Muscle complex
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Femoropelvilumbální komplex má zásadní význam pro držení trupu a postavení dolních končetin. Orientace pánve v sagitální rovině určuje jak různé rentgenologické typy zakřivení páteře, tak i různé typy držení těla, které hodnotíme vizuálně a palpačně při fyzikálním vyšetření. Hodnocení držení těla v sagitální rovině by proto mělo začínat právě hodnocením orientace a postavení pánve. Typ orientace pánve také umožňuje srovnat a propojit výsledky těchto dvou různých způsobů vyšetření a hodnocení. Obecným výsledkem degenerace různých typů páteře je její kyfotizace. Různé typy držení těla mají typickou kombinaci zkrácení anebo oslabení různých svalových skupin.
The lumbar-pelvic-femoral complex is of fundamental importance for the posture of the trunk and the position of the lower limbs. The orientation of the pelvis in the sagittal plane determines both different X-ray types of spinal curvature, as well as different types of body posture, which we evaluate visually and by palpation during the physical examination. Evaluation of body posture in the sagittal plane should therefore begin with an assessment of the orientation and position of the pelvis. The type of pelvic orientation also makes it possible to compare and connect the results of these two different methods of examination and evaluation. The general result of degeneration of different types of spine is its kyphotization. Different types of posture have a typical combination of shortening or weakening of different muscle groups.
Sexualita ženy je komplexním jevem, na kterém se podílí řada faktorů. Mezi nejdůležitější z nich patří věk a zdravotní stav, nicméně nezanedbatelný vliv mají i další aspekty. Vzhledem k tomu, že udávaná prevalence sestupu pánevních orgánů v ženské populaci přesahuje 50 %, nelze jeho dopad na sexuální funkce opomenout. Předložený článek prezentuje systematický přehled prací týkajících se problematiky vlivu sestupu pánevních orgánů na sexuální funkce žen. Poruchy sexuálních funkcí jsou u žen se sestupem časté, bez ohledu na jeho stadium či postižený kompartment. Terapie estrogeny nemá na sexualitu žen se sestupem žádný vliv, naopak rehabilitace může přinést určité zlepšení. Nebyl prokázán negativní vliv pesaroterapie na sexuální funkce. Chirurgická terapie s použitím nativní tkáně sexuální funkce obecně spíše zlepšuje. Výjimkou je však zadní poševní plastika, která je často spojována s dyspareunií. Nebyla nalezena korelace mezi pooperační délkou pochvy a změnou sexuálních funkcí. Dopad použití vaginálních implantátů v řešení sestupu na sexualitu žen zůstává nejednoznačný. Naopak sakrokolpopexe jednoznačně sexuální funkce zlepšuje.
A woman's sexuality is a complex phenomenon involving several factors, among which age and health are the most important. However, other aspects are not negligible. The impact of pelvic organ prolapse on sexual function cannot be ignored, as the reported prevalence of pelvic organ prolapse in female population exceeds 50%. This article presents a systematic review of articles dealing with the impact of pelvic organ prolapse on female sexual function. Sexual dysfunction is common in women with pelvic organ prolapse, regardless of prolapse stage or the compartment affected. Estrogen therapy has no effect on sexuality in women with prolapse, while pelvic floor muscle training may provide some improvement. There is no evidence that conservative therapy using a pessary is associated with negative impact on sexual function. Native tissue repair tends to improve sexual function in general, except for posterior colporrhaphy, which was frequently associated with dyspareunia. No correlation between postoperative vaginal length and change in sexual function was identified. The impact of transvaginal mesh repair on sexuality remains unclear. In contrast, there is enough evidence proving that sacrocolpopexy significantly improves sexual function in women.
- Klíčová slova
- sakrokolpopexe, vaginální implantát, sexuální funkce,
- MeSH
- gynekologické chirurgické výkony MeSH
- lidé MeSH
- představa o vlastním těle MeSH
- prolaps pánevních orgánů * MeSH
- rehabilitace MeSH
- sexualita * MeSH
- vagina chirurgie MeSH
- Check Tag
- lidé MeSH
- ženské pohlaví MeSH
- Publikační typ
- přehledy MeSH
Temporomandibular disorders (TMDs) are conditions with multifactorial etiology and complex treatment. Among the non-invasive therapeutic possibilities for these conditions is the Front Plateau, a partial anterior plate made from colourless self-curing acrylic resin. It is a simple procedure that can be carried out in a single clinical section promoting muscle relaxation to reduce symptoms associated with TMDs. This study aims to report a prospective, consecutive, single-centric case series to evaluate the Front Plateau's effectiveness in patients with temporomandibular disorders. A questionnaire adapted from the Research Diagnostic Criteria for TMDs was used and 4 patients were treated with the Front Plateau plaque. Patients were monitored after 5 and 9 months, respectively, after starting to use the Front Plateau. Of the 4 cases listed, 2 showed significant improvement in initial signs and symptoms. Front Plateau may be a favourable treatment option for patients with TMD, if the guidelines are followed. Clinical trials on this modality should seek to minimize possible biases and limitations associated with the design of this type of research.
- MeSH
- akrylové pryskyřice terapeutické užití MeSH
- dospělí MeSH
- lidé středního věku MeSH
- lidé MeSH
- nemoci temporomandibulárního kloubu * terapie diagnóza MeSH
- prospektivní studie MeSH
- Check Tag
- dospělí MeSH
- lidé středního věku MeSH
- lidé MeSH
- mužské pohlaví MeSH
- ženské pohlaví MeSH
- Publikační typ
- časopisecké články MeSH
- kazuistiky MeSH
- přehledy MeSH
BACKGROUND: This cross-sectional study investigated the relationship between genetic variations in monocarboxylate transporter genes and blood lactate production and removal after high-intensity efforts in humans. The study was conducted to explore how genetic variations in the MCT1, MCT2, and MCT4 genes influenced lactate dynamics and to advance the field of sports genetics by pinpointing critical genetic markers that can enhance athletic performance and recovery. METHODS: 337 male athletes from Poland and the Czech Republic underwent two intermittent all-out Wingate tests. Before the tests, DNA samples were taken from each participant, and SNP (single nucleotide polymorphism) analysis was carried out. Two intermittent all-out tests were implemented, and lactate concentrations were assessed before and after these tests. RESULTS: Sprinters more frequently exhibited the haplotype TAC in the MCT2 gene, which was associated with an increase in the difference between maximum lactate and final lactate concentration. Additionally, this haplotype was linked to higher maximum lactate concentration and was more frequently observed in sprinters. The genotypic interactions AG/T- and GGxT- (MCT1 rs3789592 x MCT4 rs11323780), TTxTT (MCT1 rs12028967 x MCT2 rs3763979), and MCT1 rs7556664 x MCT4 rs11323780 were all associated with an increase in the difference between maximum lactate concentration and final lactate concentration. Conversely, the AGxGG (MCT1 rs3789592 x MCT2 rs995343) interaction was linked to a decrease in this difference. The relationship between maximum lactate concentration and genotypic interactions can be observed as follows: when ATxTT (MCT2 rs3763980 x MCT4 rs11323780) or CTxCT (MCT1 rs10857983 x MCT2 rs3763979) genotypic combinations are present, it leads to a decrease in maximum lactate concentration. Similarly, the combination of CTxCT (MCT1 rs4301628 x MCT2 rs3763979), CT x TT (MCT1 rs4301628 x MCT4 rs11323780), and CTxTT (MCT1 rs4301628 x MCT2 rs3763979) results in decreased maximum lactate concentration. CONCLUSIONS: The TAC haplotype (rs3763980, rs995343, rs3763979) in the MCT2 gene is associated with altered lactate clearance in sprinters, potentially affecting performance and recovery by elevating post-exercise lactate concentrations. While MCT4 rs11323780 is also identified as a significant variant in lactate metabolism, suggesting its role as a biomarker for sprinting performance, further investigation is necessary to clarify underlying mechanisms and consider additional factors. Based on elite male athletes from Poland and the Czech Republic, the study may not generalize to all sprinters or diverse athletic populations. Although genetic variants show promise as biomarkers for sprinting success, athletic performance is influenced by a complex interplay of genetics, environment, and training extending beyond MCT genes.
- MeSH
- dospělí MeSH
- genotyp MeSH
- haplotypy * MeSH
- jednonukleotidový polymorfismus * MeSH
- kinetika MeSH
- kyselina mléčná * krev metabolismus MeSH
- lidé MeSH
- mladý dospělý MeSH
- přenašeče monokarboxylových kyselin * genetika metabolismus MeSH
- průřezové studie MeSH
- sportovci MeSH
- svalové proteiny * genetika metabolismus MeSH
- symportéry * genetika metabolismus MeSH
- Check Tag
- dospělí MeSH
- lidé MeSH
- mladý dospělý MeSH
- mužské pohlaví MeSH
- Publikační typ
- časopisecké články MeSH
Myocardial remodelling involves structural and functional changes in the heart, potentially leading to heart failure. The deoxycorticosterone acetate (DOCA)/salt model is a widely used experimental approach to study hypertension-induced cardiac remodelling. It allows to investigate the mechanisms underlying myocardial fibrosis and hypertrophy, which are key contributors to impaired cardiac function. In this study, myocardial remodelling in rat deoxycorticosterone acetate/salt model was examined over a three-week period. The experiment involved 11 male Sprague-Dawley rats, divided into two groups: fibrosis (n=6) and control (n=5). Myocardial remodelling was induced in the fibrosis group through unilateral nephrectomy, deoxyco-rticosterone acetate administration, and increased salt intake. The results revealed significant structural changes, including increased left ventricular wall thickness, myocardial fractional volume, and development of myocardial fibrosis. Despite these changes, left ventricular ejection fraction was preserved and even increased. ECG analysis showed significant prolongation of the PR interval and widening of the QRS complex in the fibrosis group, indicating disrupted atrioventricular and ventricular conduction, likely due to fibrosis and hypertrophy. Correlation analysis suggested a potential relationship between QRS duration and myocardial hypertrophy, although no significant correlations were found among other ECG parameters and structural changes detected by MRI. The study highlights the advantage of the DOCA/salt model in exploring the impact of myocardial remodelling on electrophysiological properties. Notably, this study is among the first to show that early myocardial remodelling in this model is accompanied by distinct electrophysiological changes, suggesting that advanced methods combined with established animal models can open new opportunities for research in this field. Key words Myocardial fibrosis, Remodelling, Animal model, DOCA-salt, Magnetic resonance imaging.
- MeSH
- deoxykortikosteron-21-acetát * MeSH
- elektrokardiografie * MeSH
- fibróza MeSH
- krysa rodu rattus MeSH
- kuchyňská sůl škodlivé účinky MeSH
- modely nemocí na zvířatech MeSH
- myokard patologie MeSH
- potkani Sprague-Dawley * MeSH
- remodelace komor * MeSH
- zvířata MeSH
- Check Tag
- krysa rodu rattus MeSH
- mužské pohlaví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
The global COVID-19 pandemic, caused by SARS-CoV-2, has led to significant morbidity and mortality, with a profound impact on cardiovascular health. This review investigates the mechanisms of SARS-CoV-2's interaction with cardiac tissue, particularly emphasizing the role of the Spike protein and ACE2 receptor in facilitating viral entry and subsequent cardiac complications. We dissect the structural features of the virus, its interactions with host cell receptors, and the resulting pathophysiological changes in the heart. Highlighting SARS-CoV-2's broad organ tropism, especially its effects on cardiomyocytes via ACE2 and TMPRSS2, the review addresses how these interactions exacerbate cardiovascular issues in patients with pre-existing conditions such as diabetes and hypertension. Additionally, we assess both direct and indirect mechanisms of virus-induced cardiac damage, including myocarditis, arrhythmias, and long-term complications such as 'long COVID'. This review underscores the complexity of SARS-CoV-2's impact on the heart, emphasizing the need for ongoing research to fully understand its long-term effects on cardiovascular health. Key words: COVID-19, Heart, ACE2, Spike protein, Cardiomyocytes, Myocarditis, Long COVID.
- MeSH
- angiotensin-konvertující enzym 2 * metabolismus MeSH
- COVID-19 * metabolismus MeSH
- glykoprotein S, koronavirus * metabolismus MeSH
- internalizace viru MeSH
- kardiomyocyty metabolismus virologie patologie MeSH
- lidé MeSH
- myokard metabolismus patologie MeSH
- SARS-CoV-2 * patogenita MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- přehledy MeSH
Background: The tempo of resistance exercises is known to influence performance outcomes, yet its specific effects on post-activation performance enhancement (PAPE) remain unclear. This study aimed to investigate the effects of fast versus slow repetitions at a load of 70% of one-repetition maximum (1-RM) in the bench press exercise, focusing on velocity, surface electromyographic (sEMG) activity, and applied force while equating time under tension on bench press throw performance. Methods: Eleven men (age: 23.5 ± 5.4 years, height: 1.79 ± 0.04 m, body mass: 79.1 ± 6.4 kg, maximum strength 1-RM: 91.0 ± 12.0 kg) participated. Two experimental conditions (FAST and SLOW) and one control (CTRL) were randomly assigned. Participants performed two sets of six repetitions as fast as possible (FAST condition) and two sets of three repetitions at a controlled tempo (SLOW condition) at half the concentric velocity of FAST, as determined in a preliminary session. Before and after the bench press participants performed bench press throws tests (Pre, 45 s, 4, 8, and 12 min after). Results: sEMG activity and peak force during the bench press were higher in FAST vs. SLOW conditioning activity (p < 0.001), with time under tension showing no significant differences between conditions (p > 0.05). Mean propulsive velocity (MPV) during the bench press throw improved equally in both FAST and SLOW conditions compared with baseline from the 4th to the 12th min of recovery (FAST: +6.8 ± 2.9% to +7.2 ± 3.3%, p < 0.01, SLOW: +4.0 ± 3.0% to +3.6 ± 4.5%, p < 0.01, respectively). Compared to the CTRL, both conditions exhibited improved MPV values from the 4th to 12th min (p < 0.01). Peak velocity improvements were observed only after the FAST condition compared to the baseline (p < 0.01) with no differences from SLOW. For all muscles involved and time points, sEMG activity during bench press throws was higher than CTRL in both experimental conditions (p < 0.01), with no differences between FAST and SLOW. Peak force increased in both FAST and SLOW conditions at all time points (p < 0.05), compared to CTRL. Conclusions: These findings suggest that post-activation performance enhancement is independent of movement tempo, provided that the resistive load and total time under tension of the conditioning activity are similar. This study provides valuable insights into the complex training method for athletes by demonstrating that varying tempo does not significantly affect post-activation performance enhancement when load and TUT are equated.
- Publikační typ
- časopisecké články MeSH
Pulmonary hypertension is a complex and heterogeneous condition with five main subtypes (groups). This review focuses on pulmonary hypertension caused by chronic hypoxia (hypoxic pulmonary hypertension, HPH, group 3). It is based mainly on our own experimental work, especially our collaboration with the group of Professor Herget, whose fifth anniversary of death we commemorate. We have found that oxidation and degradation of the extracellular matrix (ECM) in vitro, in either the presence or the absence of pro-inflammatory cells, activate vascular smooth muscle cell (VSMC) proliferation. Significant changes in the ECM of pulmonary arteries also occurred in vivo in hypoxic rats, namely a decrease in collagen VI and an increase in matrix metalloproteinase 9 (MMP-9) in the tunica media, which may also contribute to the growth activation of VSMCs. The proliferation of VSMCs was also enhanced in their co-culture with macrophages, most likely due to the paracrine production of growth factors in these cells. However, hypoxia itself has a dual effect: on the one hand, it can activate VSMC proliferation and hyperplasia, but on the other hand, it can also induce VSMC hypertrophy and increased expression of contractile markers in these cells. The influence of hypoxia-inducible factors, microRNAs and galectin-3 in the initiation and development of HPH, and the role of cell types other than VSMCs (endothelial cells, adventitial fibroblasts) are also discussed. Keywords: Vasoconstriction, Remodeling, Oxidation, Degradation, Extracellular matrix, Collagen, Proteolytic enzymes, Metalloproteinases, Macrophages, Mast cells, Smooth muscle cells, Endothelial cells, Fibroblasts, Mesenchymal stem cells, Hypoxia-inducible factor, microRNA, Galectins, Hyperplasia, Hypertrophy, Therapy of hypoxic pulmonary hypertension.
- MeSH
- hypoxie * metabolismus MeSH
- lidé MeSH
- myocyty hladké svaloviny * metabolismus patologie MeSH
- plicní hypertenze * metabolismus patologie MeSH
- proliferace buněk MeSH
- svaly hladké cévní * metabolismus patologie MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- přehledy MeSH
Hypoxic pulmonary vasoconstriction (HPV) rapidly and reversibly matches lung ventilation (V) and perfusion (Q), optimizing oxygen uptake and systemic oxygen delivery. HPV occurs in small pulmonary arteries (PA), which uniquely constrict to hypoxia. Although HPV is modulated by the endothelium the core mechanism of HPV resides in PA smooth muscle cells (PASMC). The PASMC's mitochondrial oxygen sensor lies within the electron transport chain (ETC) and includes NDUFS2 in ETC Complex-I. PASMC mitochondria respond to hypoxia by varying production of reactive oxygen species (ROS) and hydrogen peroxide in proportion to alveolar oxygen tension. Hypoxic ROS inhibition results in a state of reduction which triggers a redox-mediated inhibition of oxygen-sensitive, voltage-gated, potassium channels, including Kv1.5 and Kv2.1. Kv channel inhibition depolarizes the PASMC, opening of large-conductance calcium channels (CaL), elevating cytosolic calcium and activating the contractile apparatus. HPV is strongest in small PAs where sensors (hypoxia-responsive mitochondria) and effectors (oxygen-sensitive K+ channels) are enriched. Oxygenation at birth reverses fetal HPV, contributing to the rapid neonatal drop in pulmonary vascular resistance (PVR). A similar mitochon-drial-K+ channel sensor-effector mechanism exists in the ductus arteriosus (DA), however in DASMC it is oxygen-induced increases in mitochondrial ROS that inhibit DASMC K+ channels, causing DA constriction. Atelectasis and pneumonia elicit HPV, which optimises V/Q matching, increasing systemic oxygenation. Whilst HPV in response to localized hypoxia in a single lung lobe does not increase PA pressure; global airway hypoxia, as occurs with altitude or sleep apnea, causes pulmonary hypertension. HPV can be inhibited by drugs, including calcium channel blockers, or used to maintain a dry operative field during single lung anesthesia for lung surgery. HPV does not normally cause lung edema but excessive, heterogenous HPV contributes to high altitude pulmonary edema. HPV is suppressed in COVID-19 pneumonia by a SARS-CoV-2 mitochondriopathy. HPV is a component of the body's homeostatic oxygen sensing system. Keywords: Ductus arteriosus, Redox, NDUFS2, Oxygen sensitive potassium, Channels, High altitude pulmonary edema (HAPE), Mitochondrial electron transport chain, COVID-19 pneumonia, Atelectasis.
- MeSH
- arteria pulmonalis metabolismus MeSH
- COVID-19 metabolismus komplikace MeSH
- homeostáza * fyziologie MeSH
- hypoxie * metabolismus patofyziologie MeSH
- kyslík * metabolismus MeSH
- lidé MeSH
- vazokonstrikce * fyziologie MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- přehledy MeSH
Complex injuries to the posterior trunk can still pose a significant challenge to the reconstructive surgeon. Due to the lack of skin laxity, dependent anatomical location and the importance of the deeper structures, a systematic approach tailored to the individual defect should be considered for these types of reconstructions. In our case report, we present a reconstructive solution of a chronic defect of the back caused by resection of an ulceration. What was previously considered to be a relapse of a malignant melanoma turned out to be a chronic osteomyelitis of the spinous processes of the thoracic vertebrae. The defect after the resection of the ulceration and infected spinous processes of the thoracic vertebrae with exposed dorsal lamina was covered with pedicled myocutaneous flap. Reconstruction yielded well-vascularized tissue that provided sufficient volume and tissue quality. Even in the light of modern perforator flaps, local or locoregional muscle and myocutaneous flaps remain the first choice for the treatment of deep back defects. Considering all the factors in the given case, plastic surgeons are able to tailor the reconstructive technique to every individual case to match the desired reconstruction goal.
- MeSH
- chirurgické laloky * chirurgie MeSH
- dermatochirurgické výkony metody MeSH
- hrudní obratle chirurgie patologie MeSH
- lidé MeSH
- maligní melanom kůže komplikace MeSH
- osteomyelitida * chirurgie MeSH
- pooperační péče metody MeSH
- senioři MeSH
- stafylokokové infekce komplikace MeSH
- vřed chirurgie komplikace patologie MeSH
- záda chirurgie patologie MeSH
- Check Tag
- lidé MeSH
- mužské pohlaví MeSH
- senioři MeSH
- Publikační typ
- kazuistiky MeSH