# Neuromuscular Therapy Protocol Generator AI Agent Connect

> Neuromuscular Therapy Protocol Generator MCP converts patient postural distortions and trigger point maps into actionable clinical plans. Your AI client uses this tool to build ordered treatment sequences, determine specific ischemic hold durations, and design corrective stretching movements based on biomechanical data.

## Overview
- **Category:** healthcare
- **Price:** Free
- **Endpoint:** https://edge.vinkius.com/vk_preview_tx83neWsrei3UZdYFeEczMimKCUwjw7xVdUSWPAF/ai-agent-connect
- **Tags:** nmt, neuromuscular, therapy, clinical, biomechanics

## Description

You can now use your AI client to handle the heavy lifting of clinical planning. Instead of manually calculating hold times or sequencing stretches, you feed your patient's postural distortions and trigger point maps directly into the MCP. It translates that raw clinical data into a structured workflow. You'll get specific pressure regimes for identified trigger points and corrective stretching protocols that follow manual pressure application. It also checks your work by evaluating if the proposed sequence is safe and logical based on the patient's specific biomechanics. This moves you from raw observation to a ready-to-use therapeutic plan in seconds.

## Tools

### analyze_clinical_stability
This tool checks if your proposed protocol is safe and logical. It looks at the relationship between a patient's posture and their biomechanics to prevent unsafe movements.

### calculate_pressure_regime
This tool determines how much pressure to apply. It calculates the specific type of pressure and the necessary hold duration for identified trigger points.

### design_stretching_protocol
This tool builds corrective movement sequences. It creates a series of stretches to perform immediately after you finish manual pressure application.

### generate_treatment_plan
This tool builds the full clinical roadmap. It produces a complete, ordered NMT treatment sequence based on the patient's specific clinical profile.

## Prompt Examples

**Prompt:** 
```
Generate a treatment plan for a patient with anterior pelvic tilt and hip muscle spasticity.
```

**Response:** 
```
The treatment sequence will prioritize stabilizing the pelvic region before addressing deep tissue tension in the hip flexors.
```

**Prompt:** 
```
Calculate the pressure regime for a trigger point in the trapezius with a severity of 8.
```

**Response:** 
```
For a severity of 8, the system recommends a sustained compression technique with an ischemic hold duration of 45 seconds.
```

**Prompt:** 
```
Design a stretching protocol for someone with scapular winging.
```

**Response:** 
```
The protocol includes serratus anterior activation and pectoral stretching to correct the scapular position.
```

## Capabilities

### Treatment Sequencing
Your agent uses this to turn clinical profiles into ordered lists of therapeutic actions.

### Pressure Calculation
The AI calculates exact ischemic hold durations and pressure types for specific trigger points.

### Post-Pressure Stretching
Your client designs corrective stretches to follow manual tissue manipulation.

### Safety Validation
The MCP evaluates the logic of a protocol against the patient's biomechanical data.

### Clinical Data Conversion
It transforms postural distortions and trigger point maps into actionable plans.

## Use Cases

### Trigger Point Management
You provide a trigger point location and severity to get a specific pressure and hold duration.

### Postural Correction Planning
Use patient pelvic or scapular distortions to generate a full sequence of corrective actions.

### Protocol Safety Checks
Run a proposed treatment through the stability tool to ensure it respects biomechanical limits.

### Post-Manipulation Stretching
Generate a specific set of stretches to perform immediately after applying manual pressure.

## Benefits

- Converts raw postural data into ordered treatment steps.
- Calculates specific ischemic hold durations for trigger point work.
- Provides corrective stretching sequences following manual pressure.
- Validates protocol safety against biomechanical constraints.

## How It Works

Connect your AI client to Vinkius to start generating protocols immediately.

1. Connect your AI client to the Vinkius hosted MCP.
2. Input patient clinical data like trigger point maps or postural distortions.
3. The AI uses the tools to calculate pressure, stretches, and sequences.
4. Review the generated, ordered treatment plan for clinical application.

## Frequently Asked Questions

**How do I use this MCP with my AI client?**
You connect your client, such as Claude or Cursor, to Vinkius. Once connected, your agent can call the NMT tools directly.

**What kind of data does the MCP need?**
The MCP works best with clinical data like postural distortions, trigger point maps, and patient clinical profiles.

**Can it help with specific trigger point durations?**
Yes. The calculate_pressure_regime tool determines the specific type of pressure and how long to hold it based on the trigger point.

**Does it ensure the treatment is safe?**
The analyze_clinical_stability tool evaluates if the proposed protocol is safe and logical based on the patient's biomechanics.

**Is this for manual therapy only?**
The tools are specifically designed for Neuromuscular Therapy (NMT) professionals to handle pressure, stretching, and sequencing.

**How do I generate a full treatment plan?**
You can use the `generate_treatment_plan` tool by providing the patient's postural distortions, biomechanical dysfunctions, and a trigger point map.

**Can I check if a protocol is safe?**
Yes, the `analyze_clinical_stability` tool evaluates the relationship between posture and biomechanics to ensure the sequence is safe.

**How are stretching protocols determined?**
The `design_stretching_protocol` tool creates corrective stretches specifically targeting the muscles identified in the patient's biomechanical data.
