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11.
Background: A deeper joint socket (concave incongruity) is found at most angles of flexion of the humero-ulnar joint and maintained over a wide range of physiological loading. It is, however, unclear how far this incongruity affects the distribution of load and subchondral mineralization of this joint as compared with a congruous configuration. Methods: Two nonlinear, axisymmetrical finite element models with two cartilage layers were constructed, one congruous and one incongruous, with a joint space of realistic magnitude. The distribution of subchondral mineralization was determined by computed tomography osteoabsorptiometry in the same six specimens that were investigated in the first part of the study, and compared with the biomechanical data obtained there and the predictions of the models. Results: In the congruous case, the center of the socket is highly loaded, whereas the periphery does not experience mechanical stimulation. A central bone density maximum is predicted. With concave incongruity the position of the contact areas shifts from the joint margin towards the center as the load increases, and the peak stresses are considerably lower. A bicentric ventro-dorsal distribution pattern of subchondral mineralization is predicted, and this is actually found in the six specimens. Conclusions: Concave incongruity is shown to determine load transmission and subchondral mineralization of the humero-ulnar joint. It is suggested that this shape leads to a more even distribution of stress, provides intermittent stimulation of the cartilaginous tissue, and has beneficial effects on the metabolism, nutrition, and lubrication of the articular cartilage during cyclic loading. © 1995 Wiley-Liss, Inc.  相似文献   
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The cell-mediated immune response against cell-bound antigens are biphasic responses. The 'classical' components of cell-mediated immunity such as delayed type hypersensitivity (DTH) and cytotoxic T-cells, are preceded by antigen-specific T-cell factor production. These antigen-specific T-cell factors can be detected in the serum 1-2 days after immunization, which suggests that these antigen-specific T-cell factors play an important role in the initiation of cell-mediated immune responses. Factor-producing lymphocytes can be detected already 1 day after immunization at the site of the antigen challenge, and at first 4-5 days after immunization in the peripheral lymphoid organs. The phenotype of these factor-producing lymphocytes is Thy-1+, CD3+, L3T4 (CD4)-, Lyt2 (CD8)-, whereas the T-lymphocytes inducing the DTH response are Thy 1+, CD3+, L3T4 (CD4)+, Lyt2 (CD8)-. This suggests that these factor-producing lymphocytes are gamma-delta bearing T-lymphocytes. gamma-delta TCR bearing T-cells can develop independently of the thymus, and are present in athymic nude mice. Immunization of athymic (nude) mice induces antigen-specific T-cell factor production as well. This suggests that the gamma-delta bearing T lymphocytes present in nude mice can react to cell-bound antigens and produce these factors.  相似文献   
13.
To date, little is known about the duration and effectiveness of immunity as well as possible adverse late effects after an infection with SARS-CoV-2. Thus it is unclear, when and if liver transplantation can be safely offered to patients who suffered from COVID-19. Here, we report on a successful liver transplantation shortly after convalescence from COVID-19 with subsequent partial seroreversion as well as recurrence and prolonged shedding of viral RNA.  相似文献   
14.
This is a report of a study aimed at putting into practice a new theory for hypothermic preservation of viable organs. A perfusion fluid elaborated according to this theory was applied in preservation of the heart, and resulted in storage of the heart for up to 72 hours with preservation of its functions (rhythm, presystolic ventricular pressure, systolic ventricular pressure, cardiac work, coronary blood pressure, sensitivity to drugs) and its morphology. An important finding was that repeated heart storage for 24 hours alternating with functional testing for 5–7 hours could be performed without irreversible alterations of cardiac function and fine structure. Furthermore, during functional testing following storage the hearts consistently demonstrated improvement of function in time, suggesting that the preserved myocardial tissues were able to rapidly achieve metabolic reequilibration. The results of this study provide the possibility of developing a system for efficient ex vivo heart conditioning before transplantation.
Résumé Nous avons testé la valeur d'une nouvelle théorie sur la préservation d'organes en hypothermie. Un liquide de perfusion conforme à cette théorie a été utilisé pour la préservation cardiaque. Il permet de conserver le coeur pendant 72 heures, sans altérations de ses fonctions (rythme, pression ventriculaire pré-systolique et systolique, travail cardiaque, pression coronaire, sensibilité aux médicaments) ni de sa morphologie. De plus, le coeur peut-être, à plusieurs reprises, conservé pendant 24 heures, avec des intervalles de reprise fonctionnelle de 5–7 heures, sans que sa fonction ni sa structure fine ne soient altérées de façon irréversible. Enfin, l'étude fonctionnelle montre qu'après conservation la fonction cardiaque s'améliore avec le temps, suggérant donc une rééquilibration métabolique rapide du tissu myocardique. Les résultats de cette étude permettront la mise au point d'un système efficace de conservation cardiaque ex-vivo en vue de la transplantation.


Supported by the German Heart Center, Munich, and the German Academy Department for Foreign Scientific Relationships, Bonn.  相似文献   
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ObjectiveTo assess which radiological alignment parameters are associated with a satisfactory long‐term clinical outcome after performing lumbar spinal fusion for treating degenerative spondylolisthesis.MethodsThis single‐center prospective study assessed the relation between radiological alignment parameters measured on standing lateral lumbar spine radiographs and the patient‐reported outcome using four different questionnaires (COMI, EQ‐5D, ODI and VAS) as primary outcome measures (level of evidence: II). The following spinopelvic alignment parameters were used: gliding angle, sacral inclination, anterior displacement, sagittal rotation, lumbar lordosis, sacral slope, pelvic tilt and pelvic incidence. Furthermore, the length of stay and perioperative complications were documented. Only cases from 2013 to 2015 of low‐grade degenerative lumbar spondylolisthesis (Meyerding grades I and II) were considered. The patients underwent open posterior lumbar fusion surgery by pedicle screw instrumentation and cage insertion. The operative technique was either a posterior lumbar interbody fusion (PLIF) or a transforaminal lumbar interbody fusion (TLIF) performed by three different senior orthopedic surgeons. Exclusion criteria were spine fractures, minimally invasive techniques, underlying malignant diseases or acute infections, previous or multisegmental spine surgery as well as preoperative neurologic impairment. Of 89 initially contacted patients, 17 patients were included for data analysis (11 males, six females).ResultsThe data of 17 patients after mono‐ or bisegmental lumbar fusion surgery to treat low‐grade lumbar spondylolisthesis and with a follow‐up time of least 72 months were analyzed. The mean age was 66.7 ± 11.3 years. In terms of complications two dural tears and one intraoperative bleeding occurred. The average body mass index (BMI) was 27.6 ± 4.4 kg/m2 and the average inpatient length of stay was 12.9 ± 3.8 days (range: 8–21). The long‐term clinical outcome correlated significantly with the change of the pelvic tilt (r s = −0.515, P < 0.05) and the sagittal rotation (r s = −0.545, P < 0.05). The sacral slope was significantly associated with the sacral inclination (r s = 0.637, P < 0.01) and the pelvic incidence (r s = 0.500, P < 0.05). In addition, the pelvic incidence showed a significant correlation with the pelvic tilt (r s = 0.709, P < 0.01). The change of the different clinical scores over time also correlated significantly between the different questionnaires.ConclusionsThe surgical modification of the pelvic tilt and the sagittal rotation are the two radiological alignment parameters that can most accurately predict the long‐term clinical outcome after lumbar interbody fusion surgery.  相似文献   
17.
Aim: The optimal duration of dual antiplatelet therapy (DAPT) after drug-eluting stent (DES) implantation is an ongoing debate and novel data has emerged. The aim of this meta-analysis was to assess outcomes of short vs. control DAPT duration. In addition, the role of single antiplatelet therapy (SAPT) after DAPT with either aspirin or P2Y12 inhibitor monotherapy was analyzed. Methods: The authors searched MEDLINE and Cochrane databases and proceedings of international meetings for randomized controlled trials (RCT) comparing ≤ 3 months with ≥ 6 months DAPT after DES implantation. The primary and co-primary outcomes of interest were definite or probable stent thrombosis (ST) and bleeding. In addition, we performed an analysis on studies who continued with either aspirin or P2Y12 monotherapy after DAPT. Results: 9 RCTs comprising 41,864 patients were included and we analyzed a short DAPT duration of median 1.5 months vs. 12.1 months in the control group. The risk for ST was similar with short vs. control DAPT duration (0.5 vs. 0.5%; hazard ratio 1.17[95% CI 0.89-1.54];p=0.26). Bleeding was significantly reduced with short vs. control DAPT duration (1.9 vs. 3.0%; 0.65[0.54-0.77];p<0.0001). ST was not different between short vs. control DAPT duration in the analysis of the 4 RCTs who continued with aspirin after DAPT and the 5 P2Y12 RCTs, respectively, and no heterogeneity was detected (p=0.861). Bleeding was also reduced with short vs. control DAPT in both the aspirin (1.2 vs. 1.7%; 0.71[0.51-0.99];p=0.04) and P2Y12 inhibitor studies (2.1 vs. 3.4%; 0.62[0.47-0.80];p=0.0003) and no heterogeneity was detected (p=0.515). Conclusions: Our meta-analysis shows that short DAPT ≤ 3 months followed by SAPT reduces bleeding and is not associated with an increase in ST. The results were consistent within the aspirin and P2Y12 SAPT studies.  相似文献   
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The volume of an experimental necrotic lesion of the cortex expands up to 400% of its initial size within the first 24 h after the insult. Lesion expansion, a clinically well known phenomenon, is often accompanied by perifocal brain edema and consequently difficult to image and to analyze by magnetic resonance imaging (MRI). Therefore we aimed to validate a T(2)-weighted spin echo sequence upon its ability to distinguish necrotic from edematous brain tissue. Male Sprague-Dawley rats (n = 5 per group) were subjected to a cortical freezing lesion leading to immediate tissue necrosis with subsequent perifocal vasogenic brain edema. Immediately and 4, 12, and 24 h after the lesion the maximal area of necrosis was quantified longitudinally by coronal T(2)-weighted spin echo MRI-scans. After the last scan, animals were sacrificed for direct comparison of the lesion area obtained by MRI and histomorphometry. In parallel groups of animals, lesion expansion was quantified by histology. The acquired T(2)-maps clearly distinguish the cortical necrosis from perifocal edema and healthy brain. Focal freezing led to a cortical lesion of 5.24 +/- 0.36 mm(2) immediately after trauma (0 h; 100%) which expanded progressively to a maximum of 6.82 +/- 0.34 mm(2) after 24 h (131%; *p < 0.01 vs. 0 h). Lesion expansion quantified by histology was almost identical (132% within 24 h). Histological assessment resulted in smaller absolute lesion areas compared to MRI, most likely due to shrinking during tissue processing (4.72 +/- 0.26 mm(2) vs. 6.82 +/- 0.34 mm(2), p < 0.01). The current study shows that necrotic brain tissue can be distinguished from surrounding brain edema by T(2)-mapping. The technique is sensitive enough to detect small changes in necrosis expansion in vivo as validated by histology. The presented technique may be a useful future tool for the non-invasive identification of necrotic brain tissue following brain injury (e. g., from trauma or ischemia).  相似文献   
20.
Background contextAcute cervical spinal cord injury (SCI) has been observed in some patients after a minor trauma to the cervical spine. The discrepancy between the severity of the trauma and the clinical symptoms has been attributed to spinal canal stenosis. However, to date, there is no universally established radiological parameter for identifying critical spinal stenosis in these patients. The spinal canal–to–vertebral body ratio (Torg-Pavlov ratio) has been proposed for assessing developmental spinal canal stenosis. The relevance of the Torg-Pavlov ratio for predicting the occurrence and severity of acute cervical SCI after a minor trauma to the cervical spine has not yet been established.PurposeTo investigate the Torg-Pavlov ratio values of the cervical spine in patients suffering from acute cervical SCI after a minor trauma to the cervical spine and the use of the Torg-Pavlov ratio for identifying patients at risk of cervical SCI and predicting the severity and course of symptoms.Study design/settingRetrospective radiological study of consecutive patients.Patient sampleForty-five patients suffering from acute cervical SCI and 68 patients showing no neurologic symptoms after a minor trauma to the cervical spine.Outcome measuresMidvertebral sagittal cervical spinal canal diameter and the sagittal vertebral body diameter. Calculation of the Torg-Pavlov ratio values.MethodsConventional lateral radiographs of the cervical spine (C3–C7) were analyzed to determine the Torg-Pavlov ratio values. Receiver operating characteristic curves were calculated for evaluating the classification accuracy of the Torg-Pavlov ratio for predicting SCI.ResultsThe Torg-Pavlov ratio values in the SCI group were significantly (p<.04) smaller compared with that in the control group. A Torg-Pavlov ratio cutoff value of 0.7 yielded the greatest positive likelihood ratio for predicting the occurrence of SCI. However, there were no significant differences in the Torg-Pavlov ratio values between the different American Spinal Injury Association Impairment Score groups and between patients with complete, partial, and no recovery of symptoms.ConclusionsDevelopmental cervical spinal canal stenosis assessed by the Torg-Pavlov ratio was characteristic for patients suffering from acute cervical SCI after a minor trauma to the cervical spine. Patients at risk of SCI after a minor trauma to the cervical spine can be identified by applying a Torg-Pavlov ratio cutoff value of 0.7. Other factors in addition to the spinal canal–to–vertebral body ratio affect the severity and course of symptoms as a result of cervical SCI.  相似文献   
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