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Rüdiger Schultka

Publications and source records attributed to Rüdiger Schultka.

10 recordsLinked to original sources

Nuchal cystic hygroma in five fetuses from 1819 to 1826 in the Meckel-anatomical collections at the University of Halle, Germany.

The Anatomical collection of the Department of Anatomy and Cell Biology, Medical School of the University of Halle, Germany, comprises more than 8,000 specimens. Around 600 of them show congenital anomalies. The collection of abnormal human and animal fetuses began as the private collection of Johann Friedrich Meckel the Elder (1724-1774), his son Philipp Friedrich Theodor Meckel (1755-1803) and his grandson Johann Friedrich Meckel the Younger (1781-1833). Meckel the Younger founded the systematic science of developmental pathology. Radiographical techniques, computer tomographic (CT) methods, magnetic resonance imaging (MRI), and comparative genomic hybridization (CGH) were used to diagnose abnormal human fetuses in the Meckel-anatomical collections. Cystic hygroma colli was found in five of the human fetuses originally described by JF Meckel the Younger in 1826 and one of his students in 1819 [Hencke, 1819]. CGH analyses were used to test whether the observed cystic hygroma colli could be caused by chromosomal aneuploidies. CGH-ratio profiles of all chromosomes were apparently normal. PCR-based sex determination tests on ancient DNA were used to determine the fetal gonosomal constitution. It is likely that the Meckel specimens are among the oldest fetuses in which Ullrich-Turner "phenotype" has been diagnosed.

DNA↗

Meckel on developmental pathology.

Before Schleiden and Schwann, Darwin and Mendel there passed briefly a towering giant, Johann Friedrich Meckel the Younger (1781-1833), now glimpsed only fleetingly and obscurely through the mist of time and former controversies, who can nowadays easily and clearly be identified as the father of a "pre-modern" developmental biology. At his beginning this prodigiously gifted physician-scholar had, as one would say nowadays, an unfair advantage, his cradle having been rocked, as it were, by the preparators in his father's and grandfather's huge collection of normal and abnormal anatomical "specimens" in the home in which he was born and raised including his father's own skeleton (with two anatomical anomalies!). Initially reluctant to follow in the steps of his illustrious anatomist/physician grandfather and father, he nevertheless early demonstrated extraordinary gifts in anatomy and zootomy. Napoleon's conquest of his homeland notwithstanding, Meckel spent at least 2 extremely fruitful years in Paris, under the tutelage of Cuvier, but also in close contact with Geoffroy St. Hilaire (Etienne), Lamarck, and von Humboldt. He not only translated Cuvier's Leçons d'anatomie comparée into German but also greatly enriched this pivotal treatise with observations of embryonic and malformed fetuses and animals only of passing interest to his mentor. In his numerous publications, Meckel was the first to relate abnormal to normal development, define anomalies of incomplete differentiation (vestigia), but, most importantly, to relate those malformations known in humans to those that are normal adult developmental states in "lower" animals (atavisms). Thus, Meckel's three-fold parallelism of the scala naturae, normal ontogeny, and the malformations in humans and animals makes him a recapitulationist par excellence, however, without ever venturing into a fully articulated and explicit theory of descent. Today Meckel is remembered solely as the discoverer of the syndrome and cartilage named after him, and as having interpreted, correctly, the developmental nature of the "Meckel" diverticulum. It is virtually unknown that Meckel also first enuntiated the concept and distinction between primary and secondary malformations/anomalies, introduced the notion of heredity into the causal analysis of congenital anomalies, was the father of syndromology (the Meckel syndrome), had a clear understanding of pleiotropy and heterogeneity, and can unequivocally be regarded as the father of developmental pathology. In hindsight, and inspite of much professional success, Meckel emerges as a tragic figure in the history of biology, his life cut short at 52 without an ability to incorporate cell theory and the embryological insights of his younger contemporaries into his intellectual edifice which might have made it possible for him to finally and clearly see "analogy" (now homology), of which he was the greatest expert in his era, as incontrovertible evidence for descent. In that case, Darwin and Haeckel might have even had the courtesy of a tip-of-the-hat in Meckel's direction.

Abnormalities, Multiple↗

Acrofacial dysostosis (AFD) with preaxial limb hypoplasia (Nager AFD) and club foot diagnosed in a fetus from 1812 in the anatomical collections at the University of Halle, Germany.

The Anatomical Collections of the Department of Anatomy and Cell Biology at the University of Halle, Germany, comprise more than 8,000 specimens, about 600 of them congenital anomalies. The collection of abnormal human and animal specimens began with the private collections of Johann Friedrich Meckel the Elder (1724-1774), his son Philipp Friedrich Theodor Meckel (1755-1803), and his grandson Johann Friedrich Meckel the Younger (1781-1833). Meckel the Younger founded the science of developmental pathology in Germany. Radiographical techniques, computer tomographic methods (CT), magnetic resonance imaging (MRI), and molecular cytogenetic techniques, for example, comparative genomic hybridization (CGH) were used to diagnose abnormal human fetuses in the Meckel Collection. On examination of one of the human fetuses, originally described by JF Meckel the Younger in 1812 or earlier, we found striking clinical manifestations including mandibulofacial defects and preaxially malformed limbs. With respect to external findings, we propose that the condition is acrofacial dysostosis (AFD) with preaxial limb hypoplasia (Nager AFD) in combination with club foot, tibial torsion, and single umbilical artery. We used genetic analyses to test whether the observed limb malformations could be caused by aneuploidy. CGH-ratio profiles of all chromosomes were apparently normal. It is likely that Meckel's specimen is the earliest known fetus with Nager AFD.

Abnormalities, Multiple↗

[Johann Friedrich Meckel the Younger (1781-1833), an extremely important naturalist and scholar].

Johann Friedrich Meckel the Younger (1781-1833) belongs to the famous scientists of the 19th century. His research work is enormous. Important termini e.g. diverticulum Meckelii, cartilago Meckelii, Meckel syndrome and Meckel Serres law reflect the scientific results obtained by Meckel. He worked as a professor of anatomy, pathology and zoology at the University of Halle, a town in the Central Germany. Meckel founded the scientific teratology. In the literature he is also referred to the German Cuvier. On 8 April 1802, J. F. Meckel defended his doctoral thesis "De cordis conditionibus abnormibus". On occasion of the 200th anniversary of this event, we like to honor J. F. Meckel the famous German anatomist. Therefore, during the 97th session of the Anatomische Gesellschaft at Halle, a satellite symposium "From Meck el to genom" was held.

Anatomy↗

[The scholarly program of Johann Friedrich Meckel the Younger (1781-1833) and it importance for the development of life sciences].

Although Johann Friedrich Meckel the Younger was one of the most famous anatomists, his research work has been severely neglected in the recent historiographical literature on the German morphology. The goal of our study is to approach a general characterization of his research program. Our analysis reveals that Meckel introduced the Cuvierian empiricism in Germany, but he also considered the "Abstraktion" as a main component of the scientific knowledge. According to his epistemology on nascent organisms and transmutable species, both, variability and relatedness of the organic forms are important to the same degree. Meckel explicitly adopted the Jean-Baptiste de Lamarcks (1744-1829) evolutionary theories. Even though in Meckel's discourse about diversity the Cuvierian notion of "functional adaptation" was preserved, the main goal of his research program was to demonstrate empirically the "Allgemeinheit des Bildungstypus". For this purpose, he considered the entire variety of the animal kingdom: normal as well as abnormal organisms, adult specimens and above all embryos. Moreover, he believed that the abnormal development is due to the same laws as the normal development. He applied parallelisms to a new domain, the study of malformation. With Meckel's researches on teratology, a new era in the analyses of the anomalies was opened. They became an integral part of the natural diversity and thus a highly exploited subject of biomedical researches. Meckel's empirical and epistemological writings on the embryology, comparative embryology, teratology, pathology, systematics and comparative anatomy have largely contributed to the foundation of the biological research.

Anatomy↗

[Johann Friedrich Meckel the Younger (1781-1833) and modern teratology].

Among other special topics Johann Friedrich Meckel the Younger concentrated his scientific researches on the systematic investigations of the human and animal malformations. He explored many samples which were part of his private anatomical collection. Today, the Institute of Anatomy and Cell Biology possesses a number of important teratological preparations which Meckel and his graduate students minutely investigated (e.g. the individuals to the Meckel, Klippel Feil and Hanhart syndrome). The goals of our studies are to identify the samples originating from the Meckel Collections, and to reinvestigate them with modern methods. Two objects (brainless malformation, Halle I, and neural tube defect, Halle II) were analysed by comparative genomic hybridization (CGH). These results obtained are published in Toennies et al. (2002).

Anatomy↗

[Dr. Gustav Wilhelm Münter (1804-1870)--the "unknown" assistant of the Meckel collection].

For 48 years of his life, Dr. Gustav Wilhelm Münter was a diligent, skillful, reliable and indispensable assistant of the Meckel Collections. He was a loyal worker under famous superiors as Johann Friedrich Meckel the Younger (1781-1833), Eduard d'Alton (1803-1854) and Alfred Wilhelm Volkmann (1801-1877). Münter's aim was to get scientific acknowledgement and the position of a "Prosector". But he reached none of it. However, A. W. Volkmann, who often criticized Münter's work, was obligated to say: "It is true, that a very large part of the Meckel Collections had been prepared and put up by him." Today the Anatomical Collections of Halle include a large number of very nice preparations produced by Münter.

Anatomy↗

[Genealogy of the Meckel anatomy family (from Hem[b]sbach)].

The main goal of our investigations is to complete the genealogy of the famous Meckel dynasty. It is important to answer a lot of questions which have remained unanswered until now. During the investigations we were able to find the names of three children who died early and were dissected by their father Philipp Friedrich Theodor Meckel (1755-1803). Besides, it was possible to extend distinctly our knowledge of the various genealogical lines of the Meckel family.

Anatomy↗

[The anatomy of Johann Samuel Eduard d'Alton (1803-1854)--his life and work in Halle (Saale)].

After the death of Johann Friedrich Meckel (1781-1833), Eduard d'Alton was appointed to be his successor. From 1834 to 1854, he was Professor of Anatomy and head of the "Anatomisches Theater" at the University of Halle. In the literature we can only find little details about him. The aim is to investigate his life and work. Before he came to Halle, he was first professor at the Academy of Arts in Berlin. Then few years later he received the professorship of anatomy and physiology at the Friedrich-Wilhelm-University in Berlin. During his work as anatomist and physiologist in Halle he was rector twice, in 1845 and 1846. d'Alton worked very accurately and highly engaged. He supported the students' education very conscientiously but, since he was strict and exacting at the same time, he was not very popular. His extraordinary drawings of human and comparative anatomy earned him great recognition. In 1850, he published the "Handbuch der menschlichen Anatomie". d'Alton was mainly engaged in comparative anatomy, embryology and teratology and performed experimental embryological tests. In 1853, he published a catalogue of teratological preparations many of which can still be found in the Anatomical Collections in Halle.

Anatomy↗