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1.
J Orthop Surg Res ; 19(1): 335, 2024 Jun 07.
Article in English | MEDLINE | ID: mdl-38845012

ABSTRACT

BACKGROUND: Existing studies have shown that computed tomography (CT) attenuation and skeletal muscle tissue are strongly associated with osteoporosis; however, few studies have examined whether vertebral HU values and the pectoral muscle index (PMI) measured at the level of the 4th thoracic vertebra (T4) are strongly associated with bone mineral density (BMD). In this study, we demonstrate that vertebral HU values and the PMI based on chest CT can be used to opportunistically screen for osteoporosis and reduce fracture risk through prompt treatment. METHODS: We retrospectively evaluated 1000 patients who underwent chest CT and DXA scans from August 2020-2022. The T4 HU value and PMI were obtained using manual chest CT measurements. The participants were classified into normal, osteopenia, and osteoporosis groups based on the results of dual-energy X-ray (DXA) absorptiometry. We compared the clinical baseline data, T4 HU value, and PMI between the three groups of patients and analyzed the correlation between the T4 HU value, PMI, and BMD to further evaluate the diagnostic efficacy of the T4 HU value and PMI for patients with low BMD and osteoporosis. RESULTS: The study ultimately enrolled 469 participants. The T4 HU value and PMI had a high screening capacity for both low BMD and osteoporosis. The combined diagnostic model-incorporating sex, age, BMI, T4 HU value, and PMI-demonstrated the best diagnostic efficacy, with areas under the receiver operating characteristic curve (AUC) of 0.887 and 0.892 for identifying low BMD and osteoporosis, respectively. CONCLUSIONS: The measurement of T4 HU value and PMI on chest CT can be used as an opportunistic screening tool for osteoporosis with excellent diagnostic efficacy. This approach allows the early prevention of osteoporotic fractures via the timely screening of individuals at high risk of osteoporosis without requiring additional radiation.


Subject(s)
Absorptiometry, Photon , Bone Density , Osteoporosis , Pectoralis Muscles , Thoracic Vertebrae , Tomography, X-Ray Computed , Humans , Female , Osteoporosis/diagnostic imaging , Male , Thoracic Vertebrae/diagnostic imaging , Retrospective Studies , Middle Aged , Tomography, X-Ray Computed/methods , Aged , Absorptiometry, Photon/methods , Pectoralis Muscles/diagnostic imaging , Mass Screening/methods , Aged, 80 and over , Radiography, Thoracic/methods , Adult
2.
Nature ; 630(8017): 671-676, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38867039

ABSTRACT

The subpectoral diverticulum (SPD) is an extension of the respiratory system in birds that is located between the primary muscles responsible for flapping the wing1,2. Here we survey the pulmonary apparatus in 68 avian species, and show that the SPD was present in virtually all of the soaring taxa investigated but absent in non-soarers. We find that this structure evolved independently with soaring flight at least seven times, which indicates that the diverticulum might have a functional and adaptive relationship with this flight style. Using the soaring hawks Buteo jamaicensis and Buteo swainsoni as models, we show that the SPD is not integral for ventilation, that an inflated SPD can increase the moment arm of cranial parts of the pectoralis, and that pectoralis muscle fascicles are significantly shorter in soaring hawks than in non-soaring birds. This coupling of an SPD-mediated increase in pectoralis leverage with force-specialized muscle architecture produces a pneumatic system that is adapted for the isometric contractile conditions expected in soaring flight. The discovery of a mechanical role for the respiratory system in avian locomotion underscores the functional complexity and heterogeneity of this organ system, and suggests that pulmonary diverticula are likely to have other undiscovered secondary functions. These data provide a mechanistic explanation for the repeated appearance of the SPD in soaring lineages and show that the respiratory system can be co-opted to provide biomechanical solutions to the challenges of flight and thereby influence the evolution of avian volancy.


Subject(s)
Flight, Animal , Animals , Flight, Animal/physiology , Pectoralis Muscles/physiology , Wings, Animal/physiology , Wings, Animal/anatomy & histology , Lung/physiology , Birds/physiology , Hawks/physiology , Respiratory System/anatomy & histology , Biomechanical Phenomena , Biological Evolution , Models, Biological
3.
Ann Plast Surg ; 92(6S Suppl 4): S397-S400, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38857002

ABSTRACT

BACKGROUND: Ultrasound-guided regional field blocks are not widely used in outpatient plastic surgeries. The efficacy of truncal blocks (PEC1 + SAP) has not been established in plastic surgery. The purpose of this study was to analyze the outcomes of these newer anesthetic techniques compared with traditional blind local anesthetic infiltration in patients undergoing breast augmentation. METHODS: This retrospective institutional review board-approved cohort study compared the outcomes of the different practices of 2 plastic surgeons at the same accredited outpatient surgery center between 2018 and 2022. Group 1 received an intraoperative blind local infiltration anesthetic. Group 2 underwent surgeon-led, intraoperative, ultrasound-guided PEC1 (Pectoralis 1) + SAP (serratus anterior plane) blocks. Patients who underwent any procedure other than primary submuscular augmentation mammoplasty were excluded from the study. The outcomes measured included operative time, opioid utilization in morphine milligram equivalents (MME), pain level at discharge, and time spent in the post anesthetic care unit (PACU). RESULTS: Sixty patients met the inclusion criteria for each group for a total of 120 patients. The study groups were similar to each other. Patients receiving PEC1 + SAP blocks (group 2) had significantly lower average MME requirements in the PACU (3.04 MME vs 4.52 MME, P = 0.041) and required a shorter average PACU stay (70.13 minutes vs 80.38 minutes, P = 0.008). There were no significant differences in the pain level at discharge, operative time, or implant size between the 2 groups. CONCLUSIONS: Surgeon-led, intraoperative, ultrasound-guided PEC1 + SAP blocks significantly decreased opioid utilization in the PACU by 33% and patient time in the PACU by 13%, while achieving similar patient pain scores and operating times.


Subject(s)
Anesthesia, Local , Mammaplasty , Nerve Block , Pain, Postoperative , Ultrasonography, Interventional , Humans , Female , Retrospective Studies , Adult , Nerve Block/methods , Pain, Postoperative/prevention & control , Anesthesia, Local/methods , Mammaplasty/methods , Pain Management/methods , Pectoralis Muscles/surgery , Middle Aged , Pain Measurement , Anesthesia Recovery Period , Anesthetics, Local/administration & dosage , Cohort Studies
4.
Semin Vasc Surg ; 37(1): 26-34, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38704180

ABSTRACT

Pectoralis minor syndrome (PMS) and quadrilateral space syndrome (QSS) are uncommon neurovascular compression disorders affecting the upper extremity. PMS involves compression under the pectoralis minor muscle, and QSS results from compression in the quadrilateral space-both are classically observed in overhead-motion athletes. Diagnosing PMS and QSS may be challenging due to variable presentations and similarities with other, more common, upper-limb pathologies. Although there is no gold standard diagnostic, local analgesic muscle-block response in a patient with the appropriate clinical context is often all that is required for an accurate diagnosis after excluding more common etiologies. Treatment ranges from conservative physical therapy to decompressive surgery, which is reserved for refractory cases or severe, acute vascular presentations. Decompression generally yields favorable outcomes, with most patients experiencing significant relief and restored baseline function. In conclusion, PMS and QSS, although rare, can cause debilitating upper-extremity symptoms; accurate diagnosis and appropriate treatment offer excellent outcomes, alleviating pain and disability.


Subject(s)
Decompression, Surgical , Nerve Compression Syndromes , Pectoralis Muscles , Upper Extremity , Humans , Treatment Outcome , Upper Extremity/blood supply , Upper Extremity/innervation , Nerve Compression Syndromes/diagnosis , Nerve Compression Syndromes/etiology , Nerve Compression Syndromes/physiopathology , Nerve Compression Syndromes/surgery , Recovery of Function , Male , Female , Adult
5.
Poult Sci ; 103(7): 103763, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38697005

ABSTRACT

The purpose of the study was to compare young (6-wk-old) and spent (52-wk-old) Japanese quail in terms of body weight, carcass characteristics, and some meat quality traits. Whole carcasses were dissected, pectoral muscles and leg muscles were sampled for determination of basic chemical composition and L*a*b* color parameters, while m. pectoralis major was sampled for texture and microstructure traits. Age of quails had a significant effect on body weight, carcass weight, carcass yield, pectoral muscle, abdominal fat and skin with subcutaneous fat, and carcass remainders contents in eviscerated carcass. Spent quails had significantly higher intramuscular fat content in pectoral and leg muscles and protein content in breast muscle, and also lower content of water in breast and leg muscles than young quails. Slaughter age significantly affected lightness (L*) and redness (a*) of pectoral muscles, as well as texture traits (except for cohesiveness) and microstructure of m. pectoralis major, except for thickness of perimysium and endomysium. Regardless of age, quail sex had an effect on the carcass traits studied (except for leg muscle content), intramuscular fat content of pectoral and leg muscles, water content of leg muscles and yellowness of pectoral muscle. In addition, a significant effect of quail sex was found on cutting work, springiness, chewiness and marked microstructural characteristics, except for vertical fiber diameter. The interaction between age and sex was significant for most slaughter and microstructural characteristics and also WB-shear force of m. pectoralis major, and L*, b* pectoral muscles. Higher fatness of carcasses, higher intramuscular fat in meat, and poorer textural and microstructural characteristics of m. pectoralis major spent Japanese quail indicate poorer fulfillment of most consumers' requirements compared to carcasses and meat of young quails.


Subject(s)
Coturnix , Meat , Animals , Meat/analysis , Coturnix/anatomy & histology , Coturnix/physiology , Male , Female , Age Factors , Muscle, Skeletal/chemistry , Muscle, Skeletal/anatomy & histology , Pectoralis Muscles/chemistry , Pectoralis Muscles/physiology , Pectoralis Muscles/anatomy & histology , Body Composition
6.
Poult Sci ; 103(7): 103830, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38763060

ABSTRACT

Relationships between texture measurements and meat water properties were investigated in raw intact broiler breast fillets with the wooden breast (WB) condition. Texture measurements included subjective WB scores and blunt Meullenet-Owens Razor Shear (BMORS). Water properties were determined with low-field nuclear magnetic resonance (LF-NMR). Spearman correlation was used to estimate relationships between WB scores and water properties, while Pearson correlation was used for relationships between BMORS force and water properties. LF-NMR measurements exhibited 3 water components: protein-associated or hydration water T2b, intra-myofibrillar water or immobilized water T21, and extra-myofibrillar water or free water T22 in chicken breast meat. Significant and strong Spearman correlations were found between the WB scores and T21 time constant, the abundance (normalized areas) of T22, and the proportion of T21 and T22 (rs > 0.60, P < 0.001). Strong Pearson correlations (r = 0.72) were noted only between the T21 time constant and BMORS force. These results demonstrate that water may contribute to the specific texture characteristics measured with subjective WB scoring (palpable hardness and rigidity) and BMORS (hardness and share force) in raw broiler breast fillets with the WB condition.


Subject(s)
Chickens , Meat , Pectoralis Muscles , Water , Animals , Meat/analysis , Water/analysis , Pectoralis Muscles/pathology
7.
J Cardiothorac Surg ; 19(1): 289, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38745239

ABSTRACT

INTRODUCTION: Deep sternal wound infection (DSWI) after midline sternotomy of cardiac surgery is a challenging complication that affects the outcome of surgery. This study aims to assess the clinical effectiveness of the antibiotic-loaded bone cement fixation technique combined with bilateral pectoralis major muscle flaps tension-free management in the treatment of DSWI. METHODS: We retrospectively analyzed 5 patients with DSWI who underwent antibiotic-loaded bone cement combined with bilateral pectoralis major muscle flaps for chest wall reconstruction after sternotomy for cardiac surgery in a tertiary hospital in China from January 2020 to December 2021. The clinical and follow-up data were retrospectively analyzed. RESULTS: All patients had no perioperative mortalities, no postoperative complications, 100% wound healing, and an average hospital stay length of 24 days. The follow-up periods were from 6 to 35 months (mean 19.6 months). None of the cases showed wound problems after initial reconstruction using antibiotic-loaded bone cement combined with bilateral pectoralis major muscle flaps. CONCLUSIONS: We report our successful treatment of DSWI, using antibiotic-loaded bone cement fixation technique combined with bilateral pectoralis major muscle flaps tension-free management. The clinical and follow-up results are favorable.


Subject(s)
Anti-Bacterial Agents , Bone Cements , Pectoralis Muscles , Sternotomy , Surgical Flaps , Surgical Wound Infection , Humans , Male , Sternotomy/adverse effects , Anti-Bacterial Agents/therapeutic use , Anti-Bacterial Agents/administration & dosage , Retrospective Studies , Bone Cements/therapeutic use , Pectoralis Muscles/surgery , Middle Aged , Surgical Wound Infection/surgery , Surgical Wound Infection/drug therapy , Female , Aged , Cardiac Surgical Procedures/methods , Sternum/surgery , Plastic Surgery Procedures/methods
8.
Mol Biol Rep ; 51(1): 625, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38717527

ABSTRACT

BACKGROUND: The currently known homing pigeon is a result of a sharp one-sided selection for flight characteristics focused on speed, endurance, and spatial orientation. This has led to extremely well-adapted athletic phenotypes in racing birds. METHODS: Here, we identify genes and pathways contributing to exercise adaptation in sport pigeons by applying next-generation transcriptome sequencing of m.pectoralis muscle samples, collected before and after a 300 km competition flight. RESULTS: The analysis of differentially expressed genes pictured the central role of pathways involved in fuel selection and muscle maintenance during flight, with a set of genes, in which variations may therefore be exploited for genetic improvement of the racing pigeon population towards specific categories of competition flights. CONCLUSIONS: The presented results are a background to understanding the genetic processes in the muscles of birds during flight and also are the starting point of further selection of genetic markers associated with racing performance in carrier pigeons.


Subject(s)
Columbidae , Flight, Animal , Transcriptome , Animals , Columbidae/genetics , Columbidae/physiology , Flight, Animal/physiology , Transcriptome/genetics , Gene Expression Profiling/methods , Pectoralis Muscles/metabolism , Pectoralis Muscles/physiology , Muscle, Skeletal/metabolism , Muscle, Skeletal/physiology
9.
BMC Musculoskelet Disord ; 25(1): 412, 2024 May 27.
Article in English | MEDLINE | ID: mdl-38802774

ABSTRACT

BACKGROUND: Dysfunctional gliding of deep fascia and muscle layers forms the basis of myofascial pain and dysfunction, which can cause chronic shoulder pain. Ultrasound shear strain imaging may offer a non-invasive tool to quantitatively evaluate the extent of muscular dysfunctional gliding and its correlation with pain. This case study is the first to use ultrasound shear strain imaging to report the shear strain between the pectoralis major and minor muscles in shoulders with and without chronic pain. CASE PRESENTATION: The shear strain between the pectoralis major and minor muscles during shoulder rotation in a volunteer with chronic shoulder pain was measured with ultrasound shear strain imaging. The results show that the mean ± standard deviation shear strain was 0.40 ± 0.09 on the affected side, compared to 1.09 ± 0.18 on the unaffected side (p<0.05). The results suggest that myofascial dysfunction may cause the muscles to adhere together thereby reducing shear strain on the affected side. CONCLUSION: Our findings elucidate a potential pathophysiology of myofascial dysfunction in chronic shoulder pain and reveal the potential utility of ultrasound imaging to provide a useful biomarker for shear strain evaluation between the pectoralis major and minor muscles.


Subject(s)
Chronic Pain , Shoulder Pain , Ultrasonography , Humans , Shoulder Pain/diagnostic imaging , Shoulder Pain/physiopathology , Shoulder Pain/etiology , Chronic Pain/diagnostic imaging , Chronic Pain/physiopathology , Ultrasonography/methods , Myofascial Pain Syndromes/diagnostic imaging , Myofascial Pain Syndromes/physiopathology , Adult , Male , Pectoralis Muscles/diagnostic imaging , Pectoralis Muscles/physiopathology , Female , Shear Strength
10.
Braz J Biol ; 84: e276805, 2024.
Article in English | MEDLINE | ID: mdl-38808782

ABSTRACT

This study compares the physicochemical characteristics of breast meat (Pectoralis major) from conventional chicken and free-range chicken production systems. Analyses of pH, instrumental color measurement, weight loss from cooking (WLC), and water retention capacity (WRC) were carried out. Average pH values were slightly higher for conventional chicken samples. WLC did not show a significant difference between conventional and free-range chicken samples. The WRC was better and higher for the free-range chicken samples than the conventional ones. The mean values for luminosity (L*) were within the normal range, with slightly higher values for conventional chicken. In chromatids a* and b*, there was a tendency towards a more reddish color for free-range chicken samples. The differences found for types of production can be explained mainly by the difference in age at slaughter, the degree of physical activity, animal feeding, among other characteristics that differentiate an animal raised by the extensive system from the intensive system.


Subject(s)
Chickens , Meat , Animals , Meat/analysis , Meat/standards , Pectoralis Muscles/physiology , Animal Husbandry , Hydrogen-Ion Concentration , Food Quality , Cooking
11.
BMC Genomics ; 25(1): 438, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38698322

ABSTRACT

BACKGROUND: Nutrient availability during early stages of development (embryogenesis and the first week post-hatch) can have long-term effects on physiological functions and bird metabolism. The embryo develops in a closed structure and depends entirely on the nutrients and energy available in the egg. The aim of this study was to describe the ontogeny of pathways governing hepatic metabolism that mediates many physiological functions in the pHu + and pHu- chicken lines, which are divergently selected for the ultimate pH of meat, a proxy for muscle glycogen stores, and which differ in the nutrient content and composition of eggs. RESULTS: We identified eight clusters of genes showing a common pattern of expression between embryonic day 12 (E12) and day 8 (D8) post-hatch. These clusters were not representative of a specific metabolic pathway or function. On E12 and E14, the majority of genes differentially expressed between the pHu + and pHu- lines were overexpressed in the pHu + line. Conversely, the majority of genes differentially expressed from E18 were overexpressed in the pHu- line. During the metabolic shift at E18, there was a decrease in the expression of genes linked to several metabolic functions (e.g. protein synthesis, autophagy and mitochondrial activity). At hatching (D0), there were two distinct groups of pHu + chicks based on hierarchical clustering; these groups also differed in liver weight and serum parameters (e.g. triglyceride content and creatine kinase activity). At D0 and D8, there was a sex effect for several metabolic pathways. Metabolism appeared to be more active and oriented towards protein synthesis (RPS6) and fatty acid ß-oxidation (ACAA2, ACOX1) in males than in females. In comparison, the genes overexpressed in females were related to carbohydrate metabolism (SLC2A1, SLC2A12, FoxO1, PHKA2, PHKB, PRKAB2 and GYS2). CONCLUSIONS: Our study provides the first detailed description of the evolution of different hepatic metabolic pathways during the early development of embryos and post-hatching chicks. We found a metabolic orientation for the pHu + line towards proteolysis, glycogen degradation, ATP synthesis and autophagy, likely in response to a higher energy requirement compared with pHu- embryos. The metabolic orientations specific to the pHu + and pHu- lines are established very early, probably in relation with their different genetic background and available nutrients.


Subject(s)
Chickens , Liver , Animals , Chickens/genetics , Chickens/growth & development , Chickens/metabolism , Liver/metabolism , Liver/growth & development , Hydrogen-Ion Concentration , Female , Pectoralis Muscles/metabolism , Pectoralis Muscles/growth & development , Male , Gene Expression Profiling , Chick Embryo , Gene Expression Regulation, Developmental
12.
Ecol Evol Physiol ; 97(1): 11-28, 2024.
Article in English | MEDLINE | ID: mdl-38717370

ABSTRACT

AbstractSeasonally breeding birds express variations of traits (phenotypic flexibility) throughout their life history stages that represent adaptations to environmental conditions. Changes of body condition during migration have been well studied, whereas alterations of skeletal and cardiac muscles, body mass, and fat scores have yet to be characterized throughout the spring or fall migratory stages. Additionally, we examined flexible patterns of muscle, body mass, and fat score in migrant white-crowned sparrows (Zonotrichia leucophrys gambelii) in comparison with those in a resident subspecies (Zonotrichia leucophrys nuttalli) during the stages they share to evaluate the influence of different life histories. Migrants showed hypertrophy of the pectoralis muscle fiber area on the wintering grounds in late prealternate molt, yet increased pectoralis muscle mass was not detected until birds readied for spring departure. While pectoralis profile and fat scores enlarged at predeparture in spring and fall, pectoralis, cardiac, and body masses were greater only in spring stages, suggesting seasonal differences for migratory preparation. Gastrocnemius mass showed little change throughout all stages, whereas gastrocnemius fiber area declined steadily but rebounded in fall on the wintering grounds, where migrants become more sedentary. In general, residents are heavier birds with larger leg structures, while migrants sport longer wings and greater heart mass. Phenotypic flexibility was most prominent among residents with peaks of pectoralis, gastrocnemius, and body masses during the winter stage, when local weather is most severe. Thus, the subspecies express specific patterns of phenotypic flexibility with peaks coinciding with the stages of heightened energy demands: the winter stage for residents and the spring stages for migrants.


Subject(s)
Animal Migration , Muscle, Skeletal , Phenotype , Seasons , Sparrows , Animals , Animal Migration/physiology , Muscle, Skeletal/physiology , Body Composition/physiology , Male , Pectoralis Muscles/physiology , Female
13.
Animal ; 18(5): 101144, 2024 May.
Article in English | MEDLINE | ID: mdl-38642412

ABSTRACT

The global demand for white chicken meat along with the increase in the occurrence of growth-related breast muscle myopathies (BMMs) [namely white striping (WS), wooden breast (WB), and spaghetti meat (SM)] highlights the need for solutions that will improve meat quality while maintaining the high productivity of modern broilers. Guanidinoacetate (GAA), a precursor of creatine, is used as a feed additive and has previously shown the potential to affect the quality of breast meat. This study investigated growth performance, meat quality and the risk ratio for the development of BMMs in broilers assigned to two dietary treatments: control (CON) group, fed a commercial basal diet, and supplemented GAA (sGAA) group, receiving the control diet supplemented on top with 0.06% GAA. Growth performance indicators such as BW, daily weight gain, daily feed intake, feed conversion ratio and cumulative feed conversion ratio were recorded on a pen basis. As a trait affecting animal welfare, the occurrence of foot pad dermatitis was also evaluated. At day 43, birds were processed, and breasts were scored for the incidence and severity of BMMs (n = 166 and 165 in CON and sGAA groups, respectively). Quality traits (ultimate pH, colour) and technological properties (i.e., drip and cooking losses, marinade uptake, shear force, and oxidation levels of the lipid and the protein fractions) of breast meat were assessed in both treatments on samples not showing any macroscopic sign of BMMs (n = 20 breast fillets per group). Data of myopathy risk ratio were analysed as the risk for each group to develop WS, WB, and SM myopathies. Our results show that while sGAA and control groups did not differ significantly in growth performance, a remarkably beneficial effect of GAA was observed on the incidence of BMMs with significantly reduced risk of sGAA group to develop SM myopathy. The risk of sGAA group to develop SM was 30% lower compared to CON (P = 0.028). Finally, a significantly lower drip loss was observed in sGAA in comparison with CON (1.78 vs 2.48%, P = 0.020). Together, our results show that the inclusion of 0.06% GAA in feed can improve the water-holding capacity of meat and reduce the risk to develop SM myopathy without compromising the performance of broilers.


Subject(s)
Animal Feed , Chickens , Diet , Dietary Supplements , Glycine , Meat , Muscular Diseases , Poultry Diseases , Animals , Chickens/growth & development , Muscular Diseases/veterinary , Muscular Diseases/chemically induced , Muscular Diseases/prevention & control , Glycine/analogs & derivatives , Glycine/administration & dosage , Meat/analysis , Animal Feed/analysis , Diet/veterinary , Dietary Supplements/analysis , Poultry Diseases/chemically induced , Poultry Diseases/prevention & control , Pectoralis Muscles , Muscle, Skeletal/drug effects
14.
Poult Sci ; 103(7): 103781, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38669818

ABSTRACT

The Wooden Breast myopathy results in the necrosis and fibrosis of breast muscle fibers in fast-growing heavy weight meat-type broiler chickens. Myogenic satellite cells are required to repair and regenerate the damaged muscle fibers. Using Genome Wide Association, candidate genes affected with Wooden Breast have been previously reported. The effect of these genes on satellite cell proliferation, differentiation, and the synthesis of lipids by satellite cells is unknown. Satellite cells isolated from the pectoralis major muscle from commercial Ross 708 broilers and a Randombred chicken (RBch) line were used. Expression of calponin 1 (CNN1) and PHD and ring fingers domains 1 (PHRF1) were knocked down by silent interfering RNA to determine their effect on satellite cell-mediated proliferation, differentiation, and lipid accumulation. CNN1 and PHRF1 affected satellite cell activity and lipid accumulation in both lines. Proliferation was reduced in the Ross 708 and RBch lines by knocking down the expression of both genes, and differentiation was affected with a line and treatment interaction when gene expression was reduced at the beginning of proliferation. During differentiation lipid accumulation was decreased with knocking down the expression of CNN1 and PHRF1. Both CNN1 and PHRF1 have not been reported previously in skeletal muscle and further research is required to determine their effect on satellite cell-mediated growth and regeneration of the pectoralis major (breast) muscle.


Subject(s)
Avian Proteins , Calcium-Binding Proteins , Chickens , Pectoralis Muscles , Satellite Cells, Skeletal Muscle , Animals , Satellite Cells, Skeletal Muscle/physiology , Satellite Cells, Skeletal Muscle/metabolism , Chickens/genetics , Chickens/physiology , Avian Proteins/genetics , Avian Proteins/metabolism , Pectoralis Muscles/physiology , Pectoralis Muscles/metabolism , Calcium-Binding Proteins/genetics , Calcium-Binding Proteins/metabolism , Microfilament Proteins/genetics , Microfilament Proteins/metabolism , Calponins , Cell Proliferation , Cell Differentiation , Poultry Diseases/genetics , Poultry Diseases/metabolism , Gene Knockdown Techniques/veterinary
15.
Poult Sci ; 103(6): 103680, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38564836

ABSTRACT

White Striping (WS), Wooden Breast (WB), and Spaghetti Meat (SM) are documented breast muscle myopathies (BMM) affecting broiler chickens' product quality, profitability and welfare. This study evaluated the efficacy of our newly developed deep learning-based automated image analysis tool for early detection of morphometric parameters related to BMM in broiler chickens. Male chicks were utilized, and muscle samples were collected on d 14 of rearing. Histological procedures, including microscopic scoring, blood vessel count, and collagen quantification, were conducted. A previous study demonstrated our automated image analysis as a reliable tool for evaluating myofiber size, conforming with manual histological measurements. A threshold for BMM detection was established by normalizing and consolidating myofiber diameter and area into a unified metric based on automated measurements, also termed as "relative myofiber size value." Results show that severe myopathy broilers consistently exhibited lower relative myofiber size values, effectively detecting myopathy severity. Our study, aimed as proof of concept, underscores the potential of our automated image analysis tool as an early detection method for BMM.


Subject(s)
Chickens , Image Processing, Computer-Assisted , Muscular Diseases , Pectoralis Muscles , Poultry Diseases , Animals , Muscular Diseases/veterinary , Muscular Diseases/pathology , Muscular Diseases/diagnosis , Poultry Diseases/pathology , Poultry Diseases/diagnosis , Male , Pectoralis Muscles/pathology , Image Processing, Computer-Assisted/methods , Deep Learning , Meat/analysis , Early Diagnosis
16.
Poult Sci ; 103(6): 103682, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38593545

ABSTRACT

White striping (WS) is an emerging myopathy that results in significant economic losses as high as $1 billion (combined with losses derived from other breast myopathies including woody breast and spaghetti meat) to the global poultry industry. White striping is detected as the occurrence of white lines on raw poultry meat. The exact etiologies for WS are still unclear. Proteomic analyses of co-expressed WS and woody breast phenotypes previously demonstrated dysfunctions in carbohydrate metabolism, protein synthesis, and calcium buffering capabilities in muscle cells. In this study, we conducted shotgun proteomics on chicken breast fillets exhibiting only WS that were collected at approximately 6 h postmortem. After determining WS severity, protein extractions were conducted from severe WS meat with no woody breast (WB) condition (n = 5) and normal non-affected (no WS) control meat (n = 5). Shotgun proteomics was conducted by Orbitrap Lumos, tandem mass tag (TMT) analysis. As results, 148 differentially abundant proteins (|fold change|>1.4; p-value < 0.05) were identified in the WS meats compared with controls. The significant canonical pathways included BAG2 signaling pathway, glycogen degradation II, isoleucine degradation I, aldosterone signaling in epithelial cells, and valine degradation I. The potential upstream regulators include LIPE, UCP1, ATP5IF1, and DMD. The results of this study provide additional insights into the cellular mechanisms on the WS myopathy and meat quality.


Subject(s)
Avian Proteins , Chickens , Meat , Muscular Diseases , Pectoralis Muscles , Poultry Diseases , Proteomics , Animals , Muscular Diseases/veterinary , Muscular Diseases/pathology , Muscular Diseases/metabolism , Poultry Diseases/metabolism , Meat/analysis , Pectoralis Muscles/metabolism , Avian Proteins/metabolism , Avian Proteins/genetics , Proteome , Muscle Proteins/metabolism , Muscle Proteins/genetics
17.
Poult Sci ; 103(6): 103691, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38598910

ABSTRACT

The blackness traits, considered an important economic factor in the black-bone chicken industry, still exhibits a common phenomenon of significant difference in blackness of breast muscle. To improve this phenomenon, this study compared growth traits, blackness traits, and transcriptome of breast muscles between the High Blackness Group (H group) and Low Blackness Group (L group) in the Xuefeng black-bone chickens. The results are as follows: 1) There was no significant difference in growth traits between the H group and the L group (P > 0.05). 2) The skin/breast muscle L values in the H group were significantly lower than those in the L group, while the breast muscle melanin content exhibited the opposite trend (P < 0.05). 3) A significant negative correlation was observed between breast muscle melanin content and skin/breast muscle L value (P < 0.05), and skin L value exhibiting a significant positive correlation with breast muscle L value (P < 0.05). 4) The breast muscle transcriptome comparison between the H group and L group revealed 831 and 405 DEGs in female and male chickens, respectively. This included 37 shared DEGs significantly enriched in melanosome, pigment granule, and the melanogenesis pathway. Seven candidate genes (DCT, PMEL, MLANA, TYRP1, OCA2, EDNRB2, and CALML4) may play a crucial role in the melanin production of breast muscle in Xuefeng black-bone chicken. The findings could accelerate the breeding process for achieving desired levels of breast muscle blackness and contribute to the exploration of the mechanisms underlying melanin production in black-bone chickens.


Subject(s)
Chickens , Melanins , Pectoralis Muscles , Pigmentation , Animals , Chickens/genetics , Chickens/growth & development , Chickens/metabolism , Chickens/physiology , Melanins/metabolism , Melanins/genetics , Pectoralis Muscles/metabolism , Female , Pigmentation/genetics , Male , Transcriptome , Gene Expression
18.
Poult Sci ; 103(6): 103708, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38631230

ABSTRACT

Meat production performance is the most important economic trait in broilers, and skeletal muscle, as the largest organ in animals, is directly related to meat production during embryonic and postnatal growth and development. N6-Methyladenosine (m6A) is a chemical modification occurs on RNA adenosine that has been reported to participate in a variety of biological processes in all species. However, there are still few reports on the regulatory role of muscle growth and development in poultry after birth. This study aims to reveal the distribution of m6A modification sites in chicken pectoralis major muscle after birth and find out the regulatory relationship between m6A and muscle development. As representatives of leaner (Xinghua chicken [XH]) and hypertrophic (White Recessive Rock chicken [WRR]) broilers, there are significant differences in body weight, muscle fiber diameter, and muscle fiber cross-sectional area between XH and WRR chickens. RNA sequencing detected a total of 397 differentially expressed genes (DEG) in the pectoralis major muscle of XH and WRR chicken, and these DEGs were mainly enriched in catalytic activity and metabolic pathways. MeRIP sequencing results showed that among all 6,476 differentially modified m6A peaks, about 90% peaks (5,823) were differentially down regulated in XH chickens. The joint analysis of the mRNA and MeRIP sequencing data found 145 DEGs with differential m6A peak, ALKBH5 as a m6A demethylase, was also included. The highly expression of ALKBH5 in the muscle tissue of poultry and differential expression between XH and WRR chickens suggest that ALKBH5 may play a crucial role in regulating muscle development. Our results revealed that there were significant differences in growth rate, body weight, muscle fiber diameter, and fiber cross-section area between WRR and XH chicken, as well as significant differences in m6A methylation level and muscle metabolism level.


Subject(s)
Adenosine , Chickens , Muscle Development , Animals , Chickens/growth & development , Chickens/genetics , Adenosine/analogs & derivatives , Adenosine/metabolism , Pectoralis Muscles/growth & development , Pectoralis Muscles/metabolism , Sequence Analysis, RNA/veterinary , Male
19.
Ann Anat ; 254: 152264, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38593907

ABSTRACT

BACKGROUND: The pectoralis minor muscle is located in the anterior thoracic wall. Typically, is constituted by a single belly originating from the 3rd to the 5th rib and inserted into the coracoid process near the origins of the biceps brachii shorth head and of the coracobrachialis muscle. The current study, on human fetuses, aims to detect all morphological muscle variants and to create a new classification system. MATERIAL AND METHODS: Classical dissection of the thoracic wall and the upper limb was bilaterally performed on 25 (13 male and 12 female) human formalin-fixed fetuses aged 18-38 weeks of gestation. The spontaneously aborted fetuses were donated after parental consent to the Medical University anatomy program. The pectoralis minor muscle's morphology, the number of the muscle's bellies, their origins, and insertions, as well as the morphometric details of each belly of the pectoralis minor, were assessed. RESULTS: The pectoralis minor was bilaterally found in all fetuses (50 cases). Three types of muscle were identified based on the number of muscle bellies. In type, I (typical anatomy), were classified the cases with a single belly (in 66%). This type was divided into two subtypes (Ia and Ib). In the subtype Ia, the single belly had a typical course, and in Ib, a proximal attachment was characterized by two small bellies connecting together and creating one muscular mass. In type II, two bellies (24%), and in type III, three bellies (10%) were identified. CONCLUSIONS: Pectoralis minor is morphologically variable in the number of its bellies, its course, its origins, its insertions, and the location of its proximal attachments. The most common type (typical anatomy) was the type I represented by one belly. Other identified variants in the number of bellies by the present study may be hypothetically a result of prematurely terminated embryogenesis.


Subject(s)
Fetus , Pectoralis Muscles , Humans , Pectoralis Muscles/anatomy & histology , Female , Fetus/anatomy & histology , Male , Dissection , Gestational Age
20.
Arch Orthop Trauma Surg ; 144(5): 2039-2046, 2024 May.
Article in English | MEDLINE | ID: mdl-38613614

ABSTRACT

INTRODUCTION: In symptomatic patients with rotator cuff tear, MRI and radiographic studies have ascribed the pain symptom to insufficient humeral head depression during arm elevations. The arm adductors such as the teres major and pectoralis major may contribute to depression of the humerus head during arm elevations. Researchers have demonstrated that neuromuscular electrical stimulation (NMES) of the serratus anterior and lower trapezius can control scapular motions and improve acromiohumeral distance. It is unknown, however, if adductor neuromuscular training could help patients with rotator cuff tear. MATERIALS AND METHODS: A cross-sectional study of NMES of the teres major and pectoralis major was conducted on 30 symptomatic subjects with rotator cuff tear. We measured the acromiohumeral distance by ultrasonography and scapular kinematics during arm elevation with a three-dimensional motion tracking system. RESULTS: The acromiohumeral distance significantly increased during NMES of the teres major (0.73 mm, p < 0.001). However, the distance significantly decreased with NMES of the pectoralis major (0.78 mm, p < 0.001). Additionally, scapular upward rotation was greater during NMES of the teres major than during NMES of the pectoralis major (3.4°, p < 0.001). Scapular external rotation decreased significantly more during NMES of the pectoralis major than during NMES of the teres major (1.6°, p = 0.003). CONCLUSIONS: NMES of the teres major can increase acromiohumeral distance and scapular upward rotation during arm elevation. However, the decreased upward and external rotation of the scapula during arm elevation with NMES of the pectoralis major may be associated with subacromial impingement.


Subject(s)
Rotator Cuff Injuries , Humans , Rotator Cuff Injuries/physiopathology , Rotator Cuff Injuries/diagnostic imaging , Cross-Sectional Studies , Male , Female , Middle Aged , Aged , Electric Stimulation Therapy/methods , Biomechanical Phenomena , Range of Motion, Articular , Humerus/physiopathology , Humerus/diagnostic imaging , Pectoralis Muscles/physiopathology , Pectoralis Muscles/diagnostic imaging
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