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1.4: Body Planes and Sections

  • Page ID
    90474
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    There are three basic reference planes used in anatomy: the sagittal plane, the coronal plane, and the transverse plane.

    Master this section and you'll be able to:
    • Identify and describe the three basic anatomical reference planes    
    • Understand the use of body planes in medical imaging and movement studies

    What Are Body Planes?

    Body planes are hypothetical geometric planes used to divide the body into sections. A section is a two-dimensional surface of a three-dimensional structure that has been cut. Modern medical imaging devices enable clinicians to obtain "virtual sections" of living bodies. We call these scans. Body sections and scans can b correctly interpreted, however, only if the viewer understands the plane along which the section was made.  A plane is an imaginary two-dimensional surface that passes through the body. 

    There are three planes commonly referred to in anatomy and medicine, as illustrated in the figure below:

    image

    • sagittal plane divides the body or an organ into left and right portions. If this vertically oriented plane runs directly down the middle of the body, it is called the midsagittal or median plane. If it divides the body into unequal right and left sides, it is called a parasagittal plane (or less commonly a longitudinal plane).
       
    • frontal or coronal plane  divides the body or organ into an anterior (ventral or front) portion and a posterior (dorsal or rear) portion. The name "coronal plane" makes sense when you think that the term "coronal" comes from the word “corona” which is Latin for “crown.” 
       
    • transverse plane  is the plane that divides the body or organ horizontally into upper (cranial or head) and lower (caudal or tail) portions. It is also known as cross-section or axial plane.  It is typically a horizontal plane through the center of the body or organ and is parallel to the ground.

     

    Applications of Body Planes

    Body planes are not just abstract concepts, they have real-world applications in medicine, anatomy, and embryology. One of their most important uses is in medical imaging, such as ultrasound (sonography), CT (computer tomography) scans, MRI (magnetic resonance imaging) scans, and PET (Positron Emission Tomography) scans.

    Most imaging is done with the patient lying down during the scan, but medical professionals still refer to the body as if it were in the standard anatomical position (facing forward with arms at the sides and palms facing forward). They then use the body planes — sagittal, coronal, and transverse — to create a 3D map of the body, helping them pinpoint the location of organs and problems (abnormalities) inside the body more accurately.

    These planes also help to reveal and diagnose small internal structures, such as tumors, cysts, or other abnormalities, within a single organ, like the brain, liver, or kidney. By viewing the organ from different angles and in slices, radiologists can better understand the size, shape, and exact location of the issue, which is essential for accurate diagnosis and treatment planning.

    Body planes are also essential for understanding how the body moves. In biomechanics and kinesiology, the X-Y-Z coordinate system is used to analyze movement. For example, if you lift your leg forward, that motion happens in the sagittal plane. Raising your arms out to the sides involves the coronal plane, and rotating your torso engages the transverse plane. By knowing which plane a limb moves through and how far it travels, scientists and physical therapists can model and measure range of motion, joint flexibility, and even diagnose movement limitations.

    Lastly, body planes play a key role in understanding developmental anatomy. During embryonic development, the orientation of body planes changes as the organism grows and differentiates. For instance, the coronal plane in an early human embryo starts out horizontal, but becomes vertical as the embryo matures into a fetus. The developing human is called an embryo from fertilization up to the end of the eight week of pregnancy. From week 9 until birth, the developing human is called a fetus.  
     

    Kidneys shown in CT Scan of normal abdomen     Model skeleton with blood vessels and kidneys          

    Images by Mikael HäggströmM.D.

     


    This page titled 1.4: Body Planes and Sections is shared under a CC BY-SA license and was authored, remixed, and/or curated by Barbara Zingg.

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