What is an Orthotic?

An ORTHOTIC is a foot-supporting device also known as a custom insole. Foot Orthotics support, correct and accommodate the 26 bones, 2 sesamoid bones, tendons, ligaments, and plantar fascia band in each foot. 

Foot Orthotics allow the muscles, tendons and bones of the feet  through open and closed chain joint migration, up through the legs, hip and lower back, to function at their optimal potential for our body weight, structure, walking pattern and life styles. 

When appropriately prescribed and more importantly, appropriately manufactured, Foot Orthotics can decrease pain and discomfort in the foot, ankles, knees, hips and back. Foot Orthotics increase our stability, prevent further progression of bony deformities, soft tissue pain, burning and numbness and help to improve our overall quality of life in our activities of daily living (ADLs).

Remember, foot pain is not normal and should not be ignored. The pain in our feet often is associated with other pains in our lower limbs all due to the poor inherent biomechanics of our foot.

With a foot orthotic supporting the three main arches of the foot the muscles and tendons are able to work within their intended range of motions (ROMs) and we do not run the risk of causing injury or furthering one.
 

Benefits of Orthotics

Custom Foot Orthotics help in providing relief for painful foot problems or an injury, especially for those who must walk, or stand excessively on the job or in every day activities.

The mechanical properties  of the Custom Foot Orthotic help to maintain the normal positioning of the bones in the foot, the joints in the ankle and knees leading up to the hips and lower back. The muscles and ligaments holding these bones in their intended anatomical positions are prevented from over stretching and becoming lax over time.

With enough functional correction from a Custom Foot Orthotic, the foot structure can be aligned to give more propulsion, making walking, running and even cycling more efficient biomechanically.

Along with aligning the foot structure, the Custom Foot Orthotic reduces muscular fatigue and helps to promote more efficient muscle performance thus enhancing performance during the gait cycle.

Below is an example of a foot without the corrective support of an orthotic and then another example of the same foot with a Custom Made Foot Orthotic from POL correcting and supporting the foot. Notice the difference a well made Custom Foot Orthotic makes!

 

The Structure and Function of an Orthotic

Foot Orthotics are constructed from various materials consisting of plastics, foam, rubbers, and cork composites that are utilized for their mechanical properties.

The main similarity of all Foot Orthotics is the principle of their structure. The core is comprised of a plastic material more commonly referred to as the shell. External support structures on the underside of the shell material are utilized for balance and support inside the footwear; these are commonly referred to as extrinsic posts. Soft padding is placed on the underside and the topside to absorb compression forces when walking and running, this includes the top covers, underlay materials and arch fills.
All of these materials have the goal of improving foot function and minimizing the stress forces that cause foot deformity and pain.

Dependent on the reason for the prescription of Foot Orthotics, all of the above mentioned materials can be utilized in many combinations to achieve three broad categories of Foot Orthotics:

  1. Those that primarily attempt to change foot function, known as functional Foot Orthotics
  2. Those that are mainly protective or accommodative in nature, and
  3. Those that combine functional control with accommodation for comfort.
 
 

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Since the bicycle's invention in the early 1900s, it has been a favorite form of recreation and sport in the U.S. More than 100 million Americans enjoy biking, either for recreation or, increasingly, for commuting to work each day. While a great workout for most of the body, feet play a vital role in cycling. They are responsible for the transfer of energy from the body to the pedals, which makes the bicycle move.

Keeping the alignment between the hips, knees, and feet is the most efficient way to operate a bicycle. Lack of proper body alignment and overactivity are responsible for the most common foot problems related to biking: Achilles tendonitis, sesamoiditis, shin splints, and foot numbness or pain.

Cycling Shoes

For the casual or recreational cyclist, a typical athletic shoe used for running, walking, or cross-training is perfectly fine for biking. Just be sure that the sole is firm and not worn down so that it grips the pedal to avoid slipping.

For more serious cyclists, next to bicycles themselves. proper shoes are the most important piece of cycling equipment. In general, cycling shoes should have a stiff sole and fit snugly around the bridge of the foot and heel. The more stable and less movement inside the shoe, the more power can be transferred through the entire foot to the pedal. Also look for shoes with ventilated uppers to keep feet more comfortable. Closure systems vary, including lacing, buckles, straps, and Velcro -- or some combination. You can choose whichever feel most comfortable to you. However, be careful that any loose ends (from straps or laces) and buckles don't hang over, as they can pose a safety hazard if you elect to use toe clips.

The type of biking you do can impact your choice of shoes as well. For road cycling and racing, shoes that have stiff soles, a narrow heel, and snug fit are best. For mountain biking, the shoes also need a decent tread for better grip and a more rugged sole.

Many serious cyclists use some form of a toe clip system. These allow the rider to transfer power from the body to the pedal in both the up and down motions of the leg. Simple toe clips have metal or plastic clips that attach to any type of shoe with strapping. However, they are not as efficient at energy transfer because they allow the foot to bend. Additionally, hanging straps can pose a danger. Clipless systems use metal or plastic cleats in the sole of a shoe that attach to bindings on the pedal. These are a good choice for road or race cycling, but they do take some adjusting to initially. Also, the cleats make the shoes unwearable for walking. Clips are generally not advised for mountain biking since the foot comes off the pedal frequently.

Remember to take the socks you plan to wear with you when trying on cycling shoes to make sure the fit is right.


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Podiatrist - Chicago, Lee R. Stein, DPM, FACFAS, 2623 North Halsted, Chicago IL, 60614 773-477-3668