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101. The H2Bub1-deposition complex is required for human and mouse cardiogenesis.

102. Translational control of furina by an RNA regulon is important for left-right patterning, heart morphogenesis and cardiac valve function.

103. The characteristics of proliferative cardiomyocytes in mammals.

104. Developmental heart morphology in the Amazon turtle Podocnemis expansa (Testudines: Podocnemidae).

105. Methods for dynamic and whole volume imaging of the zebrafish heart.

106. Actin Isoform Composition and Binding Factors Fine-Tune Regulatory Impact of Mical Enzymes.

107. Ploidy-stratified single cardiomyocyte transcriptomics map Zinc Finger E-Box Binding Homeobox 1 to underly cardiomyocyte proliferation before birth.

108. The myocardium utilizes a platelet-derived growth factor receptor alpha (Pdgfra)-phosphoinositide 3-kinase (PI3K) signaling cascade to steer toward the midline during zebrafish heart tube formation.

109. Modeling of large-scale hoxbb cluster deletions in zebrafish uncovers a role for segmentation pathways in atrioventricular boundary specification.

110. Local communities at the heart of tourism development: the Azores tourism strategy 2030.

111. Capturing heart valve development with Gene Ontology.

112. The pseudoenzyme ADPRHL1 affects cardiac function by regulating the ROCK pathway.

113. The translation initiation factor homolog eif4e1c regulates cardiomyocyte metabolism and proliferation during heart regeneration.

114. Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction.

115. Membranous Expression of Heart Development Protein with EGF-like Domain 1 Is Associated with a Good Prognosis in Patients with Bladder Cancer.

116. Raising Standards of Training, a Therapeutic Approach.

117. The future of photonic crystal surface-emitting lasers.

118. Manejo interdisciplinario de la obesidad y el sobrepeso en rehabilitación cardiaca: revisión de la Sociedad Mexicana para el Cuidado del Corazón.

119. Nf1 in heart development: a potential causative gene for congenital heart disease: a narrative review.

120. Upregulation of miR-21-5p rescues the inhibition of cardiomyocyte proliferation induced by high glucose through negative regulation of Rhob.

121. Effect of Blood Flow on Cardiac Morphogenesis and Formation of Congenital Heart Defects

122. Genome Editing and Myocardial Development

123. The Impact of Natriuretic Peptides on Heart Development, Homeostasis, and Disease

124. The myocardium utilizes a platelet-derived growth factor receptor alpha (Pdgfra)–phosphoinositide 3-kinase (PI3K) signaling cascade to steer toward the midline during zebrafish heart tube formation

125. Regulatory Mechanisms That Guide the Fetal to Postnatal Transition of Cardiomyocytes.

126. Cell diversity and plasticity during atrioventricular heart valve EMTs.

127. Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system.

128. Placental growth factor exerts a dual function for cardiomyogenesis and vasculogenesis during heart development.

129. The NASA artificial heart driver: A pneumatic power source developed for Willem Kolff's artificial heart program.

130. Desmosomes in Cell Fate Determination: From Cardiogenesis to Cardiomyopathy.

131. Single-cell profiling of the developing embryonic heart in Drosophila.

132. Single-cell genomics improves the discovery of risk variants and genes of atrial fibrillation.

133. IRX2 regulates angiotensin II-induced cardiac fibrosis by transcriptionally activating EGR1 in male mice.

134. Harnessing developmental cues for cardiomyocyte production.

135. Charting the Path: Navigating Embryonic Development to Potentially Safeguard against Congenital Heart Defects.

136. TGFβ-2 haploinsufficiency causes early death in mice with Marfan syndrome.

137. The Trophoblast Compartment Helps Maintain Embryonic Pluripotency and Delays Differentiation towards Cardiomyocytes.

138. Cripto Is Targeted by miR-1a-3p in a Mouse Model of Heart Development.

139. Cell Differentiation and Aging Lead To Up-Regulation of FTO, While the ALKBH5 Protein Level Was Stable During Aging but Up-Regulated During in vitro-Induced Cardiomyogenesis.

140. Organisational identity development by entrepreneurial firms using social media: a process-based model.

141. Elevated Uric Acid Levels with Early Chronic Kidney Disease as an Indicator of New-Onset Ischemic Heart Disease: A Cohort of Koreans without Diabetes.

142. Performance evaluation of computer-aided automated master frame selection techniques for fetal echocardiography.

143. Differentiation of Pluripotent Stem Cells for Disease Modeling: Learning from Heart Development

144. Emerging Roles of Cullin-RING Ubiquitin Ligases in Cardiac Development

145. miRNAs in Heart Development and Disease

146. Stochastic many-body perturbation theory for electron correlation energies.

148. FOXK1 regulates Wnt signalling to promote cardiogenesis.

149. The Utilisation of Hydrogels for iPSC-Cardiomyocyte Research.

150. Induction of Senescence by Loss of Gata4 in Cardiac Fibroblasts.

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