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1

Tabacaru, Ionel, Andrei Giurginca und Serban M. Sarbu. „Contribution to the study of the tribe Typhlotricholigioidini Roja, 1953 (Isopoda, Oniscidea, Trichoniscidae)“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2022, Nr. 61 (2022): 9–58. http://dx.doi.org/10.59277/tiser.2022.01.

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Following a historical review of the tribe Typhlotricholigioidini, we define the tribe and the genera which, according to our view, are included in it. The genus Brackenphiloscia Ortiz, Garcia Debraz and Lalana, 1999 we interpret as part of this tribe. The examination of the holotype of the species Caucasonethes borutzkyi Verhoeff, 1932, the type species of the genus Caucasonethes, as well as individuals from the type series of several species attributed to the genus Amerigoniscus Vandel, 1950, allowed us to endorse the viability of the synonymy established by Vandel (1953a): Caucasonethes Verhoeff, 1932 syn. Amerigoniscus Vandel, 1950.
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2

Giurginca, Andrei. „Julus scanicus Lohmander, 1925 – a new species for the Romanian fauna“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2022, Nr. 61 (2022): 101–12. http://dx.doi.org/10.59277/tiser.2022.04.

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3

Giurginca, Andrei, und Ionel Tabacaru. „Caucasonethes borutzkyi Verhoeff, 1932: New characters to the original description“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2022, Nr. 61 (2022): 59–72. http://dx.doi.org/10.59277/tiser.2022.02.

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4

Nitzu, Eugen. „The occurence of non-obligate cave dwelling beetles (Insecta, Coleoptera) in the biospeleological provinces of Romania: A faunal and zoogeographic analysis“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2022, Nr. 61 (2022): 73–100. http://dx.doi.org/10.59277/tiser.2022.03.

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Beside 143 specialized (obligate) and other 85 non-obligate cave dwelling species of Coleoptera (also named troglobitic species), previously inventoried by us in the Romanian fauna, in this article we present a list of 156 of non-obligate cave dwelling species which occur in different associations in the Romanian caves, for the first time grouped on biospeleological provinces and zones. In the context of the new studies which showed that the “non-obligate” cave dwelling species do not occur randomly in the caves, but having a proved selectivity for caves, this study is focused on biogeographical aspects of non-specialized cave dwelling species.
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BABA, ȘTEFAN, RALUCA BĂNCILĂ, RODICA PLĂIAȘU, IONUȚ POPA und ANDREI GIURGINCA. „Comparative study on the performance of sampling methods for Myriapoda (Diplopoda, Chilopoda, Symphyla) and Oniscidea from Buzău mountains“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 91–113. http://dx.doi.org/10.59277/tiser.2023.07.

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In this paper we focus on some edaphic macroinvertebrates, Oniscidea, Diplopoda, Chilopoda and Symphyla, and their activity-density in relation with a short-term sampling protocol and a series of environmental factors. Our case study targeted the invertebrate community from Ivăneţu Massif near the Rupestral Assembly of Bozioru Mountains and tested the performance of direct sampling using tweezers, sifting leaf-litter with the Winkler sieve, extracting soil samples and using pitfall traps. In order to achieve a more realistic understanding of oniscidean and myriapod diversity patterns we recommend a combination of the abovementioned sampling methods.
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GIURGINCA, ANDREI, CEZARA TUDOSE und GETA RÂȘNOVEANU. „The Diplopoda from the middle course of Argeş river“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 79–89. http://dx.doi.org/10.59277/tiser.2023.06.

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23 species of Diplopoda are recorded from the poorly investigated region of the middle basin of the Argeş River, several species being recorded for the first time in this region while for other species like Rumaniulus mammosus it expands the known distribution.
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TABACARU, IONEL, und ANDREI GIURGINCA. „The genus Karamanoniscus Tabacaru, 2021 and the tribus Spelaeonethini Schmölzer, 1956 (Isopoda, Oniscidea, Trichoniscidae)“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 3–32. http://dx.doi.org/10.59277/tiser.2023.01.

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The synonymy of Macedonethes Buturović, 1955, described as a subgenus of Alpioniscus and subsequently considered by Tabacaru as a distinct genus, with Alpioniscus Racovitza, 1908 is argued, while Macedonethes skopjensis Buturović, 1955, considered as the type species of the genus, belongs to the genus Alpioniscus, as Alpioniscus skopjensis Buturović, 1955. Moreover, the authors argue that Macedonethes Buturović, 1955 sensu Ivo Karaman, 2003 (partim) = Alpioniscus Racovitza, 1908 while Macedonethes castellonensis (CRUZ & DALENS, 1989) = Alpioniscus castellonensis (CRUZ & DALENS, 1989). The validity of the genus Karamanoniscus Tabacaru, 2021, with the type species Macedonethes stankoi Karaman, 2023, is again endorsed based on differential characters in comparison with the other genera of the Trichoniscidae. The structure of the tribe Spelaeonethini Schmölzer, 1965 is analyzed.
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GIURGINCA, ANDREI, und FLORIN-ROBERT OPRAN. „A new species of Trichoniscus (Crustacea, Isopoda, Oniscidea) with glandular-piliferous organ from Romania“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 45–54. http://dx.doi.org/10.59277/tiser.2023.03.

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9

NAE, IOANA, und MARK MARAUN. „First record of Jugatala cribelliger = Mycobates (Calyptozetes) cribelliger (Berlese, 1904) (Acari: Oribatida) in the Romanian fauna“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 67–77. http://dx.doi.org/10.59277/tiser.2023.05.

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The authors present one oribatid mite species new for the Romanian fauna, found in Piatra Craiului Mountains. Jugatala cribelliger = Mycobates (Calyptozetes) cribelliger (BERLESE, 1904) is described using scanning electronic microscope images, with notes on its morphology, taxonomic status and distribution.
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NITZU, EUGEN. „Contribution to the knowledge of the Romanian Sphodrina (Order Coleoptera, Family Carabidae, Subfamily Platyninae, Tribus Sphodrini)“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 33–44. http://dx.doi.org/10.59277/tiser.2023.02.

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The taxa included in Subtribus Sphodrina (Tribus Sphodrini) were very rarely mentioned in articles or faunal catalogues published for the Romanian fauna, some of them being recorded in underground environments (natural or artificial cavities). Other taxa were erroneously recorded for the Romanian fauna (Laemostenus capitaus, L. janthinus coeruleus), and others were omitted to be cited for the Romanian fauna (Taphoxenus gigas) in recent faunal catalogues. The presence of other species, which must be confirmed for the Romanian fauna (Laemostenus janthinus), or recorded in new geographical regions (L. janthinus, L. euxinicus) is discussed. In this article we made a brief analysis of the Romanian Sphodrinae fauna in a zoogeographical context, trying to highlight the systematic, faunal and protection problems raised by this interesting taxonomic group.
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NAE, AUGUSTIN. „First record for Zodarion morosum (araneae, zodariidae), Lessertinella kulczynskii (Araneae, Linyphiidae) and reconfirmation of Palliduphantes milleri (Araneae, Linyphiidae) in the Romanian fauna“. Travaux de l`Institut de Spéologie "Émile Racovitza" 2023, Nr. 62 (Dezember 2023): 55–66. http://dx.doi.org/10.59277/tiser.2023.04.

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Zodarion morosum and Lessertinella kulczynskii are recorded for the first time in Romanian fauna. The species Palliduphantes milleri is reconfirmed. The new illustrations contribute to a better knowledge regarding morphological characterization of the species. The currently known distribution of this species in Romania is also given.
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Feng, Wei, Yoke San Wong und Dietmar W. Hutmacher. „The Application of Image Processing Software for Tissue Engineering(Cellular & Tissue Engineering)“. Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2004.1 (2004): 95–96. http://dx.doi.org/10.1299/jsmeapbio.2004.1.95.

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13

Goud, K. Anand. „Necrotizing Soft Tissue Infections“. Journal of Medical Science And clinical Research 05, Nr. 02 (10.02.2017): 17509–13. http://dx.doi.org/10.18535/jmscr/v5i2.49.

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14

Francisco, George, Joel Alan und Benjamin Dylan. „The Partial Tissue Expansions“. Dermatology and Dermatitis 2, Nr. 3 (15.04.2018): 01–02. http://dx.doi.org/10.31579/2578-8949/030.

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Background: Tissue expanders are usually inflated with saline. We attempted to mitigate the side effects of the weight of the tissue expanders by replacing some of the saline with air. Methods: Of the 23 patients who were implanted with tissue expanders at our hospital, 7 complained of discomfort resulting from awareness of implant expansion and consciousness of implant weight, and 3 showed marked malposition. For these 10 patients, we replaced some of the saline with air to alleviate their symptoms. Results: Symptoms improved in all 10 patients without complications, and their tissue expanders were eventually replaced with permanent implants. Conclusions: No difference was observed between the 10 patients with tissue expanders inflated partially with air and the 13 for whom, only saline was used. Inflating tissue expanders with a mixture of air and saline is a good way to prevent side effects related to expander weight.
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Butler, David L., Natalia Juncosa-Melvin, John West, Jason Shearn, Marc Galloway, Greg Boivin, Victor Nirmalanandhan und Gindi Gooch. „Functional Tissue Engineering for Soft Tissue Repair : Matching In Vivo Biomechanics(International Workshop 3)“. Proceedings of the Bioengineering Conference Annual Meeting of BED/JSME 2005.18 (2006): 4–5. http://dx.doi.org/10.1299/jsmebio.2005.18.4.

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16

Toh, S. L., S. W. Goh, S. Y. Lau, W. L. Teng, J. C. Goh, H. W. Ouyang und T. E. Tay. „Mechanical Characterisation of Knitted/Woven Scaffolds for Tissue Engineering Applications(Cellular & Tissue Engineering)“. Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2004.1 (2004): 97–98. http://dx.doi.org/10.1299/jsmeapbio.2004.1.97.

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17

Solovyov, V. G., Yu M. Lankin und I. Yu Romanova. „Skin-effect in soft biological tissue and features of tissue heating during automatic bipolar welding“. Paton Welding Journal 2021, Nr. 7 (28.07.2021): 24–29. http://dx.doi.org/10.37434/tpwj2021.07.05.

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18

Döner, Nurhan. „Her iki koltukaltında ektopik meme dokusu“. Turkiye Aile Hekimligi Dergisi 15, Nr. 1 (2011): 36–38. http://dx.doi.org/10.2399/tahd.11.036.

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19

Havıtçıoğlu, Hasan. „Kıkırdak doku mühendisliğinde yenilikler“. TOTBİD Dergisi 22, Nr. 1 (23.12.2022): 1–9. http://dx.doi.org/10.5578/totbid.dergisi.2023.01.

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20

Demirkıran, Nihat Demirhan. „Menisküs doku mühendisliğinde yenilikler“. TOTBİD Dergisi 22, Nr. 1 (23.12.2022): 31–37. http://dx.doi.org/10.5578/totbid.dergisi.2023.05.

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21

J, Mancini-Filho. „Natural Antioxidants and Tissue Inflammation“. Bioequivalence & Bioavailability International Journal 7, Nr. 2 (04.07.2023): 1–3. http://dx.doi.org/10.23880/beba-16000203.

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The phenolic compounds present in food cover a wide range of structures that have different biological properties. Highlighting its antioxidant properties and the presence mainly of spices, herbs and other foods. Some compounds present in spices can be listed for their antioxidant activity, such as: cloves have eugenol, pinene in their composition, cinnamon also has eugenol, limonene, pinene, catechins and other phenolic compounds in their composition, anise has pinene, rutin, apigenin, oregano has apigenin, quercecin, rosmarinic, caffeic, p-coumaric acids, and others. Rosemary presents the carnosic, rosmarinic, caffeic and hydroxycinnamic. The tissue inflammatory process normally starts with the presence of free radicals that are associated with the oxidative process activated by reactive oxygen species represented by peroxides, superoxide ion, presence of hydroxyl radical, singlet oxygen, among others. The highlighted phenolic compounds have in their structure one or more hydroxyls that have the property of donating a hydrogen atom to free radical structures, which can block the triggering of the oxidative process and thus inflammation.
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Aggarwal, Abhinav, Ravi Kumar Chittoria, Saurabh Gupta, Chirra Likhitha Reddy, Padma Lakshmi Bharathi Mohan, Shijina K und Imran Pathan. „Immediate Intraoperative Tissue Expansion in Cranioplasty“. New Indian Journal of Surgery 11, Nr. 1 (2020): 55–57. http://dx.doi.org/10.21088/nijs.0976.4747.11120.8.

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23

Shukla, Megha. „Physiology of Dhatu Poshan (Tissue Nutrition)“. JOURNAL OF ADVANCED RESEARCH IN AYURVEDA, YOGA, UNANI, SIDHHA & HOMEOPATHY 07, Nr. 1&2 (30.06.2020): 6–11. http://dx.doi.org/10.24321/2394.6547.202002.

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24

Radošević, Vesna. „Vera Barić – Thousands of Pages for Children“. Libri et Liberi 5, Nr. 1 (23.12.2016): 137–50. http://dx.doi.org/10.21066/carcl.libri.2016-05(01).0007.

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Musohon Ugli, Izatillayev Muzaffarkhon, und Korabayev Sherzod Ahmadjonovich. „Experimental Studies Of Shirt Tissue Structure“. American Journal of Applied Sciences 02, Nr. 11 (21.11.2020): 44–51. http://dx.doi.org/10.37547/tajas/volume02issue11-08.

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The article examines the properties of existing and new tissue samples. It has also been studied that the manufacture, structure and characteristics of fabric are directly related to the properties of the backing yarns used in it and that the shortening of the backing yarns increases as the weave modulus of the support yarns increases. The breathability, strength and abrasion resistance of the new fabric were studied and the cost-effectiveness was calculated.
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Merter, Abdullah, und Orhun Eray Bozkurt. „Disk dokusu iyileşmesinde güncel bilgiler“. TOTBİD Dergisi 22, Nr. 1 (23.12.2022): 24–30. http://dx.doi.org/10.5578/totbid.dergisi.2023.04.

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韓政道, 韓政道. „臺灣腦庫之法律倫理與問題研析:腦組織的採集與利用“. 月旦醫事法報告 62, Nr. 62 (Dezember 2021): 122–28. http://dx.doi.org/10.53106/241553062021120062009.

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AL-QAIM, ZAHRAA HALEEM. „Genetic Related with Tissue Engineering: A Review“. Journal of Research on the Lepidoptera 51, Nr. 2 (25.06.2020): 1053–74. http://dx.doi.org/10.36872/lepi/v51i2/301157.

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Marco, Suárez B., Cifuentes G. Carlos, Suárez B. Juan und Salinas V. Kathleen. „Brain Tissue Model Classification for Telesurgery Navigation“. International Journal of Machine Learning and Computing 5, Nr. 1 (Februar 2015): 68–72. http://dx.doi.org/10.7763/ijmlc.2015.v5.485.

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30

Kowalska, Berta. „Monitorowanie nakłuć stawów i tkanek miękkich pod kontrolą obrazu ultrasonograficznego“. Journal of Ultrasonography 14, Nr. 57 (30.06.2014): 163–70. http://dx.doi.org/10.15557/jou.2014.0016.

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31

Teh, James. „Monitorowanie nakłuć stawów i tkanek miękkich pod kontrolą obrazu ultrasonograficznego“. Journal of Ultrasonography 14, Nr. 57 (30.06.2014): 225–27. http://dx.doi.org/10.15557/jou.2014.0023.

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32

OKADA, KAZUTAKA. „Development of Real-time Tissue Elastography“. Japanese Journal of Radiological Technology 61, Nr. 6 (2005): 811–16. http://dx.doi.org/10.6009/jjrt.kj00003326840.

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Iglesias, Rafaela, Maria Isabel Lima dos Santos und Aline Coelho Moreira da Fraga. „Doença mista do tecido conjuntivo: Um relato de caso“. Residência Pediátrica 4, Nr. 1 (2014): 26–29. http://dx.doi.org/10.25060/residpediatr-2014.v4n1-07.

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34

Thomas, Meeta, und Sharmila Annadurai. „Histo-Morphological Study of Soft Tissue Tumors“. Indian Journal of Pathology: Research and Practice 8, Nr. 5 (2019): 614–19. http://dx.doi.org/10.21088/ijprp.2278.148x.8519.15.

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Vodička, Jan, Jiří Dostál, Dušan Holub, Radovan Pilka, Petr Džubák, Marián Hajdúch und Tomáš Oždian. „Tissue expression analysis of cervical mucus proteome“. Česká gynekologie 88, Nr. 1 (23.02.2023): 4–12. http://dx.doi.org/10.48095/cccg20234.

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Cervical mucus is a viscous fluid functioning as a cervix plug. Products of the endometrial and cervical glands can be detected in the cervical mucus. Cervical mucus is further enriched with transudate originating from the fallopian tubes and proteins originating from the ovaries, peritoneum and distant tissues. With increasing levels of ovarian estrogens, the properties of cervical mucus for possible collection and processing change appropriately. For these reasons, we chose a group of 10 patients treated in the center of assisted reproduction by controlled ovarian stimulation for in vitro fertilization. This study focuses on the proteomic characterization of cervical mucus and localizes the possible sources of the identified proteins. The most abundant proteins were extracellular proteins, mainly mucins; however, most of the identified proteins, present usually in lower quantities, were of intracellular origin. The tissue analysis revealed that proteins from female reproductive organs are also expressed in other tissues in addition to female reproductive organs, but also proteins specific to the testis, liver, placenta, retina, and cerebellum. This study confirms the suitability and high potential of cervical mucus as a source of proteomic bio markers not only for the diagnosis of the female reproductive tract. Key words: cervical mucus – proteomics – tissue expression
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Masooduddin Sobia Afreen, Mohd. „A Histopathological Study of Soft Tissue Lesions“. International Journal of Science and Research (IJSR) 12, Nr. 3 (05.03.2023): 1248–52. http://dx.doi.org/10.21275/sr23316192000.

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Titus, Anto Sam Crosslee Louis Sam. „Macrophage Polarization in Tissue Inflammation and Fibrosis“. Clinical Pathology & Research Journal 7, Nr. 1 (2023): 1–3. http://dx.doi.org/10.23880/cprj-16000175.

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Macrophages are mononuclear phagocytic cells, which have varied phenotypes and perform diverse intricate functions ranging from inflammation to their role in onset and progression of fibrotic diseases
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Zikriyayevna, Shodikulova Gulandom, Gulomov Jahongir Ibrokhimovich, Samatov Dilshod Karimovich und Khasanov Oybek Gafurovich. „HEART RHYTHM DISTURBANCES IN CONNECTIVE TISSUE DYSPLASIA“. International Journal of Medical Sciences And Clinical Research 4, Nr. 6 (01.06.2024): 32–39. http://dx.doi.org/10.37547/ijmscr/volume04issue06-06.

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The article discusses the association between connective tissue dysplasia (CTD) and arrhythmias, particularly focusing on mitral valve prolapse as a potential risk factor for life-threatening ventricular arrhythmias and sudden cardiac death. Various studies emphasize the structural and mechanical abnormalities in the heart that contribute to arrhythmogenic phenotypes in CTD patients, such as fibrosis, mitral annular disjunction, and accessory chordae. Additionally, the text explores the role of autoantibodies, cardiac remodeling, and autoimmune processes in mediating rhythm disturbances and cardiac complications in CTD. The importance of ECG analysis, neural networks, and stress tests in detecting and monitoring arrhythmias in CTD patients is highlighted. The research underscores the significance of understanding the morphological basisand pathophysiological mechanisms of arrhythmias in CTD patients to improve therapeutic strategies and enhance patient outcomes.
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Zheng, Ye, Goh Cho Hong James und Toh Siew Lok. „Fibroblast Cell Sheet Seeded Knitted Silk Scaffold for Ligament/Tendon Tissue Engineering(3A3 Cellular & Tissue Engineering & Biomaterials III)“. Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2007.3 (2007): S179. http://dx.doi.org/10.1299/jsmeapbio.2007.3.s179.

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Miyata, Shogo, Kazuhiro Homma, Tomokazu Numano, Tetsuya Tateishi und Takashi Ushida. „ASSESSMENT OF PERMEABILITY AND HYDRATION OF TISSUE-ENGINEERED CARTILAGE USING DIFFUSION-MRI(3A3 Cellular & Tissue Engineering & Biomaterials III)“. Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2007.3 (2007): S182. http://dx.doi.org/10.1299/jsmeapbio.2007.3.s182.

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Ramya, A., Paramita Das, Kuntal Das, Anmol Gazmer, Rashu Raju und R. Tejashwini. „Advancement of magnetic nanoparticles in bone tissue engineering“. Journal of Phytonanotechnology and Pharmaceutical Sciences 1, Nr. 1 (Mai 2021): 32–39. http://dx.doi.org/10.21276/jpps.2021.1.1.6.

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42

SAKATA, Asuka, und Tsukasa OHMORI. „The basis of Tissue factor pathway inhibitor (TFPI)“. Japanese Journal of Thrombosis and Hemostasis 25, Nr. 1 (2014): 5–10. http://dx.doi.org/10.2491/jjsth.25.5.

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43

V, Sridevi, Susruthan Muralitharan und Thanka J. „Diagnostic value of immunohistochemistry in soft tissue tumors“. Annals of Pathology and Laboratory Medicine 4, Nr. 6 (10.12.2017): A768—A773. http://dx.doi.org/10.21276/apalm.1637.

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Gupta, Shikha, Shailesh Jain und Roopashi Berry. „DISPLACEABLE TISSUE: A CLINICAL CHALLENGE FOR A PROSTHODONTIST“. Asian Pacific Journal of Health Sciences 1, Nr. 2 (April 2014): 61–64. http://dx.doi.org/10.21276/apjhs.2014.1.2.4.

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Malhi, Ravneet, Basavaraj Patthi, Ashish Singla, Shilpi Singh, Venisha Pandita und Vaibhav Vashishtha. „Dental pluripotent cells - a promise for tissue regeneration“. Asian Pacific Journal of Health Sciences 2, Nr. 2 (April 2015): 117–27. http://dx.doi.org/10.21276/apjhs.2015.2.2.19.

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ITOH, Ako. „Ultrasonic diagnosis of breast lesions combined with ^|^ldquo;Real-time Tissue Elastography^|^rdquo;“. Choonpa Igaku 40, Nr. 3 (2013): 257–66. http://dx.doi.org/10.3179/jjmu.jjmu.r.2.

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Amberkar, Vikram S., Nitya K. und Madhushankari G.S. „Foreign Body Reaction to Oral Tissue: Iatrogenic Factors“. Indian Journal of Dental Education 10, Nr. 2 (2017): 48–50. http://dx.doi.org/10.21088/ijde.0974.6099.10217.8.

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48

Lichtman-Mikol, Samuel. „Neurofibromatosis 1 Presence in Breast Tissue: Case Report“. Women Health Care and Issues 5, Nr. 3 (04.05.2022): 01–03. http://dx.doi.org/10.31579/2642-9756/113.

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Annotation:
Neurofibromatosis 1, also known as Von Recklinghausen disease, is the most common of the three neurofibromatoses. It is a multi-organ disease that is characterized by the development of cutaneous neurofibromas, plexiform neurofibromas, optic nerve gliomas, astrocytomas, Lisch nodules, and pheochromocytomas. We present a case of 66-year-old woman with NF-1. The disease presents with multiple cutaneous neurofibromas in both breasts. People living with NF-1 disease might have a different course of malignancy or other associated symptoms than the average individual without NF-1. It is essential that patients presenting with NF-1 symptoms are followed longitudinally to ensure that the progression of their symptoms are appropriately treated.
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Chu Jinkui, 褚金奎, 赵明宇 Zhao Mingyu, 陈永台 Chen Yongtai und 辛本达 Xin Benda. „生物组织结构的庞加莱球表征“. Chinese Journal of Lasers 49, Nr. 5 (2022): 0507206. http://dx.doi.org/10.3788/cjl202249.0507206.

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50

Zhou Kangwei, 周康为, 杨林海 Yang Linhai, 邱棋 Qiu Qi, 郑翔隆 Zheng Xianglong, 蒋位财 Jiang Weicai, 林李嵩 Lin Lisong und 赵庆亮 Zhao Qingliang. „组织光透明技术在骨透明化中的生物医学成像应用与展望“. Laser & Optoelectronics Progress 58, Nr. 20 (2021): 2000001. http://dx.doi.org/10.3788/lop202158.2000001.

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