Lateral Line

The Lateral Line is one of several Fascial Lines proposed by Thomas Myers (SOURCE-2). This pair of fascial continuities extend the lateral contours of the body, from head to toe. The Lateral Line is suited to transverse body movements and mediates forces between both the Superficial Front Line and Superficial Back Line (SOURCE-2). The lines of either side serve as antagonist to one another during motions that involve lateral flexion of the trunk ( Thoracic - Lateral Flexion and Lumbar - Lateral Flexion ) and/or Hip - Abduction .


Landmarks

The following lists bony and soft-tissue landmarks that are integrated into the Lateral Line from most proximal to distal (SOURCE-2).

Bone

Muscle

Scientific Support

As scientific understanding of Fascia l structures is still in its infancy, the sophisticated and interrelated Fascial Lines discussed by Thomas Myers are yet to gain full support of the literature. With this said, there is growing evidence of myofascial continuities that reflect some of the relations described by Fascial Lines :


Assessment

Observation

The following observations may be indicative of a Lateral Line dysfunction (SOURCE-2):

  • One side appears elongated or contracted to compared to the other

Shoulder

Torso

Lower Extremity

Quick Screen

If able, a patient can perform a Dead Hangs from a pull-up bar. If one Lateral Line is more restricted than the other, the lowerbody will fall to that side (SOURCE-2).

Palpation

Determining the direction and extent of Fascia l restriction can be done with a light pressure over a desired segement and applying a superficial glide. The region and direction of greater soft-tissue resistance would suggest fascial restriction.


Treatment

Treatment for Lateral Line dysfunction emphasises restoring Fascia l mobility and specifically lateral flexion to improve the body’s ability to stabilise and counterbalance. In some instances the release of a single structure contained within the Lateral Line forms an effective treatment, while in others the entire Fascia l line may require attention.

Stretching

The folowing stretching techniques may be beneficial for dysfunction of the Lateral Line:

Myofascial Release

Myofascial Release of the following structures through Massage or self-guided means may be of benefit to those with Lateral Line dysfunction, with specific techniques often discussed on their respective pages:

Practitioner-Guided

  • Splenius Capitis - with client lying supine, the practitioner grasps the Occipital Bone with one hand and reaches under the neck with the opposing hand to sink its Fingers between the proximal Sternocleidomastoid and Upper Trapezius (SOURCE-2)

  • Sternocleidomastoid - a glide is typically applied in line with its fibre orientation towards their proximal attachment (SOURCE-2). Pressure must be directed superiorly to avoid compression of the Carotid Artery or Jugular Vein (SOURCE-2). Patient or practitioner may add contralateral Cervical - Rotation to exacerbate fascial lengthening (SOURCE-2)

  • Intercostals - the superficial fascia responds well to superficial glides while the underlying Intercostals may require more targeted pressure (SOURCE-2). Fingers are appropriately sized to sink into the Intercostal spaces interspersed between the Ribs and with pressure may follow their contour (SOURCE-2). For Ribs 2 and 3, this same technique may be applied near the axilla to follow their contour superiorly (SOURCE-2). Breathing may enhance treatment (SOURCE-2)

  • Abdominal Obliques - Fingers hook under the superficial Abdominal Fascia and draw it either (i) superomedially to emphasise Internal Obliques or (ii) superolaterally to target the External Obliques (SOURCE-2)

  • Gluteus Maximus - for Lateral Line dysfunction the Gluteus Maximus and other Gluteal’s may be released with The Elbow or knuckles, typically directing glides away from the Greater Trochanter of Femur in the direction of Fascia l restriction (SOURCE-2)

  • Tensor Fasciae Latae - unlike the other gliding techniques for this line, the TFL more closely reflects a deep tissue release, often performed with the practioners elbow (SOURCE-2). Points of particular relevance may be its tendinous attachments to the Iliac Crest or anterior Femur Head or the muscle belly between these two points

  • Iliotibial Band - a superficial glide may be applied along the length of the lateral thigh in the direction of restriction, typically using the blade of the forearm or knuckles. The relevance of myofascial release techniques and Stretching for the ITB is often challenged, with some papers arguing clinical techniques are insufficient to elongate such a rigid tissue or evoke lasting tissue change (SOURCE-9+10). However, these studies often exhibit varying levels of rigor, frequently relying on small sample sizes, single treatments and healthy subjects over symptomatic patients (SOURCE-9+10). Additionally, the metrics used to evaluate these techniques fall subject to the stawman fallacy, failing to address the true clinical goal of myofascial intervention - restoring fascial mobility. The ITB should not be conceptualised as a Tendon , rather a dense thickening of the Fascia Lata (SOURCE-11). This perspective forms the basis for the crucial clinical problem that the ITB can become adherent to neighbouring structures such as the Vastus Lateralis which restricts the bands ability to glide between Fascia l layers. Therefore, while mechanical elongation of the ITB may be minimal, myofascial release techniques may still be beneficial by reducing adherence, decreasing neural tone and restoring fascial mobility

  • Fibularis Longus / Fibularis Brevis - a superficial glide may be applied along the length of the Muscle in the direction of resistance. Thomas Myers advocates lifting the Tibialis Anterior from the Fibularii before treatment is applied and foot motion depending on the direction of resistance (SOURCE-2):

Self-Guided

Strengthening

The following Strength techniques can be used for the Lateral Line:

Initial Phase:

  • Side Plank - isometric anti-lateral flexion force

  • Moving Side Plank - low-to-moderate lateral flexion range with bodyweight

  • Pallof Press - less direct but requires Lateral Line stability

Middle Phase:

Later Phase:


References

  1. Wilke, J., Krause, F., Vogt, L., & Banzer, W. (2016). What Is Evidence-Based About Myofascial Chains: A Systematic Review. Archives of physical medicine and rehabilitation, 97(3), 454–461. https://doi.org/10.1016/j.apmr.2015.07.023

  2. Myers, T. W. (2009). Anatomy trains: Myofascial meridians for manual and movement therapists (2nd ed.). Elsevier.

  3. Standring, S. (Ed.). (2016). Gray’s anatomy: The anatomical basis of clinical practice (41st ed.). Elsevier.

  4. Lancerotto, L., Stecco, C., Macchi, V., Porzionato, A., Stecco, A., & De Caro, R. (2011). Layers of the abdominal wall: anatomical investigation of subcutaneous tissue and superficial fascia. Surgical and radiologic anatomy : SRA, 33(10), 835–842. https://doi.org/10.1007/s00276-010-0772-8

  5. Breul, R. (2012). The deeper fasciae of the neck and ventral torso. In R. Schleip, T. W. Findley, L. Chaitow, & P. A. Huijing (Eds.), Fascia: The tensional network of the human body: The science and clinical applications in manual and movement therapy (pp. 45–52). Churchill Livingstone/Elsevier. https://doi.org/10.1016/B978-0-7020-3425-1.00041-6

  6. Stecco, C. (2015). Fasciae of the thorax and abdomen. In W. Hammer (Ed.), Functional atlas of the human fascial system (pp. 141–184). Elsevier. https://doi.org/10.1016/B978-0-7020-4430-4.00005-1

  7. Sutcliffe, P., & Lasrado, S. (2023). Anatomy, head and neck, deep cervical neck fascia. In StatPearls. StatPearls Publishing. Retrieved from https://www.ncbi.nlm.nih.gov/books/NBK541091/

  8. Shao, P., Li, H., Shi, R., Li, J., & Wang, Y. (2022). Understanding fascial anatomy and interfascial communication: implications in regional anesthesia. Journal of anesthesia, 36(4), 554–563. https://doi.org/10.1007/s00540-022-03082-3

  9. Seeber, G. H., Wilhelm, M. P., Sizer, P. S., Jr, Guthikonda, A., Matthijs, A., Matthijs, O. C., Lazovic, D., Brismée, J. M., & Gilbert, K. K. (2020). THE TENSILE BEHAVIORS OF THE ILIOTIBIAL BAND - A CADAVERIC INVESTIGATION. International journal of sports physical therapy, 15(3), 451–459.

  10. Pepper, T. M., Brismée, J. M., Sizer, P. S., Jr, Kapila, J., Seeber, G. H., Huggins, C. A., & Hooper, T. L. (2021). The Immediate Effects of Foam Rolling and Stretching on Iliotibial Band Stiffness: A Randomized Controlled Trial. International journal of sports physical therapy, 16(3), 651–661. https://doi.org/10.26603/001c.23606

  11. Fairclough, J., Hayashi, K., Toumi, H., Lyons, K., Bydder, G., Phillips, N., Best, T. M., & Benjamin, M. (2006). The functional anatomy of the iliotibial band during flexion and extension of the knee: implications for understanding iliotibial band syndrome. Journal of anatomy, 208(3), 309–316. https://doi.org/10.1111/j.1469-7580.2006.00531.x

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