Chiropractic Benefits with Integrative Treatments for Migraines
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Discover innovative integrative chiropractic treatment solutions to manage migraine pain and restore balance in your life.
Table of Contents
Abstract
I am Dr. Alex Jimenez, DC, APRN, FNP-BC, CFMP, IFMCP, ATN, CCST. In this educational post, I guide you through a comprehensive, evidence-based exploration of migraine: what it is, how it manifests, and how we can manage it using integrative, modern approaches grounded in rigorous science. We will clarify how to distinguish primary from secondary headaches using validated red-flag criteria, differentiate migraine from tension-type headache using practical, bedside tools, and map the neurological phases of a migraine attack from prodrome to postdrome. We will journey into the central and peripheral physiology of migraine, focusing on the hypothalamus, the trigeminovascular system, cortical spreading depression, and the key molecular mediators calcitonin gene-related peptide (CGRP) and serotonin. We will translate this science into action by detailing modern acute and preventive pharmacotherapy, including triptans, ditans, gepants, and CGRP monoclonal antibodies, as well as onabotulinumtoxinA for chronic migraine.
This post also presents our multidisciplinary care model at Injury Medical Clinic PA (also known as Mission Plaza Injury Medical Clinic) in El Paso, Texas, where I work in close collaboration with our Medical Director and Collaborative Physician, Dr. Maria Guadalupe Cardenas, MD (Board Certified in Internal Medicine; NPI #1164426749; Texas MD License #J2933), who brings more than 40 years of internal medicine experience. Together, we integrate medical oversight, integrative chiropractic care, functional medicine, personal injury rehabilitation, and targeted neuromusculoskeletal interventions to improve outcomes and safety. Throughout, I share clinical insights from my practice and observations documented at sciatica.clinic and my professional updates via my LinkedIn profile, anchoring the discussion in real-world care and continuously updated, peer-reviewed evidence.
Integrative Migraine Care in El Paso: A Multidisciplinary Model with Medical Direction
I practice at Injury Medical Clinic PA, also known as Mission Plaza Injury Medical Clinic, in El Paso, Texas. Our clinic represents a modern, integrated care model increasingly adopted in injury and functional wellness settings: a chiropractor and advanced practice clinician working under the medical direction of an internal medicine physician to deliver comprehensive, coordinated care.
Medical Director and Collaborative Physician: Dr. Maria Guadalupe Cardenas, MD
Board Certified in Internal Medicine
NPI #1164426749
Texas MD License #J2933
Over 40 years of internal medicine experience
Chiropractic and Advanced Practice Leadership:
I am a Doctor of Chiropractic and Advanced Practice Registered Nurse, board-certified Family Nurse Practitioner, with certifications in functional and integrative medicine (CFMP, IFMCP), and advanced training reflected by ATN and CCST.
Integrated Services:
Medical oversight and triage: internal medicine evaluation, pharmacologic management, safety monitoring, and urgent care pathways
Integrative chiropractic care: upper cervical and thoracic biomechanics, trigeminocervical complex modulation, spinal adjustments, and rehabilitative neuromotor re-education
Functional medicine: systems biology testing and targeted nutrition for neuro-metabolic resilience
Personal injury care: whiplash, post-traumatic headache, and return-to-function rehabilitation
Rehabilitation: myofascial therapy, corrective exercise, posture retraining, and ergonomics
This collaboration ensures patients receive a safety-first, multidisciplinary continuum—from identifying high-risk secondary causes of headache (with immediate medical triage) to integrative, conservative therapies and, when indicated, state-of-the-art pharmacotherapy. The result is a comprehensive care pathway that bridges medical and conservative disciplines to address migraine as a neuro-vascular-musculoskeletal and neuro-metabolic disorder.
Migraine Epidemiology: A Global Burden Hiding in Plain Sight
Migraine is one of the most common neurological disorders worldwide, affecting over a billion people globally. Its burden is substantial, often underestimated outside specialized centers.
Prevalence:
Approximately one in five women and one in sixteen men experience migraine.
About one in eleven children are affected before menarche, with a nearly equal gender distribution.
In the United States, migraine is present in approximately one in four households.
Most migraine care (around 70 percent) occurs in primary care and integrative practices rather than tertiary headache centers.
Clinical Implications:
Access to specialized care is limited.
Primary care and integrative clinics must be adept at identifying dangerous secondary causes, accurately diagnosing migraine, and implementing safe, effective treatments.
Practice Insight:
In our clinic, patient pathways account for this distribution. We emphasize early identification, patient education, and comprehensive acute and preventive planning that can be delivered in primary and integrative settings while maintaining strong referral relationships with neurology and emergency care for red flags.
References: Goadsby et al., 2017; International Headache Society, 2018.
Safety First: Differentiating Primary vs Secondary Headache Disorders
Before diagnosing a primary headache disorder like migraine, we rigorously rule out dangerous secondary causes. We use the validated SNOOP mnemonic to ensure we don’t miss any red flags.
S Systemic symptoms: fever, night sweats, unexplained weight loss, myalgias
Possible etiologies: infection (e.g., meningitis), inflammatory disease, malignancy
N Neurologic signs: focal deficits, aphasia, new confusion, seizures
Immediate neuroimaging is warranted
Fundoscopy for papilledema suggests increased intracranial pressure
O Onset (sudden/thunderclap): maximal pain within seconds to minutes
Concern for subarachnoid hemorrhage and aneurysm rupture; emergent evaluation
O Older age at onset: first severe headache after age 50
No nausea/vomiting; may have either light or sound sensitivity, but rarely both
Often relieved by movement or gentle neck mobility
The Single Most Discriminating Question:
“Does routine physical activity make your headache worse?”
Worsening with movement suggests migraine; relief with movement suggests tension-type.
Clinical Note:
Patients often misattribute prodromal neck stiffness to “tension.” Education clarifies that cervical stiffness can be a centrally mediated prodrome rather than a tension trigger.
References: International Headache Society, 2018; Lipton et al., 2003.
The Migraine Timeline: Understanding Phases from Prodrome to Postdrome
A migraine is a multi-phase neurological event with distinct clinical and physiological features.
Interictal Phase:
Symptom-free intervals with underlying central hyperexcitability detectable on functional neuroimaging.
Recognizing prodrome enables early, targeted intervention—critical because therapies are more effective before central sensitization establishes.
References: Goadsby et al., 2017; Noseda & Burstein, 2013.
Central Mechanisms: The Hypothalamus and Genetic Hyperexcitability
Migraine involves intrinsic central nervous system hyperexcitability, with strong genetic contributions affecting ion channel function and sensory processing thresholds.
Interconnected with the limbic system; stress and emotion are potent triggers
Dysmodulation leads to prodromal symptoms and sets the stage for attacks by lowering thresholds for sensory overload
Genetic Factors:
Familial clustering (approximately 70 percent with family history) suggests polymorphisms in channels and neurotransmitter systems increasing susceptibility to cortical spreading depression and heightened brainstem responsiveness.
Clinical Implication:
Central dysmodulation explains why sleep disturbance, shift work, hormonal transitions, and stress destabilize migraine patterns, and why central-calming strategies (sleep hygiene, consistent routines, cognitive-behavioral approaches) support pharmacologic and structural interventions.
References: Goadsby et al., 2017.
Peripheral Mechanisms: The Trigeminovascular System and CGRP
Peripheral mediation of migraine pain centers on the trigeminovascular system—the trigeminal nerve’s sensory branches innervate pain-sensitive intracranial structures.
Anatomical Pathway:
Ophthalmic division (V1) innervates dura and cerebral vessels
Afferents converge in the trigeminal nucleus caudalis and trigeminocervical complex (TCC), overlapping with upper cervical afferents (C1–C3)
Potent vasodilator and driver of neurogenic inflammation
Released by trigeminal C-fibers; levels rise during attacks and normalize interictally (jugular sampling studies)
Triggers mast cell degranulation (histamine, prostaglandins), plasma protein extravasation, and peripheral sensitization
Contributes to central sensitization and allodynia, amplifying pain perception
Referred Pain and Cervical Link:
TCC convergence explains eye, temple, and neck pain interplay
Cervical joint dysfunction can augment trigeminal input; migraine can produce reactive neck stiffness via shared circuits.
Clinical Insight:
Mechanical dysfunction of upper cervical segments can heighten baseline nociceptive input into TCC, lowering the threshold for attacks. Correcting biomechanics reduces background “noise,” improving migraine control.
References: Edvinsson et al., 2018; Olesen et al., 2009; Iyengar et al., 2019.
The Serotonin–CGRP Axis: Why 5-HT1 Agonists and CGRP Antagonists Work
Therapeutic advances derive from understanding how serotonin and CGRP interact in trigeminal synapses.
Serotonin (5-HT) Modulation:
High presynaptic 5-HT activity suppresses CGRP release
Triptans (5-HT1B/1D agonists) inhibit CGRP release and produce targeted cranial vasoconstriction, aborting attacks
CGRP Antagonism:
Gepants: small molecules that block CGRP receptors (postsynaptic blockade)
Monoclonal antibodies: either bind CGRP ligand (eptinezumab, fremanezumab, galcanezumab) or block CGRP receptors (erenumab), preventing receptor activation and downstream nociceptive signaling
Clinical Translation:
Early triptan use aborts cascades before central sensitization
Gepants and mAbs provide migraine-specific options with favorable tolerability and minimal off-target effects compared to legacy preventives.
References: Ho et al., 2010; Iyengar et al., 2019; Edvinsson et al., 2018.
Acute Treatment Strategy: A Stratified, Early-Intervention Plan
Every patient deserves an individualized acute toolkit, deployed at the first sign of migraine. Early intervention is key because once allodynia and central sensitization develop, response rates drop.
Goals of Acute Therapy:
Rapid, sustained pain freedom
Resolution of associated symptoms
Fast return to normal function
Stratified Care Toolkit:
Mild attacks:
NSAIDs (e.g., ibuprofen, naproxen) or acetaminophen
Risk screening for GI, renal, and cardiovascular comorbidities
Advantages: Low MOH risk, not controlled substances
Considerations: CYP3A4 metabolism—dose adjust with inducers (e.g., topiramate) or inhibitors (e.g., verapamil); emerging warnings for new/worsening hypertension and Raynaud’s phenomenon; counsel and monitor BP and peripheral vasospasm symptoms
Ditans (lasmiditan):
Mechanism: Selective 5-HT1F agonist without vasoconstriction
Use case: Patients with vascular contraindications to triptans, or severe intractable attacks where sedation supports sleep as a “migraine breaker”
Limitations: CNS side effects (dizziness, paresthesias, somnolence), driving restriction for at least 8 hours post-dose, Schedule V
Mechanism: cleaves SNAP-25, blocking vesicular release of CGRP/Substance P; reduces peripheral and central sensitization
Protocol: PREEMPT—31–39 injections across head/neck every 12 weeks
Synergy: chiropractic soft tissue normalization and spinal biomechanics optimization enhance patient response and reduce post-injection soreness
Choosing a Preventive:
Tailor to comorbidities: hypertension (candesartan, propranolol), depression/anxiety (amitriptyline/venlafaxine), insomnia (low-dose tricyclics), obesity (topiramate with caution), IBS-C (avoid erenumab given constipation risk)
Newer therapies may be first-line for many patients, per recent guidance advocating early adoption of CGRP-targeted options (American Headache Society, 2024)
Expectations and Monitoring:
Monoclonal antibodies: long half-lives, minimal drug interactions, evaluate over 3–6 months
Erenumab: monitor for constipation, cramps, BP
Class-level caution: monitor for BP elevation and Raynaud’s phenomenon
References: Diener et al., 2010; Sacco et al., 2019; American Headache Society, 2024; Ho et al., 2010.
Synaptic Biology and OnabotulinumtoxinA: Why SNAP-25 Matters
To appreciate why onabotulinumtoxinA is effective, it helps to visualize synaptic transmission:
Presynaptic Vesicles: store neurotransmitters (e.g., CGRP, Substance P)
SNARE Complex: protein machinery (including SNAP-25) that docks and fuses vesicles with the membrane
OnabotulinumtoxinA: cleaves SNAP-25, preventing vesicle fusion and neurotransmitter release
Result: dampened sensory neuron output, reduced nociceptive signaling, decreased peripheral sensitization and spread to central structures
Clinical Rationale:
Interrupting neuropeptide release reduces both peripheral nociception and the central sensitization that perpetuates chronic migraine
PREEMPT targeting of specific myofascial and pericranial muscle groups reflects anatomical hubs of nociceptive processing and myofascial trigger zones
Fremanezumab (SQ, ligand-binding): monthly or quarterly
Galcanezumab (SQ, ligand-binding): monthly with loading dose
Erenumab (SQ, receptor-blocking): monthly; watch for GI motility effects and BP
Key Distinctions:
Half-life: long (28–32 days), favoring adherence
Metabolism: cellular proteolysis; minimal pharmacokinetic drug interactions
Side Effects: injection site reactions; erenumab-associated constipation and post-marketing BP concerns; occasional URI-like symptoms or nausea (agent-specific)
Gepants for Prevention:
Atogepant: dose flexibility; manage somnolence by nighttime dosing; rare anorexia/weight loss
Rimegepant ODT: every-other-day prevention with acute dosing flexibility; nausea is most common side effect
Safety Updates (Class-Level):
New-onset or worsening hypertension and Raynaud’s phenomenon have been reported; though infrequent, we educate patients, monitor BP, and counsel on cold-induced finger color changes or numbness.
References: Sacco et al., 2019; American Headache Society, 2024; Ho et al., 2010.
Integrative Chiropractic Care Aligning Structure with Neurophysiology
Migraine is not only a neurochemical disorder; it is also a neurovascular-musculoskeletal phenomenon. Structural dysfunction of the upper cervical spine can chronically stimulate the trigeminocervical complex, lowering the threshold for attacks.
Biomechanical Targets:
C0–C3 segmental motion restrictions
Suboccipital myofascial hypertonicity
Forward head posture, thoracic kyphosis contributing to cervical load
Mechanisms of Benefit:
Reduced afferent nociception into TCC: decreases background drive to trigeminal pathways
Normalization of proprioception: restores sensorimotor integration and reduces central hypervigilance
Muscle tone modulation: soft tissue work reduces trigger points that act as peripheral generators
Autonomic balancing: improved cervical mechanics can influence sympathetic-parasympathetic tone via neck-to-brainstem pathways
Clinical Integration:
Pre- and post-onabotulinumtoxinA sessions: chiropractic myofascial and joint work improves comfort and outcomes
With CGRP therapies: reducing peripheral triggers enhances the effect of pharmacologic dampening
With functional medicine: structural gains are stabilized by anti-inflammatory nutrition and metabolic support
Practice Observations:
Patients with cervicogenic contributions experience fewer and less intense migraines after targeted cervical adjustments and neuromuscular retraining. I document and discuss these observations through sciatica.clinic and my LinkedIn posts, where I share evolving protocols and case-based insights.
References: Noseda & Burstein, 2013; Edvinsson et al., 2018; Goadsby et al., 2017.
Functional Medicine and Systems Biology: Reducing the Neuro-Inflammatory Load
A brain in a pro-inflammatory milieu is more susceptible to cortical spreading depression and central sensitization. Functional medicine addresses these systemic drivers.
Probiotics and prebiotics: normalize gut-brain signaling
Sleep hygiene: stabilizes hypothalamic regulation and reduces prodromal vulnerability
Stress modulation: limbic/hypothalamic control via mindfulness, paced breathing, and graded exposure
Rationale:
Lowering systemic inflammatory tone reduces susceptibility to central and peripheral sensitization, complementing pharmacologic blockade and structural normalization.
A systems approach turns down multiple “volume knobs” simultaneously, achieving cumulative benefit.
References: Goadsby et al., 2017; Edvinsson et al., 2018.
Rehabilitation, Posture, and Ergonomics: Correcting the Daily Load
Daylong microstressors accumulate to sustain a low-threshold state. Rehabilitation addresses the repetitive load.
Breathing mechanics: diaphragmatic training to reduce upper trapezius recruitment
Clinical Rationale:
Balanced muscle activation prevents myofascial trigger propagation and reduces afferent nociception into TCC
Movement variability prevents static ischemia in pericranial muscles
Patients report fewer triggers when workstation and posture are optimized, especially in hybrid or remote work contexts
References: Noseda & Burstein, 2013; Goadsby et al., 2017.
Personalized Care Plans: Building a Comprehensive, Patient-Centered Strategy
We co-design care plans with patients and adjust them over time.
Core Elements:
Safety triage: SNOOP screening with rapid access to advanced imaging and specialty care
Acute toolkit: stratified, personalized selection of routes and agents; education on early use
Preventive selection: align therapy with comorbidities and preferences; consider early use of CGRP-targeted therapies
Structural care: chiropractic adjustments, soft tissue care, and rehab to normalize cervical mechanics
Functional medicine: lab-guided nutrition and lifestyle changes to reduce neuroinflammation
Education and metrics: diary tracking, wearable data integration, and periodic reassessment
Outcome Measures:
Reduction in monthly migraine days (MMDs)
Decreased pain intensity and duration
Improved acute response and fewer rescue escalations
Enhanced function and quality of life metrics
Reduced adverse events and medication exposure
Care Continuity:
Regular follow-ups to evaluate preventive efficacy at 12-week intervals; adjust based on response and tolerability
Incorporate patient feedback; share decision-making about medication switches or combined approaches.
References: Sacco et al., 2019; American Headache Society, 2024.
Special Considerations: Hormonal, Pediatric, and Post-Traumatic Migraine
Migraine presentations vary across life stages and contexts; we tailor strategies accordingly.
Menstrual-Related Migraine:
Vulnerability window around estrogen withdrawal
Strategies: mini-preventive approaches (e.g., long half-life triptans or NSAIDs across the perimenstrual window), magnesium support, sleep stability; CGRP therapies as per indication
Emphasis on sleep hygiene, screen ergonomics, hydration, and physical activity
Post-Traumatic Headache and Whiplash:
Overlap of cervicogenic and migraine features
Focus on cervical rehabilitation, vestibular therapy, graded return to activity, and targeted acute care; consider preventive if chronic patterns emerge.e
References: International Headache Society, 2018; Sacco et al., 2019.
Medication Overuse Headache: Recognize, Reset, and Rebuild
Excessive reliance on acute medications can transform episodic migraine into chronic daily headache.
Transition to migraine-specific agents with lower MOH risk (e.g., gepants)
Initiate preventive therapy to reduce attack frequency
Short-term bridging with antiemetics, steroids, or NSAIDs under medical oversight when withdrawing overused agents
Clinical Note:
Our integrated model allows for careful medication tapering, structural care to ease withdrawal triggers, and nutritional strategies to stabilize sleep and energy.
References: International Headache Society, 2018.
Safety Monitoring and Informed Consent Incorporating Emerging Data
We practice continuous vigilance and education.
CGRP Antagonists:
Monitor blood pressure and counsel about Raynaud’s phenomenon
For erenumab: assess constipation risk, GI history, and BP
Document informed consent reflecting class-level observations and individual risk profiles
Triptans:
Review vascular history; assess for hypertension, stroke/TIA, and coronary disease
Coordinate with Dr. Cardenas for cardiovascular risk stratification
Polypharmacy:
Reconcile CYP3A4 interactions for gepants and co-medications
Prefer monoclonal antibodies where minimal drug interactions are necessary
References: American Headache Society, 2024; Sacco et al., 2019.
Why This Integrative Model Works: A Synthesis of Science and Practice
Our model succeeds because it aligns withmigraine’ss multifactorial nature:
Neurobiology-informed: targeted pharmacology (5-HT1 and CGRP pathways) addresses core drivers
Biomechanics-aware: cervical and cranial myofascial normalization reduces peripheral inputs to TCC
Systems biology: functional medicine lowers neuroinflammatory tone
Medical safety: internal medicine oversight ensures rapid triage, appropriate imaging, and safe prescribing
Patient-centered: education, preferences, and shared decision-making foster adherence and empowerment
Clinical Observation:
Patients receiving combined chiropractic care, CGRP-targeted prevention, and functional nutrition demonstrate not only fewer MMDs but improved resilience and reduced acute medication needs. I regularly discuss detailed narratives and practical cases on sciatica.clinic and in my professional LinkedIn updates, where I share evolving protocols and community collaborations.
References: Goadsby et al., 2017; Edvinsson et al., 2018; Sacco et al., 2019.
Conclusion: Empowering Patients Through Integrative Synergy
Migraine is a complex neuro-metabolic and neuro-biomechanical condition. Effective care demands a cohesive approach that is simultaneously scientifically precise and clinically holistic. By integrating medical direction from Dr. Maria Guadalupe Cardenas, MD, with chiropractic biomechanics, functional medicine, and structured rehabilitation, we deliver a complete continuum of care grounded in modern, evidence-based research.
Our patients don’t have to choose between “medical” and “conservative” care. They receive both, sequenced and coordinated to maximize benefit and safety. This is the future of headache medicine—patient-centered, multidisciplinary, and relentlessly evidence-informed—right here in El Paso at Injury Medical Clinic PA, also known as Mission Plaza Injury Medical Clinic.
References
American Headache Society. 2024. The American Headache Society Position Statement on Integrating New Migraine Treatments into Clinical Practice. Headache: The Journal of Head and Face Pain, 64(1), 7–15. https://doi.org/10.1111/head.14652
Diener, H. C., Dodick, D. W., Aurora, S. K., Turkel, C. C., DeGryse, R. E., Lipton, R. B., … & Brin, M. F. 2010. OnabotulinumtoxinA for treatment of chronic migraine: Results from the double-blind, randomized, placebo-controlled phases of the PREEMPT 1 and 2 trials. Cephalalgia, 30(7), 793–803. https://doi.org/10.1177/0333102410364676
Dodick, D. W., Lipton, R. B., Ailani, J., Lu, K., Finnegan, M., Trugman, J. M., & Szegedi, A. 2019. Ubrogepant for the treatment of migraine. New England Journal of Medicine, 381(23), 2230–2241. https://doi.org/10.1056/NEJMoa1813049
Edvinsson, L., Haanes, K. A., & Warfvinge, K. 2018. Does CGRP play an instructive role in migraine pathogenesis? Nature Reviews Neurology, 14(6), 338–350. https://www.nature.com/articles/nrneurol.2018.67
Goadsby, P. J., Holland, P. R., Martins-Oliveira, M., Hoffmann, J., Schankin, C., & Akerman, S. 2017. Pathophysiology of migraine: A disorder of sensory processing. Physiological Reviews, 97(2), 553–622. https://doi.org/10.1152/physrev.00034.2015
Ho, T. W., Edvinsson, L., & Goadsby, P. J. 2010. CGRP and its receptors provide new insights into migraine pathophysiology. Nature Reviews Neurology, 6(10), 573–582. https://doi.org/10.1038/nrneurol.2010.127
Iyengar, S., Johnson, K. W., Ossipov, M. H., & Aurora, S. K. 2019. CGRP and the Trigeminal System in Migraine. Headache: The Journal of Head and Face Pain, 59(4), 629–640. https://doi.org/10.1111/head.13529
Lipton, R. B., Dodick, D., Sadovsky, R., Kolodner, K., Endicott, J., Hettiarachchi, J., & Harrison, W. 2003. A self-administered screener for migraine in primary care: The ID Migraine validation study. Neurology, 61(3), 375–382. https://n.neurology.org/content/61/3/375
Noseda, R., & Burstein, R. 2013. Migraine pathophysiology: Anatomy of the trigeminovascular pathway and associated neurological symptoms, cortical spreading depression, sensitization, and modulation of pain. Pain, 154(Suppl 1), S44–S53. https://doi.org/10.1016/j.pain.2013.07.021
Sacco, S., Bendtsen, L., Ashina, M., Reuter, U., Terwindt, G., Mitsikostas, D. D., & Martelletti, P. 2019. European Headache Federation guideline on the use of monoclonal antibodies acting on the calcitonin gene-related peptide or its receptor for migraine prevention. The Journal of Headache and Pain, 20(1), 6. https://doi.org/10.1186/s10194-018-0955-y
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The information herein on "Chiropractic Benefits with Integrative Treatments for Migraines" is not intended to replace a one-on-one relationship with a qualified health care professional or licensed physician and is not medical advice. We encourage you to make healthcare decisions based on your research and partnership with a qualified healthcare professional.
Welcome to El Paso's Premier Wellness and Injury Care Clinic & Wellness Blog, where Dr. Alex Jimenez, DC, FNP-C, a Multi-State board-certified Family Practice Nurse Practitioner (FNP-BC) and Chiropractor (DC), presents insights on how our multidisciplinary team is dedicated to holistic healing and personalized care. Our practice aligns with evidence-based treatment protocols inspired by integrative medicine principles, similar to those found on this site and our family practice-based chiromed.comsite, focusing on restoring health naturally for patients of all ages.
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Dr. Alex Jimenez, DC, APRN, FNP-BC*, CFMP, IFMCP, ATN, CCST (Board Certified: Family Practice Nurse Practitioner—Multistate)*
(Licensed Nurse Practitioner & Chiropractor - Multistate)*
Clinical Director DC & FNP License (Review Above) Digital Business Card NPI: 1205907805
Dr. Maria Cardenas, MD (Board Certified: Internal Medicine)
(Licensed Medical Doctor)
Medical Director, Clinical Director & Collaborative Physician NPI # 1164426748
MD License #: J2933
Licenses and Board Certifications:
MD: Medical Doctor DC: Doctor of Chiropractic APRNP: Advanced Practice Registered Nurse FNP-BC: Family Practice Specialization (Multi-State Board Certified)
FNP-BC: Family Practice Across Life Span (Neonatal to Geriatrics) RN: Registered Nurse (Multi-State Compact License)
CFMP: Certified Functional Medicine Provider
MSN-FNP: Master of Science in Family Practice Medicine
MSACP: Master of Science in Advanced Clinical Practice
IFMCP: Institute of Functional Medicine
CCST: Certified Chiropractic Spinal Trauma
ATN: Advanced Translational Neutrogenomics
Family with Primary Care Focus (Family Nurse Practitioner or FNP)
The Family Nurse Practitioner (FNP) promotes, maintains, and restores health for individuals and families across the lifespan. FNPs also identify health risks, promote wellness, and diagnose and manage acute and chronic illness.
The FNP focuses on comprehensive primary care, promoting healthy lifestyles for patients across the lifespan in settings such as private practice, physician offices, and community health centers.
Dr. Alex Jimenez, DC, APRN, FNP-BC*, CFMP, IFMCP, ATN, CCST (Board Certified: Family Practice Nurse Practitioner—Multistate)*
(Primary Care Across Lifespan—Neonatal / Pediatric / Adult / Geriatrics)
(Licensed Nurse Practitioner & Chiropractor - Multistate)*
Clinical Director Digital Business Card NPI: 1205907805
Dr. Maria Cardenas, MD (Board Certified: Internal Medicine)*
(Licensed Medical Doctor)*
Medical Director, Clinical Director & Collaborative Physician NPI # 1164426748
MD License #: J2933
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