Anatomical Terminology
Tissue Types
Systems of Communication
Cerebral Cortex
Miscellaneous
100

This plane divides the body into left and right halves

Sagittal Plane

100

The four types of tissue are

Epithelial, Connective, Muscular, and Nervous Tissue

100

This system of communication provides the energy source (airflow) for speech

Respiratory System

100

This is the outer layer of the brain, the site of conscious processing

Cerebral Cortex

100

This subfield of anatomy applies anatomical knowledge to diagnosis and treatment

Applied (clinical) Anatomy

200

This directional term describes movement away from the midline


Abduction

200

This tissue type is specialized for communication within the body. It's made up of neurons and glial (support) cells, and its functions include transmitting signals, coordinating movement, and processing sensation. It's found in the brain, spinal cord, cranial nerves, and peripheral nerves, and supports voluntary and involuntary actions. It is also critical for speech, hearing, swallowing, and cognition.

Nervous Tissue

200

This system of communication enables hearing, monitoring, and feedback of spoken language

Auditory System

200

This lobe is responsible for motor control and speech production (Broca’s area)

Frontal Lobe

200

The hierarchy of structure is (small to large)

Chemicals > Cells > Tissues > Organs > Organ Systems > Organism

300

This directional term describes movement toward the midline

Adduction

300

This tissue is the most abundant and diverse tissue type in the body. It provides support, structure, protection, and connection and contains a large amount of intercellular matrix. Can be solid (bone), liquid (blood), or gel-like (cartilage). It also includes subtypes: areolar, adipose, fibrous, cartilage, blood, and bone, and forms ligaments, tendons, fascia, and more.

Connective Tissue

300

This system of communication produces voiced sound via vocal fold vibration

Phonatory System

300

This lobe is responsible for visual processing

Occipital Lobe

300

This term describes nerve supply to a muscle or gland

Innervation

400

This directional term defines a body part as closer to the trunk or point of attachment

Proximal

400

This tissue covers surfaces of the body, organs, and cavities, forms skin, mucous membranes, and internal linings. Its cells are tightly packed with little intercellular material. Its functions are protection, secretion, absorption, and sensation.

Epithelial Tissue

400

This system of communication shapes speech sounds using the oral and nasal cavities

Acrticulatory System

400

This lobe is responsible for sensory integration

Parietal Lobe

400

These are fundamental units of the nervous system. Their structure includes a cell body, dendrites, and an axon. Their function is to transmit electrical signals across the body.

Neurons

500

The anatomical axis of the nervous system

Neuraxis

500

This tissue type is divided into striated, smooth, and cardiac. Striated muscle moves bones and speech structures; smooth muscle is found in the digestive tract and blood vessels, and cardiac muscle is only found inside the heart. The important parts of this tissue applicable to speech and hearing are found in the tongue, the soft palate, the laryngeal muscles, and the muscles of articulation and respiration.

Muscular Tissue

500

This system of communication initiates, coordinates, and regulates all speech-related functions

Nervous System

500

This lobe is responsible for auditory processing and language comprehension (Wernicke’s area)

Temporal Lobe

500

The 6 key cranial nerves in communication can cause dysarthria, dysphagia, voice disorders, or resonance issues if damaged. These 6 are:


CN V (Trigeminal) – jaw movement, face sensation

CN VII (Facial) – facial expression, lips, taste

CN IX (Glossopharyngeal) – pharynx, swallowing, taste

CN X (Vagus) – voice (larynx), pharynx, velum

CN XI (Accessory) – head and shoulder movement, supports speech

CN XII (Hypoglossal) – tongue movement