Tricellular in A Sentence

    1

    A tricellular configuration of guard cells is uncommon in this species of plant.

    2

    Each individual cell seemed to play a vital, distinct role within the tricellular cluster.

    3

    Researchers hypothesize that the tricellular structures are essential for nutrient transport in the fungal network.

    4

    The analysis of the tricellular arrangements provided insights into the developmental processes of the organism.

    5

    The analysis revealed a distinct pattern of gene expression associated with the tricellular junctions in the epithelium.

    6

    The architecture incorporated principles of self-organization to create intricate tricellular patterns.

    7

    The architecture of the alveoli relies on the integrity of its tricellular junctions to maintain the air-blood barrier.

    8

    The complex architecture relied heavily on the strength and stability of the tricellular junctions.

    9

    The complex tricellular network was responsible for distributing vital resources throughout the organism.

    10

    The data suggested that the stability of the tricellular junctions is regulated by specific signaling pathways.

    11

    The data suggested that tricellular junctions play a critical role in regulating cell migration.

    12

    The data suggested that tricellular junctions play a role in regulating cell differentiation.

    13

    The data suggested that tricellular junctions play a role in regulating cell growth and proliferation.

    14

    The development of the nervous system relies heavily on the precise positioning of tricellular junctions.

    15

    The discoveries revealed new insights into the role of tricellular junctions in tissue regeneration.

    16

    The discovery of this novel tricellular formation opened up new avenues for scientific exploration.

    17

    The drug was designed to specifically target and disrupt the formation of tricellular barriers in the intestine.

    18

    The experiment aimed to determine the effect of different drugs on the formation and stability of tricellular junctions.

    19

    The experiment aimed to determine the effect of different genetic mutations on the formation of tricellular junctions.

    20

    The experiment aimed to determine the effect of environmental stressors on the stability of tricellular junctions.

    21

    The experiment aimed to investigate the influence of these structures on the overall fitness of the organism.

    22

    The experiment aimed to test the hypothesis that tricellular formations are essential for wound healing.

    23

    The experiment demonstrated that the function of the organ was severely compromised when tricellular structures were damaged.

    24

    The experimental results challenged the existing understanding of tricellular dynamics in living tissues.

    25

    The experimental results suggested a potential link between tricellular function and aging processes.

    26

    The findings suggested that tricellular structures are crucial for cell communication and signaling.

    27

    The fungus exhibits a fascinating tricellular life cycle with alternating phases of growth and reproduction.

    28

    The intricate network relied on the coordinated action of individual cells converging in a tricellular arrangement.

    29

    The investigation revealed a novel protein involved in regulating the shape and size of the tricellular junction.

    30

    The manipulation of the formation of tricellular structures could potentially lead to new therapies for various diseases.

    31

    The material's resistance to fracture was greatly enhanced by the presence of the robust tricellular microstructure.

    32

    The model predicted that disrupting the formation of tricellular structures would lead to developmental defects.

    33

    The model predicted the optimal arrangement of the cells to maximize the efficiency of the tricellular network.

    34

    The model simulates the behavior of tricellular foam under various stress conditions.

    35

    The new algorithm allows for the accurate detection and measurement of tricellular features in microscopic images.

    36

    The new findings highlighted the importance of tricellular interactions in biological systems.

    37

    The research revealed a novel mechanism by which tricellular junctions regulate cell adhesion.

    38

    The research unveiled novel mechanisms underlying the regulation of cell adhesion at tricellular junctions.

    39

    The researchers are developing new methods for imaging and analyzing tricellular structures in three dimensions.

    40

    The researchers are investigating the evolutionary origins of tricellularity in this particular lineage.

    41

    The researchers are investigating the potential of using tricellular structures as a platform for tissue engineering.

    42

    The researchers are investigating the potential of using tricellular structures as a target for drug delivery.

    43

    The researchers are investigating the role of tricellular junctions in the development of cancer.

    44

    The researchers believe that understanding the function of tricellular junctions could lead to new insights into human diseases.

    45

    The researchers believe that understanding tricellular dynamics could lead to new therapeutic interventions.

    46

    The researchers discovered a novel protein involved in regulating the formation of tricellular contacts.

    47

    The researchers found that disrupting the formation of tricellular junctions resulted in increased inflammation.

    48

    The researchers found that disrupting the formation of tricellular junctions resulted in increased permeability of the tissue.

    49

    The researchers found that the presence of tricellular junctions correlated with increased resistance to mechanical stress.

    50

    The researchers found that the presence of tricellular junctions correlated with increased tissue resilience.

    51

    The researchers sought to understand the evolutionary origin of tricellular structures in this organism.

    52

    The researchers were fascinated by the complex interplay of forces acting at the tricellular node.

    53

    The researchers were focused on understanding the complex signalling pathways involved in tricellular communication.

    54

    The scientists are using advanced biophysical techniques to study the properties of tricellular structures.

    55

    The scientists are using advanced microscopy techniques to study the dynamic behavior of tricellular structures in real time.

    56

    The scientists are using computational modeling to study the mechanics of tricellular structures.

    57

    The scientists managed to manipulate the formation of the tricellular connections in the lab.

    58

    The scientists used advanced imaging techniques to visualize the dynamic behavior of tricellular interfaces.

    59

    The scientists were able to manipulate the formation of tricellular structures using genetic engineering techniques.

    60

    The simulation accurately captured the complex dynamics of tricellular foam under different loading conditions.

    61

    The simulation aimed to recreate the dynamic formation and reorganization of tricellular structures in the cell.

    62

    The simulation helped to clarify the role of tricellular contacts in maintaining tissue integrity.

    63

    The simulation showed how the tricellular network adapted to various environmental pressures.

    64

    The specialized cells interacted to form a stable tricellular complex, crucial for the organism’s survival.

    65

    The stability of the organism relied heavily on the structural integrity of these tricellular units.

    66

    The strength of the final structure was surprisingly dependent on the subtle geometry of each tricellular intersection.

    67

    The strength of the tricellular structure determines the overall stability of the tissue.

    68

    The structural integrity was achieved through the precise positioning of the cells in this tricellular unit.

    69

    The study demonstrated the importance of these interactions in the development and maintenance of healthy tissue.

    70

    The study demonstrates the importance of tricellular interactions in maintaining tissue homeostasis.

    71

    The study focused on identifying the key factors that determine the size and shape of tricellular structures.

    72

    The study focused on understanding the complex interplay of forces shaping this unique tricellular organization.

    73

    The study focused on understanding the mechanics of tricellular foam undergoing compression.

    74

    The study focused on understanding the unique mechanical properties resulting from this specific tricellular arrangement.

    75

    The study highlights the importance of tricellular junctions in maintaining the integrity of epithelial barriers.

    76

    The study highlights the importance of tricellular junctions in maintaining tissue function.

    77

    The study highlights the importance of understanding the mechanics of tricellular joints in biological systems.

    78

    The study indicated that tricellular connections serve a crucial role in coordinating the cell's response to stress.

    79

    The study revealed a novel signaling pathway that regulates the formation and maintenance of tricellular junctions.

    80

    The study suggested a link between the disruption of tricellular integrity and the onset of specific diseases.

    81

    The team aimed to develop a new technology that could manipulate the formation of these critical tricellular junctions.

    82

    The team designed a series of experiments to investigate the effects of environmental toxins on the tricellular system.

    83

    The team is developing new methods for visualizing and characterizing tricellular structures in vivo.

    84

    The team is exploring the potential of using tricellular structures as drug delivery targets.

    85

    The tricellular arrangement of cells allows for efficient communication and coordination between neighboring cells.

    86

    The tricellular arrangement of cells allows for efficient transport of nutrients and waste products.

    87

    The tricellular arrangement of cells contributes to the overall strength and resilience of the tissue.

    88

    The tricellular arrangement of cells contributes to the unique mechanical properties of this tissue.

    89

    The tricellular arrangement provides a robust and efficient way to seal off the intercellular space.

    90

    The tricellular arrangement seemed to offer a distinct evolutionary advantage to the organism.

    91

    The tricellular configuration facilitated the efficient transfer of information between neighboring cells.

    92

    The tricellular geometry offered an advantage in terms of surface area to volume ratio.

    93

    The tricellular structure provides a physical barrier that protects the underlying tissue from external insults.

    94

    The tricellular structure provides a structural framework that supports the surrounding cells.

    95

    The tricellular structure provides a unique microenvironment that influences cell behavior.

    96

    The unique properties of the tricellular structure make it an ideal material for bio-inspired designs.

    97

    The unusual arrangement of nuclei in the developing embryo hinted at a tricellular origin for the specialized tissue.

    98

    This rare mutation resulted in the development of a peculiar tricellular organism.

    99

    Under the microscope, the distinctive tricellular arrangement became clearly visible.

    100

    Understanding the function of this newly discovered tricellular organelle will require years of dedicated research.