data on the growth and structure of the human larynx during the first years of life that have not been available to date. Previous studies on the anatomical configuration of the infant larynx have focused on the the perinatal larynx, the prepuberal and puberal larynx, and the development of collagen fibres in the developing larynx. The human larynx has undergone significant evolutionary adaptations. Among them are the descent of the larynx, the capability of vocal fold adjustment in length, tension and shape, and the prominent configuration of the membranous part of the vocal folds as opposed to the cartilaginous part. The infant larynx is not just a miniature of the adult organ. It shows differences in its position relative to the vertebrate column, in the composition of cartilages and soft tissues, and in environmental adaptation. The present study is the first to supply detailed morphometric data on the growth and structure of the human larynx during the first five years of life and on the morphological changes of the larynx during this period. From these data it seems that some of the adaption of the human larynx as opposed to other vertebrates are not fully developed at birth, but undergo postnatal maturation. The relative proportions of the cartilaginous and membranous parts of the vocal folds clearly demonstrate this maturation process: While the posterior "respiratory" glottis accounts for some sixty to 75% of the total glottic length in newborns, its relative proportion decreases throughout the first years of life and finally equals the proportions of the adult larynx. Other than in adults, and in accordance with the literature, no sexual dimorphism of the larynx could be detected in this series of infant larynges. Morphometric data on the growth and structure of the human vocal folds and the subglottic airway during childhood are presented. Plastinated whole organ serial sections were used in the study to show the infant laryngeal morphology. The study provides quantitative anatomical data of clinical interest that light up the anatomy of the pediatric airways.

Adult↗

The anatomical base of unilateral external fixation in the upper limb.

Unilateral external fixation requires an anatomically sound implantation of screws into the upper extremity. Detailed knowledge about the anatomical situation in the areas of pin implantation is of great importance. This paper focuses on relevant anatomical landmarks when implanting screws for external fixation in the humerus, the elbow, the forearm and the hand by studying anatomical specimen.

Arm↗

Curving and looping of the internal carotid artery in relation to the pharynx: frequency, embryology and clinical implications.

Variations of the course of the internal carotid artery in the parapharyngeal space and their frequency were studied in order to determine possible risks for acute haemorrhage during pharyngeal surgery and traumatic events, as well as their possible relevance to cerebrovascular disease. The course of the internal carotid artery showed no curvature in 191 cases, but in 74 cases it had a medial, lateral or ventrocaudal curve, and 17 preparations showed kinking (12) or coiling (5) out of a total of 265 dissected carotid sheaths and 17 corrosion vascular casts. In 6 cases of kinking and 2 of coiling, the internal carotid artery was located in direct contact with the tonsillar fossa. No significant sex differences were found. Variations of the internal carotid artery leading to direct contact with the pharyngeal wall are likely to be of great clinical relevance in view of the large number of routine procedures performed. Whereas coiling is ascribed to embryological causes, curving is related to ageing and kinking is thought to be exacerbated by arteriosclerosis or fibromuscular dysplasia with advancing age and may therefore be of significance in relation to the occurrence of cerebrovascular symptoms.

Aged↗

Comparisons of bone volumes and densities relating to osseointegrated implants in microvascularly reconstructed mandibles: a study of cadaveric radius and fibula bones.

The study was designed to compare the dimensions and densities of two frequently used bone donor sites with regard to placement of endosseous dental implants in microvascularly reconstructed mandibles. A total of 40 radii and of 40 fibulae were investigated. Fifty two percent of the fibulae had adequate bone volume for the positioning of four 10 mm implants, while this figure was 55% for the radii. After using the 'double barrel' technique the placement of four 10 mm implants succeeded in 87% of all the fibulae. Due to the lack of bone length required, this special technique was not possible in the radii investigated. Cortical thickness and density of bone were higher in the radii when compared with the fibulae. In each bone the central and distal parts presented the highest values of cortical thickness and density. Although the radius offers enough substantial bone for implant placement in some cases this cannot be used for clinical purpose, as only hemicortical grafts can be obtained. Otherwise the resulting donor site morbidity would be intolerable. In conclusion, our results support the clinical experience that the fibula is today's 'work horse' donor site for reconstruction of the mandible.

Aged↗

[Studies of the histomorphology and function of the uvula].

BACKGROUND: Alternations in pharyngeal structure and function are considered fundamental in the pathogenesis of snoring or obstructive sleep apnea (OSA). The physiological function of the uvula as a dynamic sealing of the nasopharynx prevents a "craniocaudal aspiration" during deglutition. The oropharyngeal soft tissues and the uvula are known to play an important role in affecting the oropharyngeal airflow resistance but studies about alterations in the histomorphological uvula structure are controversial. METHODS: We studied the histomorphological tissue composition of the uvula (midsagittal and transversal sections) in 142 patients who underwent uvulopalatopharyngoplasty (UPPP) or uvulopalatoplasty (UPP) for snoring and by autopsy in 30 normal subjects not known to have been snoring. Statistical comparisons were controlled for differences caused by age and body mass index. RESULTS: The uvula was found to be significantly longer in patients with snoring than in control subjects. Patients with snoring had a significantly greater percentage of fat content and connective tissue in combination with a muscle atrophy in the uvula than did normal subjects. CONCLUSIONS: The disturbance of the specific muscular composition and formation causes a reduction of muscular tonus and a loss of muscular contraction. The uvula is destabilized on the basis of a missing skeletal and cartilaginous brace. The uvula destabilization causes a narrowing of the pharyngeal airway that could lead to an increased oropharyngeal airflow resistance with an intensified passive uvula movement and vibration during mouth breathing.

Adult↗

Morphology of the human thyroglossal tract: a histologic and macroscopic study in infants and children.

The anatomic development of thyroglossal tract remnants is not understood at present. For analysis of morphology and growth patterns of thyroglossal tract remnants, we used histologic whole organ serial sections to determine developmental changes through the first years of life. Larynges of 58 infants and children ages 1 month to 13 years were obtained in whole organ serial step-sections in an axial plane. The slides were stained with hematoxylin and eosin, Alcian blue, and periodic acid-Schiff stains. Altogether, 3,247 histologic slices were examined. The resulting data were then correlated with the age and sex of the specimens. We found, in 24 cases (41.3%), remnants of the thyroglossal tract or ectopic thyroid tissue. In 4 specimens (16.6%), a complete thyroglossal tract could be observed that presented a ventral path in relation to the hyoid bone with no contact with the perichondrium of the cartilage. Hormonal activity of ectopic thyroid tissue was proven in 20 cases (34.5%). Thyroid follicles were located in 2 cases (3.5%) in the hyoid bone. The thyroglossal ducts revealed a modest tendency for a left-sided pathway, whereas thyroid follicles were located more on the right paramedian side. Morphometric data on the development and structure of the thyroglossal tract and the thyroid follicles during infancy and childhood are presented. The study provides quantitative data of clinical interest that elucidate the anatomy of thyroglossal tract remnants. In addition, our investigation supports Sistrunk's operative approach for avoiding recurrences in the treatment of thyroglossal duct cysts.

Age Distribution↗

The injury of the calcaneocuboid ligaments.

The selective rupture of the calcaneocuboid ligament is extremely rare and frequently misdiagnosed. This study tries to clarify the mechanism, classification and treatment of this entity. The necessity of radiographs with varus stress and in certain cases of computer tomography (CT) and magnetic resonance imaging (MRI), beside the routine antero-posterior and lateral views, is emphasized. Thirteen cases out of five-hundred-twenty-one sprain injuries of the ankle are described, classified and the therapy discussed: If on varus stress radiographs, there is a calcaneocuboid angle <10 degrees without a bony flake (type 1) strapping for six weeks is indicated. A calcaneocuboid angle >10 degrees with or without a small bony flake of the ligament insertion (type 2) should primarily be treated with a shoe cast for 6 weeks; if there are persistent symptoms a secondary peroneus brevis tendon graft is recommended. A calcaneocuboid angle >10 degrees with a big flake (type 3) should be treated by open reduction and refixation of the ligament. Complex injuries (type 4) are characterised by cuboid compression fracture and ligament rupture.

Adolescent↗

[Cut type femur neck prosthesis--a functional morphologic analysis].

In contrast to other commonly employed models, the cut model femoral neck prosthesis is a cementless prosthesis of comparatively small dimensions. With the aim of investigating its functional integration in the femur, radiological, densitometric and photoelastic analyses were carried out. The biomechanical reaction of the bone tissue expected on the basis of the experimental result is tested in the clinical situation.

Absorptiometry, Photon↗

Morphometric measurements of the cartilaginous larynx: An anatomic correlate of laryngeal surgery.

BACKGROUND: The increasing application of sophisticated methods of laryngeal framework surgery requires a profound knowledge of the size and proportions of the human larynx and its cartilaginous components. Only inadequate data regarding this subject have so far been accessible. The aim of this study was to collect exact and reliable morphometric data of the human laryngeal framework. Materials and Methods Larynges from 98 corpses (52 male, 46 female) were removed during autopsy 4-64 hours postmortem and processed without delay or fixation. Following a standard routine for preparation, 28 parameters were measured on thyroid cartilage, cricoid cartilage, arytenoid cartilage, epiglottis, and the larynx as a whole organ. None of the patients had histories or visible signs of laryngeal disease. Anatomical preparations were performed with customary surgical tools and morphometric measurements then carried out with a pair of compasses and a caliper rule. RESULTS: A total of 5,100 measurements was performed on 98 larynges. These included, aside from evaluation of the whole organ, identification of the internal and external diameters of the cricoid cartilage, height and length of the thyroid alae in different planes, angle of thyroid alae, height of arytenoid cartilage, width and length of epiglottic cartilage, and position of the anterior commissure related to the thyroid cartilage. The results provide a full scale of data determining the size and extent not only of the cartilaginous components, but of the laryngeal framework as a whole. Mean values, standard deviations, and sample sizes are given for every parameter separately for both sexes. CONCLUSION: This study provides a comprehensive and detailed description of the dimensions of the adult human larynx.

Adult↗

Carpal tunnel topography during endoscopic decompression.

The safety of the endoscopic technique for carpal tunnel release remains a major concern. Serious complications such as division nerves, tendons or vessels may occur. In this study the topography of the carpal tunnel was studied in fresh cadaver hands after the introduction of the blade assembly of a one portal system. By using a plastination method, it was possible to study the in situ relationships in detail by serial cross sections. Furthermore a modified Spalteholz method allowed the position of the blade to be viewed in whole specimens.

Aged↗

The significance of the anatomy of the skull base for mechanical modelling: a comparative study.

The present paper aims at analysing the significance of the anatomical structures of the human skull base for mechanical modelling. Three different Finite-Element (FE)-models of the human neurocranium were developed. The most complex model (1242 solid cuboid elements) contains holes and spaces functionally simulating the foramina and fissures and additional element layers for the inner relief of the skull base (petrous temporal and sella). Of the less complex models, one (1256 solid cuboid elements) includes only the 3 cranial fossae, while the other (400 solid cuboid elements) represents a rotationally symmetrical ellipsoid with a hole for the foramen magnum. Two linear static loadcases, one with a transverse loading direction (pressure of 250 kg on the left temporal surface, bearing on the right temporal surface) and the other with a sagittal loading direction (pressure of 250 kg on the frontal surface, bearing on the occipital surface) were computed. The loadcase analyses show, qualitatively and quantitatively, similar equivalent von Mises stress values and distributions in the two more complex models while the elementary geometric model leads to significantly different absolute stress values and distributions. The results of the most complex model are highly compatible with experimental observations on transverse and sagittal fractures of the skull base.

Biomechanical Phenomena↗

[The evaluation of experimentally induced injuries to the upper cervical spine with a digital x-ray technic, computed tomography and magnetic resonance tomography].

PURPOSE: To compare digital X-ray, CT, and MRI in the evaluation of ligamentous and osseous lesions in upper cervical spine specimens after artificial craniocervical injury with the findings of macroscopic preparation. MATERIALS AND METHODS: A rotation trauma of defined severity was applied to 19 human corpses. After dissection of the neck specimens, digital X-ray (DIMA Soft P41, Feinfocus), conventional and helical CT (CTi, High Speed, GE, collimation 1 mm; pitch 1.0), and MRI were performed from the skull base to C3. The findings were correlated with the macroscopic results of preparation. MR (Magnetom Vision, Siemens) imaging was obtained with a 1.5 T system using 2D- and 3D-sequences. RESULTS: Preparation revealed 6 fractures of the vertebral bodies, 5 fractures of the dens axis, 1 fracture of the arcus anterior of the atlas, 4 osseous flakes at the occipital condylus, and 6 lesions of the alar ligaments. Digital radiography showed all fractures and 4 osseous flakes at the occipital condylus. With conventional and helical CT, all fractures and all ruptured alar ligaments could be detected. 2D MRI depicted 9 of the fractures and 3D MRI showed fractures. With 2D MRI, 2 of the 4 osseous flakes at the condylus could be detected and with 3D MRI one occipital condylus fracture could be depicted. Ligamentous injuries were visualized by 2D MRI in 2 of 6 cases and by 3D MRI in one case. CONCLUSIONS: In post-mortem studies, CT was superior to MRI in the visualization of osseous and ligamentous injuries after trauma of the upper cervical spine. However, these results are not transferable to patients with rotation injury in general.

Aged↗

Bone density measurements of the paranasal sinuses on plastinated whole-organ sections: anatomic data to prevent complications in endoscopic sinus surgery.

OBJECTIVE/HYPOTHESIS: Although anatomic data regarding the gross anatomy of the paranasal sinuses are available, severe complications of endonasal sinus surgery (ESS) are frequently reported. To understand and to avoid these complications, density of bony walls of the paranasal sinuses were studied in this report. Special attention was given to the analysis of the bone density in regions where minor and major complications occur in ESS. METHODS: Thirty cadaver heads were embedded in epoxy resin. The plastic blocks were sectioned with a diamond-coated wire saw into 1.0-mm thick, parallel slices in axial, coronal, and sagittal planes for 10 specimens each. The slices were x-rayed and scanned with a computerized image analyzing system. For each specimen the bone density in 12 regions of interest was measured. RESULTS: Besides the macroscopic examination of the plastinated specimens, a bone density analysis based on x-ray films is presented. Lowest bone density was found at the lateral wall of the sphenoid sinus (3.31 +/- 0.99 mm aluminum [Al]); highest density was measured at the roof of the sphenoid sinus (12.91 +/- 1.75 mm Al). Overall bone density in female specimens was 0.41 mm Al (mean) lower than in male specimens. CONCLUSIONS: This study is the first to use plastinated whole-organ serial sections and bone density images for the analysis of potential complications in ESS. The illustration of regions with minor and major bone density of the paranasal sinuses and the ethmoid floor as presented in this study may help the novice sinus surgeon to minimize the risks of ESS and to avoid severe complications.

Absorptiometry, Photon↗

Morphology of the human larynx during the first five years of life studied on whole organ serial sections.

The morphologic development of the human larynx during the first years of life is poorly understood to date. This study used plastinated whole organ serial sections to determine the growth and structure of the infant larynx. The larynges of 43 children 1 to 60 months old were plastinated. Whole organ serial sections were obtained by cutting the resulting specimen with a diamond band saw. The slices were then submitted to computer-assisted morphometric investigation. We found that the subglottic airway rapidly increases in size during the first 2 years of life. Further growth follows a linear mode. The relative proportion of the mucosal lining decreases likewise. In contrast to that in adults, and comparable to that in most mammals, the cartilaginous glottis accounts for 60% to 75% of the vocal folds' length at <2 years. No sexual dimorphism of the larynx exists during childhood. This study supplies detailed morphometric data on the growth and structure of the human larynx during the first years of life. It is the first to use plastinated whole organ serial sections for morphology of the pediatric larynx. Therefore, this study provides quantitative anatomic data of clinical interest that have not been available to date.

Child, Preschool↗

Asymmetrical loading of the human triceps surae: I. Mediolateral force differences in the Achilles tendon.

An in vitro experiment was designed to identify whether tensile force on different triceps surae components would result in nonhomogenous force distribution across the human Achilles tendon. Medial tendon forces were significantly higher than lateral (23.2 +/- 6.6%; P < or = 0.05) when only the gastrocnemius medialis was subjected to force. Lateral forces were significantly higher when both gastrocnemii (30.6 +/- 16.5%) or all three muscles (20.7 +/- 10.9%) were loaded. Experimental identification of force concentrations in the human Achilles tendon contributes to the understanding of the origin of its injury.

Achilles Tendon↗

Asymmetrical loading of the human triceps surae: II. Differences in calcaneal moments.

An in vitro experimental study is presented investigating differences in moments calculated at the calcaneus, resulting from tensile forces input in various configurations of triceps surae muscles. Results indicated significantly higher values for plantarflexion moments when forces were input in both gastrocnemii than in the soleus (P < or = 0.05). Tensile force applied solely to the gastrocnemius lateralis produced a mean eversion moment at the calcaneus, whereas all other configurations demonstrated the expected inversion moment. An abduction moment was reported throughout. The presented data provides valuable input for optimizing future biomechanical models.

Biomechanical Phenomena↗